*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1117 1 IN. BAR ANNEALED864 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8057E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 2.8269E-01 GPaEngineering ultimate stress. 4.2748E-01 GPaElongation at failure. . . . 33.000 %Reduction in area. . . . . . 58.000 %CTE. . . . . . . . . . . . . 1.3500E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 6.56983E-01 m = 0.147478Yield point sy = 2.42890E-01 ey = 0.001174Ultimate (Engineering) SU = 4.27475E-01 EU = 0.158908Ultimate Stress/Total Strain sut = 4.95404E-01 eut = 0.147478Effective Plastic Failure Strain epfs = 1.146300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8057E-06, 2.0684E+02, 0.290, 6.5698E-01, 0.147478, 0.0, 0.0# sigy vp epfs0.0 0.0 1.1463==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1117 1 IN. BAR HOT ROLLED865 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8057E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 3.0337E-01 GPaEngineering ultimate stress. 4.8953E-01 GPaElongation at failure. . . . 33.000 %Reduction in area. . . . . . 63.000 %CTE. . . . . . . . . . . . . 1.3500E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.78098E-01 m = 0.165618Yield point sy = 2.56903E-01 ey = 0.001242Ultimate (Engineering) SU = 4.89528E-01 EU = 0.180122Ultimate Stress/Total Strain sut = 5.77703E-01 eut = 0.165618Effective Plastic Failure Strain epfs = 1.053000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8057E-06, 2.0684E+02, 0.290, 7.7810E-01, 0.165618, 0.0, 0.0# sigy vp epfs0.0 0.0 1.0530==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1117 1 IN. BAR CARB. 1700F+ WQ+600F866 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8057E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 6.6879E-01 GPaEngineering ultimate stress. 9.0321E-01 GPaElongation at failure. . . . 15.000 %Reduction in area. . . . . . 36.000 %CTE. . . . . . . . . . . . . 1.3500E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.34721E+00 m = 0.132266Yield point sy = 6.25460E-01 ey = 0.003024Ultimate (Engineering) SU = 9.03213E-01 EU = 0.141412Ultimate Stress/Total Strain sut = 1.03094E+00 eut = 0.132266Effective Plastic Failure Strain epfs = 0.168700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8057E-06, 2.0684E+02, 0.290, 1.3472E+00, 0.132266, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1687==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1117 1 IN. BAR CARB. 1700F+ WQ+400F867 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8057E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 6.8948E-01 GPaEngineering ultimate stress. 9.4458E-01 GPaElongation at failure. . . . 10.000 %Reduction in area. . . . . . 31.000 %CTE. . . . . . . . . . . . . 1.3500E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.42359E+00 m = 0.137438Yield point sy = 6.43958E-01 ey = 0.003113Ultimate (Engineering) SU = 9.44582E-01 EU = 0.147331Ultimate Stress/Total Strain sut = 1.08375E+00 eut = 0.137438Effective Plastic Failure Strain epfs = 0.094000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8057E-06, 2.0684E+02, 0.290, 1.4236E+00, 0.137438, 0.0, 0.0# sigy vp epfs0.0 0.0 0.0940==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1117 1 IN. BAR CARB. 1700F+ OQ+600F868 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8057E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 4.7574E-01 GPaEngineering ultimate stress. 6.6879E-01 GPaElongation at failure. . . . 26.000 %Reduction in area. . . . . . 63.000 %CTE. . . . . . . . . . . . . 1.3500E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.00638E+00 m = 0.136657Yield point sy = 4.33172E-01 ey = 0.002094Ultimate (Engineering) SU = 6.68792E-01 EU = 0.146435Ultimate Stress/Total Strain sut = 7.66726E-01 eut = 0.136657Effective Plastic Failure Strain epfs = 0.801600# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8057E-06, 2.0684E+02, 0.290, 1.0064E+00, 0.136657, 0.0, 0.0# sigy vp epfs0.0 0.0 0.8016==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1117 1 IN. BAR CARB. 1700F+ OQ+400F869 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8057E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 4.9642E-01 GPaEngineering ultimate stress. 6.9637E-01 GPaElongation at failure. . . . 24.000 %Reduction in area. . . . . . 59.000 %CTE. . . . . . . . . . . . . 1.3500E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.04842E+00 m = 0.136914Yield point sy = 4.53370E-01 ey = 0.002192Ultimate (Engineering) SU = 6.96371E-01 EU = 0.146730Ultimate Stress/Total Strain sut = 7.98549E-01 eut = 0.136914Effective Plastic Failure Strain epfs = 0.625000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8057E-06, 2.0684E+02, 0.290, 1.0484E+00, 0.136914, 0.0, 0.0# sigy vp epfs0.0 0.0 0.6250==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1144 1 IN. BAR ANNEALED870 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8057E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 3.4474E-01 GPaEngineering ultimate stress. 5.8605E-01 GPaElongation at failure. . . . 25.000 %Reduction in area. . . . . . 41.000 %CTE. . . . . . . . . . . . . 1.2780E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.57773E-01 m = 0.181482Yield point sy = 2.90861E-01 ey = 0.001406Ultimate (Engineering) SU = 5.86054E-01 EU = 0.198992Ultimate Stress/Total Strain sut = 7.02675E-01 eut = 0.181482Effective Plastic Failure Strain epfs = 0.362400# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8057E-06, 2.0684E+02, 0.290, 9.5777E-01, 0.181482, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3624==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1144 1 IN. BAR HOT ROLLED871 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8057E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 4.2058E-01 GPaEngineering ultimate stress. 7.0327E-01 GPaElongation at failure. . . . 21.000 %Reduction in area. . . . . . 41.000 %CTE. . . . . . . . . . . . . 1.2780E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.14952E+00 m = 0.181579Yield point sy = 3.63232E-01 ey = 0.001756Ultimate (Engineering) SU = 7.03265E-01 EU = 0.199109Ultimate Stress/Total Strain sut = 8.43292E-01 eut = 0.181579Effective Plastic Failure Strain epfs = 0.222500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8057E-06, 2.0684E+02, 0.290, 1.1495E+00, 0.181579, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2225==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1144 1 IN. BAR WQ+1200F872 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8057E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 6.2742E-01 GPaEngineering ultimate stress. 7.4463E-01 GPaElongation at failure. . . . 21.000 %Reduction in area. . . . . . 58.000 %CTE. . . . . . . . . . . . . 1.2780E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.00895E+00 m = 0.088781Yield point sy = 6.00663E-01 ey = 0.002904Ultimate (Engineering) SU = 7.44634E-01 EU = 0.092841Ultimate Stress/Total Strain sut = 8.13766E-01 eut = 0.088781Effective Plastic Failure Strain epfs = 0.866900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8057E-06, 2.0684E+02, 0.290, 1.0089E+00, 0.088781, 0.0, 0.0# sigy vp epfs0.0 0.0 0.8669==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1144 1 IN. BAR WQ+400F873 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8057E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.2962E+00 GPaEngineering ultimate stress. 1.9995E+00 GPaElongation at failure. . . . 5.000 %Reduction in area. . . . . . 12.000 %CTE. . . . . . . . . . . . . 1.2780E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 3.34758E+00 m = 0.195964Yield point sy = 1.22530E+00 ey = 0.005924Ultimate (Engineering) SU = 1.99948E+00 EU = 0.216483Ultimate Stress/Total Strain sut = 2.43233E+00 eut = 0.195964Effective Plastic Failure Strain epfs = 0.040500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8057E-06, 2.0684E+02, 0.290, 3.3476E+00, 0.195964, 0.0, 0.0# sigy vp epfs0.0 0.0 0.0405==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1144 1 IN. BAR OQ+1200F874 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8057E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 5.0332E-01 GPaEngineering ultimate stress. 7.2395E-01 GPaElongation at failure. . . . 23.000 %Reduction in area. . . . . . 55.000 %CTE. . . . . . . . . . . . . 1.2780E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.10615E+00 m = 0.144443Yield point sy = 4.57367E-01 ey = 0.002211Ultimate (Engineering) SU = 7.23950E-01 EU = 0.155396Ultimate Stress/Total Strain sut = 8.36448E-01 eut = 0.144443Effective Plastic Failure Strain epfs = 0.490000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8057E-06, 2.0684E+02, 0.290, 1.1062E+00, 0.144443, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4900==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1144 1 IN. BAR OQ+400F875 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8057E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 6.2742E-01 GPaEngineering ultimate stress. 8.7563E-01 GPaElongation at failure. . . . 17.000 %Reduction in area. . . . . . 36.000 %CTE. . . . . . . . . . . . . 1.2780E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.32823E+00 m = 0.140714Yield point sy = 5.81113E-01 ey = 0.002809Ultimate (Engineering) SU = 8.75634E-01 EU = 0.151095Ultimate Stress/Total Strain sut = 1.00794E+00 eut = 0.140714Effective Plastic Failure Strain epfs = 0.208200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8057E-06, 2.0684E+02, 0.290, 1.3282E+00, 0.140714, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2082==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1340 1 IN. BAR ANNEALED876 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9305E+02 GPaShear Modulus. . . . . . . . 7.4827E+01 GPaBulk Modulus . . . . . . . . 1.5322E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 4.3437E-01 GPaEngineering ultimate stress. 7.0327E-01 GPaElongation at failure. . . . 25.000 %Reduction in area. . . . . . 57.000 %CTE. . . . . . . . . . . . . 1.3500E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.13740E+00 m = 0.175430Yield point sy = 3.81527E-01 ey = 0.001976Ultimate (Engineering) SU = 7.03265E-01 EU = 0.191758Ultimate Stress/Total Strain sut = 8.38122E-01 eut = 0.175430Effective Plastic Failure Strain epfs = 0.406800# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9305E+02, 0.290, 1.1374E+00, 0.175430, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4068==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1340 1 IN. BAR NORM877 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9305E+02 GPaShear Modulus. . . . . . . . 7.4827E+01 GPaBulk Modulus . . . . . . . . 1.5322E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 5.5848E-01 GPaEngineering ultimate stress. 8.2737E-01 GPaElongation at failure. . . . 22.000 %Reduction in area. . . . . . 63.000 %CTE. . . . . . . . . . . . . 1.3500E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.29474E+00 m = 0.157066Yield point sy = 5.09552E-01 ey = 0.002639Ultimate (Engineering) SU = 8.27371E-01 EU = 0.170073Ultimate Stress/Total Strain sut = 9.68084E-01 eut = 0.157066Effective Plastic Failure Strain epfs = 0.356900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9305E+02, 0.290, 1.2947E+00, 0.157066, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3569==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1340 1 IN. BAR OQ+1200F878 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 6.6190E-01 GPaEngineering ultimate stress. 7.7221E-01 GPaElongation at failure. . . . 23.000 %Reduction in area. . . . . . 63.000 %CTE. . . . . . . . . . . . . 1.3500E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.03326E+00 m = 0.083657Yield point sy = 6.36944E-01 ey = 0.003079Ultimate (Engineering) SU = 7.72213E-01 EU = 0.087256Ultimate Stress/Total Strain sut = 8.39593E-01 eut = 0.083657Effective Plastic Failure Strain epfs = 1.111000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0333E+00, 0.083657, 0.0, 0.0# sigy vp epfs0.0 0.0 1.1110==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1340 1 IN. BAR OQ+1000F879 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 8.3427E-01 GPaEngineering ultimate stress. 9.5148E-01 GPaElongation at failure. . . . 19.000 %Reduction in area. . . . . . 58.000 %CTE. . . . . . . . . . . . . 1.3500E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.25958E+00 m = 0.079392Yield point sy = 8.11283E-01 ey = 0.003922Ultimate (Engineering) SU = 9.51477E-01 EU = 0.082629Ultimate Stress/Total Strain sut = 1.03010E+00 eut = 0.079392Effective Plastic Failure Strain epfs = 0.793300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.2596E+00, 0.079392, 0.0, 0.0# sigy vp epfs0.0 0.0 0.7933==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1340 1 IN. BAR OQ+400F880 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.5858E+00 GPaEngineering ultimate stress. 1.7926E+00 GPaElongation at failure. . . . 10.000 %Reduction in area. . . . . . 35.000 %CTE. . . . . . . . . . . . . 1.3500E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.44068E+00 m = 0.090780Yield point sy = 1.56675E+00 ey = 0.007575Ultimate (Engineering) SU = 1.79264E+00 EU = 0.095028Ultimate Stress/Total Strain sut = 1.96299E+00 eut = 0.090780Effective Plastic Failure Strain epfs = 0.113400# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 2.4407E+00, 0.090780, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1134==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4130 1 IN. BAR ANNEALED881 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9995E+02 GPaShear Modulus. . . . . . . . 7.7499E+01 GPaBulk Modulus . . . . . . . . 1.5869E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 3.5853E-01 GPaEngineering ultimate stress. 5.5848E-01 GPaElongation at failure. . . . 28.000 %Reduction in area. . . . . . 56.000 %CTE. . . . . . . . . . . . . 1.2780E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.78854E-01 m = 0.160106Yield point sy = 3.12326E-01 ey = 0.001562Ultimate (Engineering) SU = 5.58475E-01 EU = 0.173636Ultimate Stress/Total Strain sut = 6.55447E-01 eut = 0.160106Effective Plastic Failure Strain epfs = 0.714000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9995E+02, 0.290, 8.7885E-01, 0.160106, 0.0, 0.0# sigy vp epfs0.0 0.0 0.7140==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4130 1 IN. BAR NORM882 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9995E+02 GPaShear Modulus. . . . . . . . 7.7499E+01 GPaBulk Modulus . . . . . . . . 1.5869E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 4.3437E-01 GPaEngineering ultimate stress. 6.6879E-01 GPaElongation at failure. . . . 26.000 %Reduction in area. . . . . . 60.000 %CTE. . . . . . . . . . . . . 1.2780E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.05415E+00 m = 0.160989Yield point sy = 3.85302E-01 ey = 0.001927Ultimate (Engineering) SU = 6.68792E-01 EU = 0.174672Ultimate Stress/Total Strain sut = 7.85610E-01 eut = 0.160989Effective Plastic Failure Strain epfs = 0.568100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9995E+02, 0.290, 1.0542E+00, 0.160989, 0.0, 0.0# sigy vp epfs0.0 0.0 0.5681==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4130 1 IN. BAR WQ+1200F883 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 7.0327E-01 GPaEngineering ultimate stress. 8.1358E-01 GPaElongation at failure. . . . 22.000 %Reduction in area. . . . . . 64.000 %CTE. . . . . . . . . . . . . 1.2780E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.08317E+00 m = 0.081647Yield point sy = 6.79059E-01 ey = 0.003283Ultimate (Engineering) SU = 8.13581E-01 EU = 0.085073Ultimate Stress/Total Strain sut = 8.82795E-01 eut = 0.081647Effective Plastic Failure Strain epfs = 1.062600# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0832E+00, 0.081647, 0.0, 0.0# sigy vp epfs0.0 0.0 1.0626==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4130 1 IN. BAR WQ+1000F884 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 9.1011E-01 GPaEngineering ultimate stress. 1.0342E+00 GPaElongation at failure. . . . 17.000 %Reduction in area. . . . . . 57.000 %CTE. . . . . . . . . . . . . 1.2780E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.37004E+00 m = 0.079660Yield point sy = 8.87439E-01 ey = 0.004290Ultimate (Engineering) SU = 1.03421E+00 EU = 0.082919Ultimate Stress/Total Strain sut = 1.11997E+00 eut = 0.079660Effective Plastic Failure Strain epfs = 0.597100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.3700E+00, 0.079660, 0.0, 0.0# sigy vp epfs0.0 0.0 0.5971==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4130 1 IN. BAR WQ+400F885 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.4617E+00 GPaEngineering ultimate stress. 1.6272E+00 GPaElongation at failure. . . . 10.000 %Reduction in area. . . . . . 41.000 %CTE. . . . . . . . . . . . . 1.2780E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.16647E+00 m = 0.081672Yield point sy = 1.44435E+00 ey = 0.006983Ultimate (Engineering) SU = 1.62716E+00 EU = 0.085099Ultimate Stress/Total Strain sut = 1.76563E+00 eut = 0.081672Effective Plastic Failure Strain epfs = 0.138700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 2.1665E+00, 0.081672, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1387==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4130 1 IN. BAR OQ+1200F886 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 6.0674E-01 GPaEngineering ultimate stress. 7.8600E-01 GPaElongation at failure. . . . 22.000 %Reduction in area. . . . . . 59.000 %CTE. . . . . . . . . . . . . 1.2780E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.13585E+00 m = 0.117067Yield point sy = 5.69677E-01 ey = 0.002754Ultimate (Engineering) SU = 7.86002E-01 EU = 0.124195Ultimate Stress/Total Strain sut = 8.83620E-01 eut = 0.117067Effective Plastic Failure Strain epfs = 0.654800# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.1358E+00, 0.117067, 0.0, 0.0# sigy vp epfs0.0 0.0 0.6548==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4140 1 IN. BAR ANNEALED887 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9995E+02 GPaShear Modulus. . . . . . . . 7.7499E+01 GPaBulk Modulus . . . . . . . . 1.5869E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 4.2058E-01 GPaEngineering ultimate stress. 6.5500E-01 GPaElongation at failure. . . . 26.000 %Reduction in area. . . . . . 57.000 %CTE. . . . . . . . . . . . . 1.1160E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.03693E+00 m = 0.163386Yield point sy = 3.71083E-01 ey = 0.001856Ultimate (Engineering) SU = 6.55002E-01 EU = 0.177491Ultimate Stress/Total Strain sut = 7.71259E-01 eut = 0.163386Effective Plastic Failure Strain epfs = 0.546800# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9995E+02, 0.290, 1.0369E+00, 0.163386, 0.0, 0.0# sigy vp epfs0.0 0.0 0.5468==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4140 1 IN. BAR NORM888 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9995E+02 GPaShear Modulus. . . . . . . . 7.7499E+01 GPaBulk Modulus . . . . . . . . 1.5869E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 6.5500E-01 GPaEngineering ultimate stress. 1.0204E+00 GPaElongation at failure. . . . 18.000 %Reduction in area. . . . . . 47.000 %CTE. . . . . . . . . . . . . 1.1160E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.64897E+00 m = 0.174950Yield point sy = 5.96167E-01 ey = 0.002982Ultimate (Engineering) SU = 1.02042E+00 EU = 0.191187Ultimate Stress/Total Strain sut = 1.21552E+00 eut = 0.174950Effective Plastic Failure Strain epfs = 0.174200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9995E+02, 0.290, 1.6490E+00, 0.174950, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1742==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4140 1 IN. BAR OQ+1200F889 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 6.5500E-01 GPaEngineering ultimate stress. 7.5842E-01 GPaElongation at failure. . . . 18.000 %Reduction in area. . . . . . 53.000 %CTE. . . . . . . . . . . . . 1.1160E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.00746E+00 m = 0.080750Yield point sy = 6.31102E-01 ey = 0.003051Ultimate (Engineering) SU = 7.58423E-01 EU = 0.084100Ultimate Stress/Total Strain sut = 8.22207E-01 eut = 0.080750Effective Plastic Failure Strain epfs = 0.652900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0075E+00, 0.080750, 0.0, 0.0# sigy vp epfs0.0 0.0 0.6529==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4140 1 IN. BAR OQ+1000F890 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 9.8595E-01 GPaEngineering ultimate stress. 1.1376E+00 GPaElongation at failure. . . . 15.000 %Reduction in area. . . . . . 50.000 %CTE. . . . . . . . . . . . . 1.1160E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.53607E+00 m = 0.087342Yield point sy = 9.60821E-01 ey = 0.004645Ultimate (Engineering) SU = 1.13764E+00 EU = 0.091269Ultimate Stress/Total Strain sut = 1.24147E+00 eut = 0.087342Effective Plastic Failure Strain epfs = 0.377300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.5361E+00, 0.087342, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3773==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4140 1 IN. BAR OQ+400F891 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.6410E+00 GPaEngineering ultimate stress. 1.7720E+00 GPaElongation at failure. . . . 8.000 %Reduction in area. . . . . . 38.000 %CTE. . . . . . . . . . . . . 1.1160E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.28893E+00 m = 0.069945Yield point sy = 1.63129E+00 ey = 0.007887Ultimate (Engineering) SU = 1.77195E+00 EU = 0.072449Ultimate Stress/Total Strain sut = 1.90033E+00 eut = 0.069945Effective Plastic Failure Strain epfs = 0.099700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 2.2889E+00, 0.069945, 0.0, 0.0# sigy vp epfs0.0 0.0 0.0997==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4340 1 IN. BAR ANNEALED892 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9650E+02 GPaShear Modulus. . . . . . . . 7.6163E+01 GPaBulk Modulus . . . . . . . . 1.5595E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 4.7574E-01 GPaEngineering ultimate stress. 7.4463E-01 GPaElongation at failure. . . . 22.000 %Reduction in area. . . . . . 50.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.18872E+00 m = 0.168035Yield point sy = 4.23686E-01 ey = 0.002156Ultimate (Engineering) SU = 7.44634E-01 EU = 0.182978Ultimate Stress/Total Strain sut = 8.80886E-01 eut = 0.168035Effective Plastic Failure Strain epfs = 0.299600# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9650E+02, 0.290, 1.1887E+00, 0.168035, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2996==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4340 1 IN. BAR OQ+1200F893 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 9.1700E-01 GPaEngineering ultimate stress. 1.0342E+00 GPaElongation at failure. . . . 18.000 %Reduction in area. . . . . . 57.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.36007E+00 m = 0.076794Yield point sy = 8.95473E-01 ey = 0.004329Ultimate (Engineering) SU = 1.03421E+00 EU = 0.079820Ultimate Stress/Total Strain sut = 1.11676E+00 eut = 0.076794Effective Plastic Failure Strain epfs = 0.725700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.3601E+00, 0.076794, 0.0, 0.0# sigy vp epfs0.0 0.0 0.7257==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4340 1 IN. BAR OQ+1000F894 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.1721E+00 GPaEngineering ultimate stress. 1.2617E+00 GPaElongation at failure. . . . 14.000 %Reduction in area. . . . . . 52.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.59124E+00 m = 0.061146Yield point sy = 1.15893E+00 ey = 0.005603Ultimate (Engineering) SU = 1.26174E+00 EU = 0.063054Ultimate Stress/Total Strain sut = 1.34130E+00 eut = 0.061146Effective Plastic Failure Strain epfs = 0.518200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.5912E+00, 0.061146, 0.0, 0.0# sigy vp epfs0.0 0.0 0.5182==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4340 1 IN. BAR OQ+800F895 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.3790E+00 GPaEngineering ultimate stress. 1.5306E+00 GPaElongation at failure. . . . 12.000 %Reduction in area. . . . . . 47.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.02381E+00 m = 0.078911Yield point sy = 1.36150E+00 ey = 0.006582Ultimate (Engineering) SU = 1.53064E+00 EU = 0.082108Ultimate Stress/Total Strain sut = 1.65631E+00 eut = 0.078911Effective Plastic Failure Strain epfs = 0.247700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 2.0238E+00, 0.078911, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2477==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4340 1 IN. BAR OQ+400F896 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.6410E+00 GPaEngineering ultimate stress. 1.9512E+00 GPaElongation at failure. . . . 11.000 %Reduction in area. . . . . . 48.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.79744E+00 m = 0.113400Yield point sy = 1.61333E+00 ey = 0.007800Ultimate (Engineering) SU = 1.95122E+00 EU = 0.120079Ultimate Stress/Total Strain sut = 2.18552E+00 eut = 0.113400Effective Plastic Failure Strain epfs = 0.104900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 2.7974E+00, 0.113400, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1049==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4620 1 IN. BAR ANNEALED897 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9995E+02 GPaShear Modulus. . . . . . . . 7.7499E+01 GPaBulk Modulus . . . . . . . . 1.5869E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 3.7232E-01 GPaEngineering ultimate stress. 5.1021E-01 GPaElongation at failure. . . . 31.000 %Reduction in area. . . . . . 60.000 %CTE. . . . . . . . . . . . . 1.1700E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.50366E-01 m = 0.125387Yield point sy = 3.36919E-01 ey = 0.001685Ultimate (Engineering) SU = 5.10212E-01 EU = 0.133587Ultimate Stress/Total Strain sut = 5.78370E-01 eut = 0.125387Effective Plastic Failure Strain epfs = 1.260700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9995E+02, 0.290, 7.5037E-01, 0.125387, 0.0, 0.0# sigy vp epfs0.0 0.0 1.2607==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4620 1 IN. BAR NORM898 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9995E+02 GPaShear Modulus. . . . . . . . 7.7499E+01 GPaBulk Modulus . . . . . . . . 1.5869E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 3.6542E-01 GPaEngineering ultimate stress. 5.7226E-01 GPaElongation at failure. . . . 29.000 %Reduction in area. . . . . . 67.000 %CTE. . . . . . . . . . . . . 1.1700E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.03528E-01 m = 0.161912Yield point sy = 3.18355E-01 ey = 0.001592Ultimate (Engineering) SU = 5.72265E-01 EU = 0.175757Ultimate Stress/Total Strain sut = 6.72844E-01 eut = 0.161912Effective Plastic Failure Strain epfs = 0.786800# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9995E+02, 0.290, 9.0353E-01, 0.161912, 0.0, 0.0# sigy vp epfs0.0 0.0 0.7868==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4620 1 IN. BAR OQ+1200F899 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 5.3090E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 30.000 %Reduction in area. . . . . . 74.000 %CTE. . . . . . . . . . . . . 1.1700E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.24327E-01 m = 0.080769Yield point sy = 5.07298E-01 ey = 0.002453Ultimate (Engineering) SU = 6.20528E-01 EU = 0.084120Ultimate Stress/Total Strain sut = 6.72727E-01 eut = 0.080769Effective Plastic Failure Strain epfs = 1.528600# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 8.2433E-01, 0.080769, 0.0, 0.0# sigy vp epfs0.0 0.0 1.5286==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4620 1 IN. BAR CARB. 1700F+ 1500F OQ+450F900 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 7.3084E-01 GPaEngineering ultimate stress. 8.6184E-01 GPaElongation at failure. . . . 19.000 %Reduction in area. . . . . . 61.000 %CTE. . . . . . . . . . . . . 1.1700E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.16928E+00 m = 0.089317Yield point sy = 7.03831E-01 ey = 0.003403Ultimate (Engineering) SU = 8.61845E-01 EU = 0.093427Ultimate Stress/Total Strain sut = 9.42365E-01 eut = 0.089317Effective Plastic Failure Strain epfs = 0.669700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.1693E+00, 0.089317, 0.0, 0.0# sigy vp epfs0.0 0.0 0.6697==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4620 1 IN. BAR CARB. 1700F+ OQ+450F901 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 8.5495E-01 GPaEngineering ultimate stress. 9.6527E-01 GPaElongation at failure. . . . 16.000 %Reduction in area. . . . . . 54.000 %CTE. . . . . . . . . . . . . 1.1700E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.26645E+00 m = 0.075890Yield point sy = 8.33390E-01 ey = 0.004029Ultimate (Engineering) SU = 9.65266E-01 EU = 0.078844Ultimate Stress/Total Strain sut = 1.04137E+00 eut = 0.075890Effective Plastic Failure Strain epfs = 0.539400# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.2665E+00, 0.075890, 0.0, 0.0# sigy vp epfs0.0 0.0 0.5394==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4620 1 IN. BAR CARB. 1700F+ OQ+300F902 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 9.0321E-01 GPaEngineering ultimate stress. 1.0066E+00 GPaElongation at failure. . . . 16.000 %Reduction in area. . . . . . 53.000 %CTE. . . . . . . . . . . . . 1.1700E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.30627E+00 m = 0.071667Yield point sy = 8.83534E-01 ey = 0.004272Ultimate (Engineering) SU = 1.00663E+00 EU = 0.074297Ultimate Stress/Total Strain sut = 1.08142E+00 eut = 0.071667Effective Plastic Failure Strain epfs = 0.582800# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.3063E+00, 0.071667, 0.0, 0.0# sigy vp epfs0.0 0.0 0.5828==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4820 1 IN. BAR ANNEALED903 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8611E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9995E+02 GPaShear Modulus. . . . . . . . 7.7499E+01 GPaBulk Modulus . . . . . . . . 1.5869E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 4.6195E-01 GPaEngineering ultimate stress. 6.8258E-01 GPaElongation at failure. . . . 23.000 %Reduction in area. . . . . . 59.000 %CTE. . . . . . . . . . . . . 1.1520E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.05600E+00 m = 0.150945Yield point sy = 4.15729E-01 ey = 0.002079Ultimate (Engineering) SU = 6.82581E-01 EU = 0.162933Ultimate Stress/Total Strain sut = 7.93796E-01 eut = 0.150945Effective Plastic Failure Strain epfs = 0.442300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8611E-06, 1.9995E+02, 0.290, 1.0560E+00, 0.150945, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4423==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4820 1 IN. BAR NORM904 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8611E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9995E+02 GPaShear Modulus. . . . . . . . 7.7499E+01 GPaBulk Modulus . . . . . . . . 1.5869E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 4.8263E-01 GPaEngineering ultimate stress. 7.5153E-01 GPaElongation at failure. . . . 24.000 %Reduction in area. . . . . . 59.000 %CTE. . . . . . . . . . . . . 1.1520E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.19652E+00 m = 0.166539Yield point sy = 4.30258E-01 ey = 0.002152Ultimate (Engineering) SU = 7.51529E-01 EU = 0.181210Ultimate Stress/Total Strain sut = 8.87713E-01 eut = 0.166539Effective Plastic Failure Strain epfs = 0.406100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8611E-06, 1.9995E+02, 0.290, 1.1965E+00, 0.166539, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4061==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4820 1 IN. BAR CARB. 1700F+ 1475F OQ+450F905 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8611E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9995E+02 GPaShear Modulus. . . . . . . . 7.7499E+01 GPaBulk Modulus . . . . . . . . 1.5869E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.2755E+00 GPaEngineering ultimate stress. 1.4134E+00 GPaElongation at failure. . . . 13.000 %Reduction in area. . . . . . 53.000 %CTE. . . . . . . . . . . . . 1.1520E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.86017E+00 m = 0.077090Yield point sy = 1.25857E+00 ey = 0.006294Ultimate (Engineering) SU = 1.41343E+00 EU = 0.080139Ultimate Stress/Total Strain sut = 1.52670E+00 eut = 0.077090Effective Plastic Failure Strain epfs = 0.319700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8611E-06, 1.9995E+02, 0.290, 1.8602E+00, 0.077090, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3197==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4820 1 IN. BAR CARB. 1700F+ OQ+450F906 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8611E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9995E+02 GPaShear Modulus. . . . . . . . 7.7499E+01 GPaBulk Modulus . . . . . . . . 1.5869E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.1721E+00 GPaEngineering ultimate stress. 1.3858E+00 GPaElongation at failure. . . . 13.000 %Reduction in area. . . . . . 53.000 %CTE. . . . . . . . . . . . . 1.1520E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.93678E+00 m = 0.101944Yield point sy = 1.14413E+00 ey = 0.005722Ultimate (Engineering) SU = 1.38585E+00 EU = 0.107322Ultimate Stress/Total Strain sut = 1.53458E+00 eut = 0.101944Effective Plastic Failure Strain epfs = 0.189300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8611E-06, 1.9995E+02, 0.290, 1.9368E+00, 0.101944, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1893==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4820 1 IN. BAR CARB. 1700F+ OQ+300F907 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8611E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9995E+02 GPaShear Modulus. . . . . . . . 7.7499E+01 GPaBulk Modulus . . . . . . . . 1.5869E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.1445E+00 GPaEngineering ultimate stress. 1.4134E+00 GPaElongation at failure. . . . 13.000 %Reduction in area. . . . . . 53.000 %CTE. . . . . . . . . . . . . 1.1520E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.04528E+00 m = 0.117694Yield point sy = 1.10988E+00 ey = 0.005551Ultimate (Engineering) SU = 1.41343E+00 EU = 0.124900Ultimate Stress/Total Strain sut = 1.58996E+00 eut = 0.117694Effective Plastic Failure Strain epfs = 0.143100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8611E-06, 1.9995E+02, 0.290, 2.0453E+00, 0.117694, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1431==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 5140 1 IN. BAR ANNEALED908 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9995E+02 GPaShear Modulus. . . . . . . . 7.7499E+01 GPaBulk Modulus . . . . . . . . 1.5869E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 2.8958E-01 GPaEngineering ultimate stress. 5.7226E-01 GPaElongation at failure. . . . 29.000 %Reduction in area. . . . . . 57.000 %CTE. . . . . . . . . . . . . 1.2780E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.88805E-01 m = 0.215922Yield point sy = 2.29155E-01 ey = 0.001146Ultimate (Engineering) SU = 5.72265E-01 EU = 0.241006Ultimate Stress/Total Strain sut = 7.10184E-01 eut = 0.215922Effective Plastic Failure Strain epfs = 0.375600# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9995E+02, 0.290, 9.8881E-01, 0.215922, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3756==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 5140 1 IN. BAR NORM909 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9995E+02 GPaShear Modulus. . . . . . . . 7.7499E+01 GPaBulk Modulus . . . . . . . . 1.5869E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 4.7574E-01 GPaEngineering ultimate stress. 7.9290E-01 GPaElongation at failure. . . . 23.000 %Reduction in area. . . . . . 59.000 %CTE. . . . . . . . . . . . . 1.2780E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.30270E+00 m = 0.184602Yield point sy = 4.16798E-01 ey = 0.002085Ultimate (Engineering) SU = 7.92897E-01 EU = 0.202740Ultimate Stress/Total Strain sut = 9.53649E-01 eut = 0.184602Effective Plastic Failure Strain epfs = 0.276000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9995E+02, 0.290, 1.3027E+00, 0.184602, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2760==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 5140 1 IN. BAR OQ+1200F910 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 6.5500E-01 GPaEngineering ultimate stress. 7.5842E-01 GPaElongation at failure. . . . 25.000 %Reduction in area. . . . . . 65.000 %CTE. . . . . . . . . . . . . 1.2780E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.00746E+00 m = 0.080750Yield point sy = 6.31102E-01 ey = 0.003051Ultimate (Engineering) SU = 7.58423E-01 EU = 0.084100Ultimate Stress/Total Strain sut = 8.22207E-01 eut = 0.080750Effective Plastic Failure Strain epfs = 1.275900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0075E+00, 0.080750, 0.0, 0.0# sigy vp epfs0.0 0.0 1.2759==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 5140 1 IN. BAR OQ+1000F911 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 9.2390E-01 GPaEngineering ultimate stress. 1.0687E+00 GPaElongation at failure. . . . 17.000 %Reduction in area. . . . . . 53.000 %CTE. . . . . . . . . . . . . 1.2780E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.44140E+00 m = 0.086894Yield point sy = 8.98526E-01 ey = 0.004344Ultimate (Engineering) SU = 1.06869E+00 EU = 0.090781Ultimate Stress/Total Strain sut = 1.16570E+00 eut = 0.086894Effective Plastic Failure Strain epfs = 0.530900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.4414E+00, 0.086894, 0.0, 0.0# sigy vp epfs0.0 0.0 0.5309==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 5140 1 IN. BAR OQ+800F912 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.1652E+00 GPaEngineering ultimate stress. 1.3100E+00 GPaElongation at failure. . . . 12.000 %Reduction in area. . . . . . 42.000 %CTE. . . . . . . . . . . . . 1.2780E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.73921E+00 m = 0.080533Yield point sy = 1.14442E+00 ey = 0.005533Ultimate (Engineering) SU = 1.31000E+00 EU = 0.083865Ultimate Stress/Total Strain sut = 1.41987E+00 eut = 0.080533Effective Plastic Failure Strain epfs = 0.236200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.7392E+00, 0.080533, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2362==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 5140 1 IN. BAR OQ+400F913 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.6410E+00 GPaEngineering ultimate stress. 1.7926E+00 GPaElongation at failure. . . . 9.000 %Reduction in area. . . . . . 38.000 %CTE. . . . . . . . . . . . . 1.2780E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.35117E+00 m = 0.075756Yield point sy = 1.62897E+00 ey = 0.007875Ultimate (Engineering) SU = 1.79264E+00 EU = 0.078700Ultimate Stress/Total Strain sut = 1.93372E+00 eut = 0.075756Effective Plastic Failure Strain epfs = 0.118800# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 2.3512E+00, 0.075756, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1188==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 6150 1 IN. BAR ANNEALED914 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9995E+02 GPaShear Modulus. . . . . . . . 7.7499E+01 GPaBulk Modulus . . . . . . . . 1.5869E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 4.1369E-01 GPaEngineering ultimate stress. 6.6879E-01 GPaElongation at failure. . . . 23.000 %Reduction in area. . . . . . 48.000 %CTE. . . . . . . . . . . . . 1.2420E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.07718E+00 m = 0.173059Yield point sy = 3.61008E-01 ey = 0.001806Ultimate (Engineering) SU = 6.68792E-01 EU = 0.188936Ultimate Stress/Total Strain sut = 7.95150E-01 eut = 0.173059Effective Plastic Failure Strain epfs = 0.317600# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9995E+02, 0.290, 1.0772E+00, 0.173059, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3176==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 6150 1 IN. BAR NORM915 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9995E+02 GPaShear Modulus. . . . . . . . 7.7499E+01 GPaBulk Modulus . . . . . . . . 1.5869E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 6.1363E-01 GPaEngineering ultimate stress. 9.3769E-01 GPaElongation at failure. . . . 22.000 %Reduction in area. . . . . . 61.000 %CTE. . . . . . . . . . . . . 1.2420E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.49559E+00 m = 0.167543Yield point sy = 5.58351E-01 ey = 0.002792Ultimate (Engineering) SU = 9.37687E-01 EU = 0.182396Ultimate Stress/Total Strain sut = 1.10872E+00 eut = 0.167543Effective Plastic Failure Strain epfs = 0.306500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9995E+02, 0.290, 1.4956E+00, 0.167543, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3065==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 6150 1 IN. BAR OQ+1200F916 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 8.9632E-01 GPaEngineering ultimate stress. 9.7216E-01 GPaElongation at failure. . . . 19.000 %Reduction in area. . . . . . 56.000 %CTE. . . . . . . . . . . . . 1.2420E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.22181E+00 m = 0.059916Yield point sy = 8.80972E-01 ey = 0.004259Ultimate (Engineering) SU = 9.72161E-01 EU = 0.061748Ultimate Stress/Total Strain sut = 1.03219E+00 eut = 0.059916Effective Plastic Failure Strain epfs = 0.997200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.2218E+00, 0.059916, 0.0, 0.0# sigy vp epfs0.0 0.0 0.9972==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 6150 1 IN. BAR OQ+1000F917 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.1583E+00 GPaEngineering ultimate stress. 1.1928E+00 GPaElongation at failure. . . . 14.000 %Reduction in area. . . . . . 48.000 %CTE. . . . . . . . . . . . . 1.2420E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.39849E+00 m = 0.037034Yield point sy = 1.15400E+00 ey = 0.005579Ultimate (Engineering) SU = 1.19279E+00 EU = 0.037728Ultimate Stress/Total Strain sut = 1.23779E+00 eut = 0.037034Effective Plastic Failure Strain epfs = 0.765500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.3985E+00, 0.037034, 0.0, 0.0# sigy vp epfs0.0 0.0 0.7655==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 6150 1 IN. BAR OQ+400F918 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.6892E+00 GPaEngineering ultimate stress. 1.9305E+00 GPaElongation at failure. . . . 8.000 %Reduction in area. . . . . . 38.000 %CTE. . . . . . . . . . . . . 1.2420E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.67050E+00 m = 0.097500Yield point sy = 1.66922E+00 ey = 0.008070Ultimate (Engineering) SU = 1.93053E+00 EU = 0.102412Ultimate Stress/Total Strain sut = 2.12824E+00 eut = 0.097500Effective Plastic Failure Strain epfs = 0.072100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 2.6705E+00, 0.097500, 0.0, 0.0# sigy vp epfs0.0 0.0 0.0721==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 8630 1 IN. BAR ANNEALED919 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 3.7232E-01 GPaEngineering ultimate stress. 5.6537E-01 GPaElongation at failure. . . . 29.000 %Reduction in area. . . . . . 59.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.78613E-01 m = 0.153338Yield point sy = 3.26765E-01 ey = 0.001580Ultimate (Engineering) SU = 5.65370E-01 EU = 0.165719Ultimate Stress/Total Strain sut = 6.59063E-01 eut = 0.153338Effective Plastic Failure Strain epfs = 0.877300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 8.7861E-01, 0.153338, 0.0, 0.0# sigy vp epfs0.0 0.0 0.8773==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 8630 1 IN. BAR NORM920 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 4.2748E-01 GPaEngineering ultimate stress. 6.4811E-01 GPaElongation at failure. . . . 24.000 %Reduction in area. . . . . . 54.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.01161E+00 m = 0.155684Yield point sy = 3.79276E-01 ey = 0.001834Ultimate (Engineering) SU = 6.48107E-01 EU = 0.168457Ultimate Stress/Total Strain sut = 7.57286E-01 eut = 0.155684Effective Plastic Failure Strain epfs = 0.467000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0116E+00, 0.155684, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4670==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 8630 1 IN. BAR WQ+1200F921 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 6.8948E-01 GPaEngineering ultimate stress. 7.9290E-01 GPaElongation at failure. . . . 23.000 %Reduction in area. . . . . . 63.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.04890E+00 m = 0.079108Yield point sy = 6.66181E-01 ey = 0.003221Ultimate (Engineering) SU = 7.92897E-01 EU = 0.082321Ultimate Stress/Total Strain sut = 8.58169E-01 eut = 0.079108Effective Plastic Failure Strain epfs = 1.152400# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0489E+00, 0.079108, 0.0, 0.0# sigy vp epfs0.0 0.0 1.1524==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 8630 1 IN. BAR WQ+1000F922 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 8.4806E-01 GPaEngineering ultimate stress. 9.3079E-01 GPaElongation at failure. . . . 19.000 %Reduction in area. . . . . . 60.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.18370E+00 m = 0.064160Yield point sy = 8.30821E-01 ey = 0.004017Ultimate (Engineering) SU = 9.30792E-01 EU = 0.066263Ultimate Stress/Total Strain sut = 9.92469E-01 eut = 0.064160Effective Plastic Failure Strain epfs = 0.998400# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.1837E+00, 0.064160, 0.0, 0.0# sigy vp epfs0.0 0.0 0.9984==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 8630 1 IN. BAR WQ+900F923 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 9.1011E-01 GPaEngineering ultimate stress. 1.0135E+00 GPaElongation at failure. . . . 16.000 %Reduction in area. . . . . . 57.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.31459E+00 m = 0.071485Yield point sy = 8.90544E-01 ey = 0.004305Ultimate (Engineering) SU = 1.01353E+00 EU = 0.074103Ultimate Stress/Total Strain sut = 1.08863E+00 eut = 0.071485Effective Plastic Failure Strain epfs = 0.585200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.3146E+00, 0.071485, 0.0, 0.0# sigy vp epfs0.0 0.0 0.5852==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 8630 1 IN. BAR WQ+400F924 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.2273E+00 GPaEngineering ultimate stress. 1.3790E+00 GPaElongation at failure. . . . 9.000 %Reduction in area. . . . . . 38.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.83511E+00 m = 0.081480Yield point sy = 1.20680E+00 ey = 0.005834Ultimate (Engineering) SU = 1.37895E+00 EU = 0.084891Ultimate Stress/Total Strain sut = 1.49601E+00 eut = 0.081480Effective Plastic Failure Strain epfs = 0.105300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.8351E+00, 0.081480, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1053==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 8650 1 IN. BAR ANNEALED925 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9995E+02 GPaShear Modulus. . . . . . . . 7.7499E+01 GPaBulk Modulus . . . . . . . . 1.5869E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 3.8611E-01 GPaEngineering ultimate stress. 7.1705E-01 GPaElongation at failure. . . . 22.000 %Reduction in area. . . . . . 46.000 %CTE. . . . . . . . . . . . . 1.1700E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.22251E+00 m = 0.207302Yield point sy = 3.22363E-01 ey = 0.001612Ultimate (Engineering) SU = 7.17055E-01 EU = 0.230355Ultimate Stress/Total Strain sut = 8.82232E-01 eut = 0.207302Effective Plastic Failure Strain epfs = 0.211100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9995E+02, 0.290, 1.2225E+00, 0.207302, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2111==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 8650 1 IN. BAR NORM926 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9995E+02 GPaShear Modulus. . . . . . . . 7.7499E+01 GPaBulk Modulus . . . . . . . . 1.5869E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 6.8948E-01 GPaEngineering ultimate stress. 1.0273E+00 GPaElongation at failure. . . . 14.000 %Reduction in area. . . . . . 40.000 %CTE. . . . . . . . . . . . . 1.1700E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.62690E+00 m = 0.163574Yield point sy = 6.34923E-01 ey = 0.003175Ultimate (Engineering) SU = 1.02732E+00 EU = 0.177712Ultimate Stress/Total Strain sut = 1.20989E+00 eut = 0.163574Effective Plastic Failure Strain epfs = 0.131200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9995E+02, 0.290, 1.6269E+00, 0.163574, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1312==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 8650 1 IN. BAR WQ+1200F927 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9995E+02 GPaShear Modulus. . . . . . . . 7.7499E+01 GPaBulk Modulus . . . . . . . . 1.5869E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 8.5495E-01 GPaEngineering ultimate stress. 9.3769E-01 GPaElongation at failure. . . . 17.000 %Reduction in area. . . . . . 57.000 %CTE. . . . . . . . . . . . . 1.1700E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.19377E+00 m = 0.064557Yield point sy = 8.38375E-01 ey = 0.004193Ultimate (Engineering) SU = 9.37687E-01 EU = 0.066686Ultimate Stress/Total Strain sut = 1.00022E+00 eut = 0.064557Effective Plastic Failure Strain epfs = 0.757800# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9995E+02, 0.290, 1.1938E+00, 0.064557, 0.0, 0.0# sigy vp epfs0.0 0.0 0.7578==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 8650 1 IN. BAR WQ+1000F928 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9995E+02 GPaShear Modulus. . . . . . . . 7.7499E+01 GPaBulk Modulus . . . . . . . . 1.5869E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.0687E+00 GPaEngineering ultimate stress. 1.2135E+00 GPaElongation at failure. . . . 14.000 %Reduction in area. . . . . . 48.000 %CTE. . . . . . . . . . . . . 1.1700E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.62299E+00 m = 0.083483Yield point sy = 1.04686E+00 ey = 0.005236Ultimate (Engineering) SU = 1.21348E+00 EU = 0.087067Ultimate Stress/Total Strain sut = 1.31913E+00 eut = 0.083483Effective Plastic Failure Strain epfs = 0.339200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9995E+02, 0.290, 1.6230E+00, 0.083483, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3392==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 8650 1 IN. BAR WQ+400F929 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9995E+02 GPaShear Modulus. . . . . . . . 7.7499E+01 GPaBulk Modulus . . . . . . . . 1.5869E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.6754E+00 GPaEngineering ultimate stress. 1.9374E+00 GPaElongation at failure. . . . 10.000 %Reduction in area. . . . . . 38.000 %CTE. . . . . . . . . . . . . 1.1700E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.71700E+00 m = 0.103460Yield point sy = 1.65447E+00 ey = 0.008274Ultimate (Engineering) SU = 1.93743E+00 EU = 0.109001Ultimate Stress/Total Strain sut = 2.14861E+00 eut = 0.103460Effective Plastic Failure Strain epfs = 0.095600# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9995E+02, 0.290, 2.7170E+00, 0.103460, 0.0, 0.0# sigy vp epfs0.0 0.0 0.0956==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT HY140 1 IN. PLATE(L) Q+TEMPER 1000F930 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8887E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0340E+02 GPaShear Modulus. . . . . . . . 7.8835E+01 GPaBulk Modulus . . . . . . . . 1.6142E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 9.7906E-01 GPaEngineering ultimate stress. 1.0273E+00 GPaElongation at failure. . . . 20.000 %Reduction in area. . . . . . 65.000 %CTE. . . . . . . . . . . . . 1.3140E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.23801E+00 m = 0.045646Yield point sy = 9.69952E-01 ey = 0.004769Ultimate (Engineering) SU = 1.02732E+00 EU = 0.046704Ultimate Stress/Total Strain sut = 1.07530E+00 eut = 0.045646Effective Plastic Failure Strain epfs = 1.257200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8887E-06, 2.0340E+02, 0.290, 1.2380E+00, 0.045646, 0.0, 0.0# sigy vp epfs0.0 0.0 1.2572==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT HY140 1 IN. PLATE(T) Q+TEMPER 1000F931 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8887E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0340E+02 GPaShear Modulus. . . . . . . . 7.8835E+01 GPaBulk Modulus . . . . . . . . 1.6142E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 9.7906E-01 GPaEngineering ultimate stress. 1.0273E+00 GPaElongation at failure. . . . 20.000 %Reduction in area. . . . . . 59.000 %CTE. . . . . . . . . . . . . 1.3140E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.23801E+00 m = 0.045646Yield point sy = 9.69952E-01 ey = 0.004769Ultimate (Engineering) SU = 1.02732E+00 EU = 0.046704Ultimate Stress/Total Strain sut = 1.07530E+00 eut = 0.045646Effective Plastic Failure Strain epfs = 1.242700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8887E-06, 2.0340E+02, 0.290, 1.2380E+00, 0.045646, 0.0, 0.0# sigy vp epfs0.0 0.0 1.2427==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT HY140 1 IN. PLATE WELD+TEMPER 1000F932 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8887E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0340E+02 GPaShear Modulus. . . . . . . . 7.8835E+01 GPaBulk Modulus . . . . . . . . 1.6142E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 9.9285E-01 GPaEngineering ultimate stress. 1.1238E+00 GPaElongation at failure. . . . 18.000 %Reduction in area. . . . . . 29.000 %CTE. . . . . . . . . . . . . 1.3140E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.49090E+00 m = 0.080223Yield point sy = 9.71051E-01 ey = 0.004774Ultimate (Engineering) SU = 1.12385E+00 EU = 0.083528Ultimate Stress/Total Strain sut = 1.21772E+00 eut = 0.080223Effective Plastic Failure Strain epfs = 0.534100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8887E-06, 2.0340E+02, 0.290, 1.4909E+00, 0.080223, 0.0, 0.0# sigy vp epfs0.0 0.0 0.5341==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT H-11 (VM) BAR Q+T933 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.7780E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.4479E+00 GPaEngineering ultimate stress. 1.7926E+00 GPaElongation at failure. . . . 8.000 %Reduction in area. . . . . . 52.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.63465E+00 m = 0.125064Yield point sy = 1.41209E+00 ey = 0.006827Ultimate (Engineering) SU = 1.79264E+00 EU = 0.133221Ultimate Stress/Total Strain sut = 2.03145E+00 eut = 0.125064Effective Plastic Failure Strain epfs = 0.070200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.7780E-06, 2.0684E+02, 0.290, 2.6346E+00, 0.125064, 0.0, 0.0# sigy vp epfs0.0 0.0 0.0702==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT H-11 (VM) BAR Q+T 1050F934 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.7780E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.5858E+00 GPaEngineering ultimate stress. 1.9305E+00 GPaElongation at failure. . . . 10.000 %Reduction in area. . . . . . 54.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.81731E+00 m = 0.121682Yield point sy = 1.55363E+00 ey = 0.007511Ultimate (Engineering) SU = 1.93053E+00 EU = 0.129394Ultimate Stress/Total Strain sut = 2.18033E+00 eut = 0.121682Effective Plastic Failure Strain epfs = 0.090300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.7780E-06, 2.0684E+02, 0.290, 2.8173E+00, 0.121682, 0.0, 0.0# sigy vp epfs0.0 0.0 0.0903==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT H-11 (VM) SHEET Q+T935 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.7780E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9995E+02 GPaShear Modulus. . . . . . . . 7.7499E+01 GPaBulk Modulus . . . . . . . . 1.5869E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.4479E+00 GPaEngineering ultimate stress. 1.7926E+00 GPaElongation at failure. . . . 4.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 3.20435E+00 m = 0.167467Yield point sy = 1.39519E+00 ey = 0.006978Ultimate (Engineering) SU = 1.79264E+00 EU = 0.182306Ultimate Stress/Total Strain sut = 1.86295E+00 eut = 0.039221Effective Plastic Failure Strain epfs = 0.030500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.7780E-06, 1.9995E+02, 0.290, 3.2043E+00, 0.167467, 0.0, 0.0# sigy vp epfs0.0 0.0 0.0305==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT H-11 (VM) SHEET Q+T 1050F936 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.7780E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9443E+02 GPaShear Modulus. . . . . . . . 7.5361E+01 GPaBulk Modulus . . . . . . . . 1.5431E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.5168E+00 GPaEngineering ultimate stress. 1.9305E+00 GPaElongation at failure. . . . 4.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 3.75975E+00 m = 0.193940Yield point sy = 1.45499E+00 ey = 0.007483Ultimate (Engineering) SU = 1.93053E+00 EU = 0.214024Ultimate Stress/Total Strain sut = 2.00625E+00 eut = 0.039221Effective Plastic Failure Strain epfs = 0.029400# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.7780E-06, 1.9443E+02, 0.290, 3.7598E+00, 0.193940, 0.0, 0.0# sigy vp epfs0.0 0.0 0.0294==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT D6AC PLATE(L) TEMPER 500F937 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8611E-06 Kg/mm^3Young's Modulus. . . . . . . 2.1029E+02 GPaShear Modulus. . . . . . . . 8.1508E+01 GPaBulk Modulus . . . . . . . . 1.6690E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.7237E+00 GPaEngineering ultimate stress. 1.9995E+00 GPaElongation at failure. . . . 9.000 %Reduction in area. . . . . . 36.000 %CTE. . . . . . . . . . . . . 1.3320E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.80807E+00 m = 0.104097Yield point sy = 1.70065E+00 ey = 0.008087Ultimate (Engineering) SU = 1.99948E+00 EU = 0.109708Ultimate Stress/Total Strain sut = 2.21884E+00 eut = 0.104097Effective Plastic Failure Strain epfs = 0.082200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8611E-06, 2.1029E+02, 0.290, 2.8081E+00, 0.104097, 0.0, 0.0# sigy vp epfs0.0 0.0 0.0822==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT D6AC PLATE(L) TEMPER 1000F938 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8611E-06 Kg/mm^3Young's Modulus. . . . . . . 2.1029E+02 GPaShear Modulus. . . . . . . . 8.1508E+01 GPaBulk Modulus . . . . . . . . 1.6690E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.4824E+00 GPaEngineering ultimate stress. 1.5858E+00 GPaElongation at failure. . . . 10.000 %Reduction in area. . . . . . 46.000 %CTE. . . . . . . . . . . . . 1.3320E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.00709E+00 m = 0.062433Yield point sy = 1.47244E+00 ey = 0.007002Ultimate (Engineering) SU = 1.58579E+00 EU = 0.064423Ultimate Stress/Total Strain sut = 1.68796E+00 eut = 0.062433Effective Plastic Failure Strain epfs = 0.223100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8611E-06, 2.1029E+02, 0.290, 2.0071E+00, 0.062433, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2231==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT D6AC SHEET TEMPER 500F939 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8611E-06 Kg/mm^3Young's Modulus. . . . . . . 2.1029E+02 GPaShear Modulus. . . . . . . . 8.1508E+01 GPaBulk Modulus . . . . . . . . 1.6690E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.5858E+00 GPaEngineering ultimate stress. 1.9995E+00 GPaElongation at failure. . . . 5.000 %CTE. . . . . . . . . . . . . 1.3320E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 3.45098E+00 m = 0.164933Yield point sy = 1.53255E+00 ey = 0.007288Ultimate (Engineering) SU = 1.99948E+00 EU = 0.179314Ultimate Stress/Total Strain sut = 2.09703E+00 eut = 0.048790Effective Plastic Failure Strain epfs = 0.039600# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8611E-06, 2.1029E+02, 0.290, 3.4510E+00, 0.164933, 0.0, 0.0# sigy vp epfs0.0 0.0 0.0396==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT D6AC SHEET TEMPER 1000F940 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8611E-06 Kg/mm^3Young's Modulus. . . . . . . 2.1029E+02 GPaShear Modulus. . . . . . . . 8.1508E+01 GPaBulk Modulus . . . . . . . . 1.6690E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.3790E+00 GPaEngineering ultimate stress. 1.5168E+00 GPaElongation at failure. . . . 6.000 %CTE. . . . . . . . . . . . . 1.3320E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.98444E+00 m = 0.074601Yield point sy = 1.36263E+00 ey = 0.006480Ultimate (Engineering) SU = 1.51685E+00 EU = 0.077454Ultimate Stress/Total Strain sut = 1.60523E+00 eut = 0.058269Effective Plastic Failure Strain epfs = 0.055400# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8611E-06, 2.1029E+02, 0.290, 1.9844E+00, 0.074601, 0.0, 0.0# sigy vp epfs0.0 0.0 0.0554==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 9NI-4CO-25 PLATE TEMPER 600F941 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8611E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9512E+02 GPaShear Modulus. . . . . . . . 7.5629E+01 GPaBulk Modulus . . . . . . . . 1.5486E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.3445E+00 GPaEngineering ultimate stress. 1.4824E+00 GPaElongation at failure. . . . 9.000 %Reduction in area. . . . . . 63.000 %CTE. . . . . . . . . . . . . 1.1520E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.94865E+00 m = 0.076637Yield point sy = 1.32951E+00 ey = 0.006814Ultimate (Engineering) SU = 1.48237E+00 EU = 0.079651Ultimate Stress/Total Strain sut = 1.60044E+00 eut = 0.076637Effective Plastic Failure Strain epfs = 0.116800# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8611E-06, 1.9512E+02, 0.290, 1.9487E+00, 0.076637, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1168==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 9NI-4CO-25 PLATE TEMPER 1000F942 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8611E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9650E+02 GPaShear Modulus. . . . . . . . 7.6163E+01 GPaBulk Modulus . . . . . . . . 1.5595E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.3100E+00 GPaEngineering ultimate stress. 1.3790E+00 GPaElongation at failure. . . . 17.000 %Reduction in area. . . . . . 70.000 %CTE. . . . . . . . . . . . . 1.1520E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.69747E+00 m = 0.052703Yield point sy = 1.30315E+00 ey = 0.006632Ultimate (Engineering) SU = 1.37895E+00 EU = 0.054117Ultimate Stress/Total Strain sut = 1.45358E+00 eut = 0.052703Effective Plastic Failure Strain epfs = 0.971200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8611E-06, 1.9650E+02, 0.290, 1.6975E+00, 0.052703, 0.0, 0.0# sigy vp epfs0.0 0.0 0.9712==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 9NI-4CO-25 SHEET TEMPER 600F943 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8611E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9512E+02 GPaShear Modulus. . . . . . . . 7.5629E+01 GPaBulk Modulus . . . . . . . . 1.5486E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.3790E+00 GPaEngineering ultimate stress. 1.5168E+00 GPaElongation at failure. . . . 10.000 %CTE. . . . . . . . . . . . . 1.1520E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.99157E+00 m = 0.076168Yield point sy = 1.36468E+00 ey = 0.006994Ultimate (Engineering) SU = 1.51685E+00 EU = 0.079144Ultimate Stress/Total Strain sut = 1.63690E+00 eut = 0.076168Effective Plastic Failure Strain epfs = 0.158400# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8611E-06, 1.9512E+02, 0.290, 1.9916E+00, 0.076168, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1584==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 9NI-4CO-25 PLATE TEMPER 1000F944 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8611E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9650E+02 GPaShear Modulus. . . . . . . . 7.6163E+01 GPaBulk Modulus . . . . . . . . 1.5595E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.2755E+00 GPaEngineering ultimate stress. 1.4134E+00 GPaElongation at failure. . . . 15.000 %CTE. . . . . . . . . . . . . 1.1520E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.86213E+00 m = 0.077500Yield point sy = 1.25900E+00 ey = 0.006407Ultimate (Engineering) SU = 1.41343E+00 EU = 0.080582Ultimate Stress/Total Strain sut = 1.52732E+00 eut = 0.077500Effective Plastic Failure Strain epfs = 0.465400# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8611E-06, 1.9650E+02, 0.290, 1.8621E+00, 0.077500, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4654==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 9NI-4CO-45 PLATE TEMPER 600F945 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.7503E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9512E+02 GPaShear Modulus. . . . . . . . 7.5629E+01 GPaBulk Modulus . . . . . . . . 1.5486E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.7582E+00 GPaEngineering ultimate stress. 1.9305E+00 GPaElongation at failure. . . . 5.000 %Reduction in area. . . . . . 35.000 %CTE. . . . . . . . . . . . . 1.1160E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.57085E+00 m = 0.081742Yield point sy = 1.74864E+00 ey = 0.008962Ultimate (Engineering) SU = 1.93053E+00 EU = 0.085176Ultimate Stress/Total Strain sut = 2.09497E+00 eut = 0.081742Effective Plastic Failure Strain epfs = 0.040700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.7503E-06, 1.9512E+02, 0.290, 2.5708E+00, 0.081742, 0.0, 0.0# sigy vp epfs0.0 0.0 0.0407==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 9NI-4CO-45 PLATE TEMPER 1000F946 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.7503E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9650E+02 GPaShear Modulus. . . . . . . . 7.6163E+01 GPaBulk Modulus . . . . . . . . 1.5595E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.4134E+00 GPaEngineering ultimate stress. 1.4824E+00 GPaElongation at failure. . . . 9.000 %Reduction in area. . . . . . 45.000 %CTE. . . . . . . . . . . . . 1.1160E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.82141E+00 m = 0.052077Yield point sy = 1.40838E+00 ey = 0.007167Ultimate (Engineering) SU = 1.48237E+00 EU = 0.053456Ultimate Stress/Total Strain sut = 1.56162E+00 eut = 0.052077Effective Plastic Failure Strain epfs = 0.221800# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.7503E-06, 1.9650E+02, 0.290, 1.8214E+00, 0.052077, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2218==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 9NI-4CO-45 SHEET TEMPER 600F947 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.7503E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9512E+02 GPaShear Modulus. . . . . . . . 7.5629E+01 GPaBulk Modulus . . . . . . . . 1.5486E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.5858E+00 GPaEngineering ultimate stress. 1.7926E+00 GPaElongation at failure. . . . 5.000 %CTE. . . . . . . . . . . . . 1.1160E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.55486E+00 m = 0.101540Yield point sy = 1.56519E+00 ey = 0.008022Ultimate (Engineering) SU = 1.79264E+00 EU = 0.106874Ultimate Stress/Total Strain sut = 1.88010E+00 eut = 0.048790Effective Plastic Failure Strain epfs = 0.040600# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.7503E-06, 1.9512E+02, 0.290, 2.5549E+00, 0.101540, 0.0, 0.0# sigy vp epfs0.0 0.0 0.0406==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 9NI-4CO-45 PLATE TEMPER 1000F948 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.7503E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9650E+02 GPaShear Modulus. . . . . . . . 7.6163E+01 GPaBulk Modulus . . . . . . . . 1.5595E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.3790E+00 GPaEngineering ultimate stress. 1.4479E+00 GPaElongation at failure. . . . 9.000 %CTE. . . . . . . . . . . . . 1.1160E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.78006E+00 m = 0.052268Yield point sy = 1.37330E+00 ey = 0.006989Ultimate (Engineering) SU = 1.44790E+00 EU = 0.053658Ultimate Stress/Total Strain sut = 0.00000E+00 eut = 0.000000Effective Plastic Failure Strain epfs = 0.220400# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.7503E-06, 1.9650E+02, 0.290, 1.7801E+00, 0.052268, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2204==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 18NI-MIRAGE 200 PLATE(T) ANNEALED949 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.9995E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9857E+02 GPaShear Modulus. . . . . . . . 7.6965E+01 GPaBulk Modulus . . . . . . . . 1.5759E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 7.5842E-01 GPaEngineering ultimate stress. 9.6527E-01 GPaElongation at failure. . . . 18.000 %Reduction in area. . . . . . 72.000 %CTE. . . . . . . . . . . . . 1.0080E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.39561E+00 m = 0.117302Yield point sy = 7.22156E-01 ey = 0.003637Ultimate (Engineering) SU = 9.65266E-01 EU = 0.124459Ultimate Stress/Total Strain sut = 1.08540E+00 eut = 0.117302Effective Plastic Failure Strain epfs = 0.367600# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.9995E-06, 1.9857E+02, 0.290, 1.3956E+00, 0.117302, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3676==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 18NI-MIRAGE 200 PLATE(T) AGE 900F950 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.9995E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9857E+02 GPaShear Modulus. . . . . . . . 7.6965E+01 GPaBulk Modulus . . . . . . . . 1.5759E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.5513E+00 GPaEngineering ultimate stress. 1.6203E+00 GPaElongation at failure. . . . 12.000 %Reduction in area. . . . . . 50.000 %CTE. . . . . . . . . . . . . 1.0080E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.98597E+00 m = 0.051250Yield point sy = 1.54860E+00 ey = 0.007799Ultimate (Engineering) SU = 1.62027E+00 EU = 0.052586Ultimate Stress/Total Strain sut = 1.70547E+00 eut = 0.051250Effective Plastic Failure Strain epfs = 0.450500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.9995E-06, 1.9857E+02, 0.290, 1.9860E+00, 0.051250, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4505==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 18NI-MIRAGE 200 PLATE(L) AGE 900F951 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.9995E-06 Kg/mm^3Young's Modulus. . . . . . . 1.8823E+02 GPaShear Modulus. . . . . . . . 7.2956E+01 GPaBulk Modulus . . . . . . . . 1.4939E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.4824E+00 GPaEngineering ultimate stress. 1.5513E+00 GPaElongation at failure. . . . 11.000 %Reduction in area. . . . . . 55.000 %CTE. . . . . . . . . . . . . 1.0080E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.90905E+00 m = 0.052597Yield point sy = 1.47953E+00 ey = 0.007860Ultimate (Engineering) SU = 1.55132E+00 EU = 0.054005Ultimate Stress/Total Strain sut = 1.63510E+00 eut = 0.052597Effective Plastic Failure Strain epfs = 0.358100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.9995E-06, 1.8823E+02, 0.290, 1.9091E+00, 0.052597, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3581==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 18NI-MIRAGE 200 WELDED AGE 900F952 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.9995E-06 Kg/mm^3Young's Modulus. . . . . . . 1.8823E+02 GPaShear Modulus. . . . . . . . 7.2956E+01 GPaBulk Modulus . . . . . . . . 1.4939E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.4824E+00 GPaEngineering ultimate stress. 1.5168E+00 GPaElongation at failure. . . . 7.000 %Reduction in area. . . . . . 30.000 %CTE. . . . . . . . . . . . . 1.0080E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.78308E+00 m = 0.037829Yield point sy = 1.48461E+00 ey = 0.007887Ultimate (Engineering) SU = 1.51685E+00 EU = 0.038554Ultimate Stress/Total Strain sut = 1.57533E+00 eut = 0.037829Effective Plastic Failure Strain epfs = 0.183000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.9995E-06, 1.8823E+02, 0.290, 1.7831E+00, 0.037829, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1830==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 18NI-MIRAGE 250 (VM) PLATE(T) ANNEALED953 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 8.0271E-06 Kg/mm^3Young's Modulus. . . . . . . 1.7582E+02 GPaShear Modulus. . . . . . . . 6.8146E+01 GPaBulk Modulus . . . . . . . . 1.3954E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 8.9632E-01 GPaEngineering ultimate stress. 1.0342E+00 GPaElongation at failure. . . . 18.000 %Reduction in area. . . . . . 80.000 %CTE. . . . . . . . . . . . . 1.0080E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.40159E+00 m = 0.088861Yield point sy = 8.74914E-01 ey = 0.004976Ultimate (Engineering) SU = 1.03421E+00 EU = 0.092929Ultimate Stress/Total Strain sut = 1.13032E+00 eut = 0.088861Effective Plastic Failure Strain epfs = 0.610000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 8.0271E-06, 1.7582E+02, 0.290, 1.4016E+00, 0.088861, 0.0, 0.0# sigy vp epfs0.0 0.0 0.6100==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 18NI-MIRAGE 250 (VM) PLATE(T) AGE 900F954 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 8.0271E-06 Kg/mm^3Young's Modulus. . . . . . . 1.7582E+02 GPaShear Modulus. . . . . . . . 6.8146E+01 GPaBulk Modulus . . . . . . . . 1.3954E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.5651E+00 GPaEngineering ultimate stress. 1.6341E+00 GPaElongation at failure. . . . 12.000 %Reduction in area. . . . . . 49.000 %CTE. . . . . . . . . . . . . 1.0080E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.01758E+00 m = 0.053733Yield point sy = 1.56551E+00 ey = 0.008904Ultimate (Engineering) SU = 1.63406E+00 EU = 0.055203Ultimate Stress/Total Strain sut = 1.72426E+00 eut = 0.053733Effective Plastic Failure Strain epfs = 0.434700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 8.0271E-06, 1.7582E+02, 0.290, 2.0176E+00, 0.053733, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4347==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 18NI-MIRAGE 250 (VM) PLATE(L) AGE 900F955 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 8.0271E-06 Kg/mm^3Young's Modulus. . . . . . . 1.7788E+02 GPaShear Modulus. . . . . . . . 6.8948E+01 GPaBulk Modulus . . . . . . . . 1.4118E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.6341E+00 GPaEngineering ultimate stress. 1.7651E+00 GPaElongation at failure. . . . 11.000 %Reduction in area. . . . . . 62.000 %CTE. . . . . . . . . . . . . 1.0080E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.30374E+00 m = 0.073876Yield point sy = 1.62874E+00 ey = 0.009156Ultimate (Engineering) SU = 1.76506E+00 EU = 0.076674Ultimate Stress/Total Strain sut = 1.90039E+00 eut = 0.073876Effective Plastic Failure Strain epfs = 0.221500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 8.0271E-06, 1.7788E+02, 0.290, 2.3037E+00, 0.073876, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2215==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 18NI-MIRAGE 250 (VM) SHEET(T) AGE 900F956 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 8.0271E-06 Kg/mm^3Young's Modulus. . . . . . . 1.7513E+02 GPaShear Modulus. . . . . . . . 6.7879E+01 GPaBulk Modulus . . . . . . . . 1.3899E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.8133E+00 GPaEngineering ultimate stress. 1.8547E+00 GPaElongation at failure. . . . 3.100 %CTE. . . . . . . . . . . . . 1.0080E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.23080E+00 m = 0.044302Yield point sy = 1.82231E+00 ey = 0.010406Ultimate (Engineering) SU = 1.85469E+00 EU = 0.045298Ultimate Stress/Total Strain sut = 1.91131E+00 eut = 0.030529Effective Plastic Failure Strain epfs = 0.022200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 8.0271E-06, 1.7513E+02, 0.290, 2.2308E+00, 0.044302, 0.0, 0.0# sigy vp epfs0.0 0.0 0.0222==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 18NI-MIRAGE 300 (VM) PLATE(T) ANNEALED957 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 8.0271E-06 Kg/mm^3Young's Modulus. . . . . . . 1.8892E+02 GPaShear Modulus. . . . . . . . 7.3223E+01 GPaBulk Modulus . . . . . . . . 1.4993E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 8.2737E-01 GPaEngineering ultimate stress. 1.0480E+00 GPaElongation at failure. . . . 19.000 %Reduction in area. . . . . . 72.000 %CTE. . . . . . . . . . . . . 8.6400E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.52124E+00 m = 0.119155Yield point sy = 7.92363E-01 ey = 0.004194Ultimate (Engineering) SU = 1.04800E+00 EU = 0.126544Ultimate Stress/Total Strain sut = 1.18062E+00 eut = 0.119155Effective Plastic Failure Strain epfs = 0.426200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 8.0271E-06, 1.8892E+02, 0.290, 1.5212E+00, 0.119155, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4262==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 18NI-MIRAGE 300 (VM) PLATE(T) AGE 900F958 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 8.0271E-06 Kg/mm^3Young's Modulus. . . . . . . 1.8892E+02 GPaShear Modulus. . . . . . . . 7.3223E+01 GPaBulk Modulus . . . . . . . . 1.4993E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.9098E+00 GPaEngineering ultimate stress. 1.9788E+00 GPaElongation at failure. . . . 6.700 %CTE. . . . . . . . . . . . . 8.6400E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.42407E+00 m = 0.051221Yield point sy = 1.91610E+00 ey = 0.010143Ultimate (Engineering) SU = 1.97880E+00 EU = 0.052556Ultimate Stress/Total Strain sut = 2.10712E+00 eut = 0.064851Effective Plastic Failure Strain epfs = 0.106900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 8.0271E-06, 1.8892E+02, 0.290, 2.4241E+00, 0.051221, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1069==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 18NI-MIRAGE 300 (VM) PLATE(L) AGE 900F959 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 8.0271E-06 Kg/mm^3Young's Modulus. . . . . . . 1.7995E+02 GPaShear Modulus. . . . . . . . 6.9749E+01 GPaBulk Modulus . . . . . . . . 1.4282E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.9236E+00 GPaEngineering ultimate stress. 1.9857E+00 GPaElongation at failure. . . . 7.000 %Reduction in area. . . . . . 50.000 %CTE. . . . . . . . . . . . . 8.6400E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.42619E+00 m = 0.050190Yield point sy = 1.93240E+00 ey = 0.010738Ultimate (Engineering) SU = 1.98569E+00 EU = 0.051470Ultimate Stress/Total Strain sut = 2.08789E+00 eut = 0.050190Effective Plastic Failure Strain epfs = 0.124700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 8.0271E-06, 1.7995E+02, 0.290, 2.4262E+00, 0.050190, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1247==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 18NI-MIRAGE 300 (VM) SHEET(T) AGE 900F960 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 8.0271E-06 Kg/mm^3Young's Modulus. . . . . . . 1.8478E+02 GPaShear Modulus. . . . . . . . 7.1620E+01 GPaBulk Modulus . . . . . . . . 1.4665E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.8754E+00 GPaEngineering ultimate stress. 1.9581E+00 GPaElongation at failure. . . . 3.500 %CTE. . . . . . . . . . . . . 8.6400E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.49618E+00 m = 0.062012Yield point sy = 1.87797E+00 ey = 0.010163Ultimate (Engineering) SU = 1.95811E+00 EU = 0.063975Ultimate Stress/Total Strain sut = 2.02547E+00 eut = 0.034401Effective Plastic Failure Strain epfs = 0.025200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 8.0271E-06, 1.8478E+02, 0.290, 2.4962E+00, 0.062012, 0.0, 0.0# sigy vp epfs0.0 0.0 0.0252==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 18NI-MIRAGE 350 (VM) 5/8 BAR ANNEALED961 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 8.0825E-06 Kg/mm^3Young's Modulus. . . . . . . 1.8616E+02 GPaShear Modulus. . . . . . . . 7.2154E+01 GPaBulk Modulus . . . . . . . . 1.4774E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 8.2737E-01 GPaEngineering ultimate stress. 1.1376E+00 GPaElongation at failure. . . . 18.000 %Reduction in area. . . . . . 70.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.74560E+00 m = 0.146635Yield point sy = 7.82494E-01 ey = 0.004203Ultimate (Engineering) SU = 1.13764E+00 EU = 0.157931Ultimate Stress/Total Strain sut = 1.31730E+00 eut = 0.146635Effective Plastic Failure Strain epfs = 0.227200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 8.0825E-06, 1.8616E+02, 0.290, 1.7456E+00, 0.146635, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2272==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 18NI-MIRAGE 350 (VM) 5/8 BAR AGE 900F962 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 8.0825E-06 Kg/mm^3Young's Modulus. . . . . . . 1.8616E+02 GPaShear Modulus. . . . . . . . 7.2154E+01 GPaBulk Modulus . . . . . . . . 1.4774E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 2.3028E+00 GPaEngineering ultimate stress. 2.3511E+00 GPaElongation at failure. . . . 10.000 %Reduction in area. . . . . . 50.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.82598E+00 m = 0.044812Yield point sy = 2.32191E+00 ey = 0.012473Ultimate (Engineering) SU = 2.35111E+00 EU = 0.045831Ultimate Stress/Total Strain sut = 2.45887E+00 eut = 0.044812Effective Plastic Failure Strain epfs = 0.355800# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 8.0825E-06, 1.8616E+02, 0.290, 2.8260E+00, 0.044812, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3558==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 18NI-MIRAGE 350 (VM) 1/2 PLATE(T) AGE 900F963 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 8.0825E-06 Kg/mm^3Young's Modulus. . . . . . . 1.8616E+02 GPaShear Modulus. . . . . . . . 7.2154E+01 GPaBulk Modulus . . . . . . . . 1.4774E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 2.3787E+00 GPaEngineering ultimate stress. 2.4270E+00 GPaElongation at failure. . . . 8.500 %Reduction in area. . . . . . 43.700 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.91866E+00 m = 0.044980Yield point sy = 2.39985E+00 ey = 0.012891Ultimate (Engineering) SU = 2.42695E+00 EU = 0.046007Ultimate Stress/Total Strain sut = 2.53861E+00 eut = 0.044980Effective Plastic Failure Strain epfs = 0.241900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 8.0825E-06, 1.8616E+02, 0.290, 2.9187E+00, 0.044980, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2419==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 18NI-MIRAGE 350 (VM) SHEET(T) AGE 900F964 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 8.0825E-06 Kg/mm^3Young's Modulus. . . . . . . 1.8616E+02 GPaShear Modulus. . . . . . . . 7.2154E+01 GPaBulk Modulus . . . . . . . . 1.4774E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 2.5097E+00 GPaEngineering ultimate stress. 2.5717E+00 GPaElongation at failure. . . . 4.000 %Reduction in area. . . . . . 15.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 3.14093E+00 m = 0.050049Yield point sy = 2.53311E+00 ey = 0.013607Ultimate (Engineering) SU = 2.57174E+00 EU = 0.051323Ultimate Stress/Total Strain sut = 2.70373E+00 eut = 0.050049Effective Plastic Failure Strain epfs = 0.029000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 8.0825E-06, 1.8616E+02, 0.290, 3.1409E+00, 0.050049, 0.0, 0.0# sigy vp epfs0.0 0.0 0.0290==================================================================*MAT_POWER_LAW_PLASTICITYTANTALUM PURE ANNEALED SHEET965 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 1.6608E-05 Kg/mm^3Young's Modulus. . . . . . . 1.8616E+02 GPaShear Modulus. . . . . . . . 6.8948E+01 GPaBulk Modulus . . . . . . . . 2.0684E+02 GPaPoisson's ratio. . . . . . . 0.3500Yield stress at offset . . . 2.4132E-01 GPaEngineering ultimate stress. 3.1026E-01 GPaElongation at failure. . . . 30.000 %CTE. . . . . . . . . . . . . 6.4260E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 4.33598E-01 m = 0.101934Yield point sy = 2.17898E-01 ey = 0.001170Ultimate (Engineering) SU = 3.10264E-01 EU = 0.107311Ultimate Stress/Total Strain sut = 3.43559E-01 eut = 0.101934Effective Plastic Failure Strain epfs = 1.310300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 1.6608E-05, 1.8616E+02, 0.350, 4.3360E-01, 0.101934, 0.0, 0.0# sigy vp epfs0.0 0.0 1.3103==================================================================*MAT_POWER_LAW_PLASTICITYTEFLON966 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 2.2005E-06 Kg/mm^3Young's Modulus. . . . . . . 4.2403E-01 GPaShear Modulus. . . . . . . . 1.4622E-01 GPaBulk Modulus . . . . . . . . 1.4134E+00 GPaPoisson's ratio. . . . . . . 0.4500Yield stress at offset . . . 8.2737E-03 GPaEngineering ultimate stress. 1.2411E-02 GPaElongation at failure. . . . 100.000 %CTE. . . . . . . . . . . . . 9.9000E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.27657E-02 m = 0.257387Yield point sy = 8.26160E-03 ey = 0.019484Ultimate (Engineering) SU = 1.24106E-02 EU = 0.293545Ultimate Stress/Total Strain sut = 1.60536E-02 eut = 0.257387Effective Plastic Failure Strain epfs = 2.775400# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 2.2005E-06, 4.2403E-01, 0.450, 2.2766E-02, 0.257387, 0.0, 0.0# sigy vp epfs0.0 0.0 2.7754==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM COMMERCIAL PURE ANNEALED967 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.5118E-06 Kg/mm^3Young's Modulus. . . . . . . 1.1376E+02 GPaShear Modulus. . . . . . . . 4.3755E+01 GPaBulk Modulus . . . . . . . . 9.4803E+01 GPaPoisson's ratio. . . . . . . 0.3000Yield stress at offset . . . 4.8263E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 9.0000E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.08755E-01 m = 0.123358Yield point sy = 4.60560E-01 ey = 0.004048Ultimate (Engineering) SU = 6.20528E-01 EU = 0.131289Ultimate Stress/Total Strain sut = 7.01997E-01 eut = 0.123358Effective Plastic Failure Strain epfs = 0.716900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.5118E-06, 1.1376E+02, 0.300, 9.0876E-01, 0.123358, 0.0, 0.0# sigy vp epfs0.0 0.0 0.7169==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT UNALLOYED GRADE 1 ANNEALED968 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.5118E-06 Kg/mm^3Young's Modulus. . . . . . . 1.0204E+02 GPaShear Modulus. . . . . . . . 3.8076E+01 GPaBulk Modulus . . . . . . . . 1.0629E+02 GPaPoisson's ratio. . . . . . . 0.3400Yield stress at offset . . . 2.4132E-01 GPaEngineering ultimate stress. 3.3095E-01 GPaElongation at failure. . . . 30.000 %CTE. . . . . . . . . . . . . 8.6400E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 4.91367E-01 m = 0.130000Yield point sy = 2.21376E-01 ey = 0.002169Ultimate (Engineering) SU = 3.30948E-01 EU = 0.138829Ultimate Stress/Total Strain sut = 3.76894E-01 eut = 0.130000Effective Plastic Failure Strain epfs = 1.191600# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.5118E-06, 1.0204E+02, 0.340, 4.9137E-01, 0.130000, 0.0, 0.0# sigy vp epfs0.0 0.0 1.1916==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT UNALLOYED GRADE 2 ANNEALED969 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.5118E-06 Kg/mm^3Young's Modulus. . . . . . . 1.0273E+02 GPaShear Modulus. . . . . . . . 3.8333E+01 GPaBulk Modulus . . . . . . . . 1.0701E+02 GPaPoisson's ratio. . . . . . . 0.3400Yield stress at offset . . . 3.4474E-01 GPaEngineering ultimate stress. 4.3437E-01 GPaElongation at failure. . . . 28.000 %CTE. . . . . . . . . . . . . 8.6400E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 6.19488E-01 m = 0.110997Yield point sy = 3.27260E-01 ey = 0.003186Ultimate (Engineering) SU = 4.34370E-01 EU = 0.117392Ultimate Stress/Total Strain sut = 4.85361E-01 eut = 0.110997Effective Plastic Failure Strain epfs = 1.248300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.5118E-06, 1.0273E+02, 0.340, 6.1949E-01, 0.110997, 0.0, 0.0# sigy vp epfs0.0 0.0 1.2483==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT UNALLOYED GRADE 3 ANNEALED970 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.5118E-06 Kg/mm^3Young's Modulus. . . . . . . 1.0342E+02 GPaShear Modulus. . . . . . . . 3.8590E+01 GPaBulk Modulus . . . . . . . . 1.0773E+02 GPaPoisson's ratio. . . . . . . 0.3400Yield stress at offset . . . 4.4816E-01 GPaEngineering ultimate stress. 5.1711E-01 GPaElongation at failure. . . . 25.000 %CTE. . . . . . . . . . . . . 8.6400E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 6.94735E-01 m = 0.085303Yield point sy = 4.35700E-01 ey = 0.004213Ultimate (Engineering) SU = 5.17107E-01 EU = 0.089047Ultimate Stress/Total Strain sut = 5.63154E-01 eut = 0.085303Effective Plastic Failure Strain epfs = 1.273200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.5118E-06, 1.0342E+02, 0.340, 6.9473E-01, 0.085303, 0.0, 0.0# sigy vp epfs0.0 0.0 1.2732==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT UNALLOYED GRADE 4 ANNEALED971 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.5118E-06 Kg/mm^3Young's Modulus. . . . . . . 1.0411E+02 GPaShear Modulus. . . . . . . . 3.8847E+01 GPaBulk Modulus . . . . . . . . 1.0845E+02 GPaPoisson's ratio. . . . . . . 0.3400Yield stress at offset . . . 5.8605E-01 GPaEngineering ultimate stress. 6.5500E-01 GPaElongation at failure. . . . 20.000 %CTE. . . . . . . . . . . . . 8.6400E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.64040E-01 m = 0.078000Yield point sy = 5.76087E-01 ey = 0.005533Ultimate (Engineering) SU = 6.55002E-01 EU = 0.081122Ultimate Stress/Total Strain sut = 7.08137E-01 eut = 0.078000Effective Plastic Failure Strain epfs = 0.971900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.5118E-06, 1.0411E+02, 0.340, 8.6404E-01, 0.078000, 0.0, 0.0# sigy vp epfs0.0 0.0 0.9719==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT 0.2PB GRADE 7 ANNEALED972 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.5118E-06 Kg/mm^3Young's Modulus. . . . . . . 1.0273E+02 GPaShear Modulus. . . . . . . . 3.8333E+01 GPaBulk Modulus . . . . . . . . 1.0701E+02 GPaPoisson's ratio. . . . . . . 0.3400Yield stress at offset . . . 3.4474E-01 GPaEngineering ultimate stress. 4.3437E-01 GPaElongation at failure. . . . 28.000 %CTE. . . . . . . . . . . . . 8.6400E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 6.19488E-01 m = 0.110997Yield point sy = 3.27260E-01 ey = 0.003186Ultimate (Engineering) SU = 4.34370E-01 EU = 0.117392Ultimate Stress/Total Strain sut = 4.85361E-01 eut = 0.110997Effective Plastic Failure Strain epfs = 1.248300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.5118E-06, 1.0273E+02, 0.340, 6.1949E-01, 0.110997, 0.0, 0.0# sigy vp epfs0.0 0.0 1.2483==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT CODE 12 ANNEALED973 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.5395E-06 Kg/mm^3Young's Modulus. . . . . . . 1.0342E+02 GPaShear Modulus. . . . . . . . 3.7472E+01 GPaBulk Modulus . . . . . . . . 1.4364E+02 GPaPoisson's ratio. . . . . . . 0.3800Yield stress at offset . . . 4.8263E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 9.9000E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.13714E-01 m = 0.125972Yield point sy = 4.62169E-01 ey = 0.004469Ultimate (Engineering) SU = 6.20528E-01 EU = 0.134250Ultimate Stress/Total Strain sut = 7.03834E-01 eut = 0.125972Effective Plastic Failure Strain epfs = 0.696400# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.5395E-06, 1.0342E+02, 0.380, 9.1371E-01, 0.125972, 0.0, 0.0# sigy vp epfs0.0 0.0 0.6964==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT 5-AL 2.5-SN ANNEALED974 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.4841E-06 Kg/mm^3Young's Modulus. . . . . . . 1.0894E+02 GPaShear Modulus. . . . . . . . 4.0648E+01 GPaBulk Modulus . . . . . . . . 1.1348E+02 GPaPoisson's ratio. . . . . . . 0.3400Yield stress at offset . . . 7.9290E-01 GPaEngineering ultimate stress. 8.2737E-01 GPaElongation at failure. . . . 13.000 %CTE. . . . . . . . . . . . . 9.3600E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.00831E+00 m = 0.049332Yield point sy = 7.90804E-01 ey = 0.007259Ultimate (Engineering) SU = 8.27371E-01 EU = 0.050569Ultimate Stress/Total Strain sut = 8.69211E-01 eut = 0.049332Effective Plastic Failure Strain epfs = 0.555100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.4841E-06, 1.0894E+02, 0.340, 1.0083E+00, 0.049332, 0.0, 0.0# sigy vp epfs0.0 0.0 0.5551==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT 5-AL 2.5-SN ELI ANNEALED975 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.4841E-06 Kg/mm^3Young's Modulus. . . . . . . 1.1032E+02 GPaShear Modulus. . . . . . . . 4.1163E+01 GPaBulk Modulus . . . . . . . . 1.1491E+02 GPaPoisson's ratio. . . . . . . 0.3400Yield stress at offset . . . 6.8948E-01 GPaEngineering ultimate stress. 7.5842E-01 GPaElongation at failure. . . . 17.000 %CTE. . . . . . . . . . . . . 9.3600E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.88378E-01 m = 0.073291Yield point sy = 6.80730E-01 ey = 0.006171Ultimate (Engineering) SU = 7.58423E-01 EU = 0.076043Ultimate Stress/Total Strain sut = 8.16096E-01 eut = 0.073291Effective Plastic Failure Strain epfs = 0.690000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.4841E-06, 1.1032E+02, 0.340, 9.8838E-01, 0.073291, 0.0, 0.0# sigy vp epfs0.0 0.0 0.6900==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT 3-AL 2.5-V ANNEALED976 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.4841E-06 Kg/mm^3Young's Modulus. . . . . . . 9.9974E+01 GPaShear Modulus. . . . . . . . 3.7304E+01 GPaBulk Modulus . . . . . . . . 1.0414E+02 GPaPoisson's ratio. . . . . . . 0.3400Yield stress at offset . . . 6.2053E-01 GPaEngineering ultimate stress. 6.5500E-01 GPaElongation at failure. . . . 22.000 %CTE. . . . . . . . . . . . . 9.5400E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.06766E-01 m = 0.052901Yield point sy = 6.16358E-01 ey = 0.006165Ultimate (Engineering) SU = 6.55002E-01 EU = 0.054325Ultimate Stress/Total Strain sut = 6.90585E-01 eut = 0.052901Effective Plastic Failure Strain epfs = 1.361300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.4841E-06, 9.9974E+01, 0.340, 8.0677E-01, 0.052901, 0.0, 0.0# sigy vp epfs0.0 0.0 1.3613==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT 6-AL 2-CB 1-TA 1-MO ANNEALED977 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.4841E-06 Kg/mm^3Young's Modulus. . . . . . . 1.1583E+02 GPaShear Modulus. . . . . . . . 4.4211E+01 GPaBulk Modulus . . . . . . . . 1.0161E+02 GPaPoisson's ratio. . . . . . . 0.3100Yield stress at offset . . . 7.5842E-01 GPaEngineering ultimate stress. 8.6184E-01 GPaElongation at failure. . . . 14.000 %CTE. . . . . . . . . . . . . 9.1800E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.16768E+00 m = 0.088752Yield point sy = 7.46231E-01 ey = 0.006442Ultimate (Engineering) SU = 8.61845E-01 EU = 0.092809Ultimate Stress/Total Strain sut = 9.41832E-01 eut = 0.088752Effective Plastic Failure Strain epfs = 0.310300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.4841E-06, 1.1583E+02, 0.310, 1.1677E+00, 0.088752, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3103==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT 8-AL 1-MO 1-V ANNEALED978 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.3734E-06 Kg/mm^3Young's Modulus. . . . . . . 1.2066E+02 GPaShear Modulus. . . . . . . . 4.5704E+01 GPaBulk Modulus . . . . . . . . 1.1172E+02 GPaPoisson's ratio. . . . . . . 0.3200Yield stress at offset . . . 9.3079E-01 GPaEngineering ultimate stress. 9.9974E-01 GPaElongation at failure. . . . 12.000 %CTE. . . . . . . . . . . . . 8.6400E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.27962E+00 m = 0.066526Yield point sy = 9.25476E-01 ey = 0.007670Ultimate (Engineering) SU = 9.99740E-01 EU = 0.068789Ultimate Stress/Total Strain sut = 1.06851E+00 eut = 0.066526Effective Plastic Failure Strain epfs = 0.327400# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.3734E-06, 1.2066E+02, 0.320, 1.2796E+00, 0.066526, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3274==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT 4.5-AL 5-MO 1.5-CR CRONA5979 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.5395E-06 Kg/mm^3Young's Modulus. . . . . . . 1.1170E+02 GPaShear Modulus. . . . . . . . 4.1677E+01 GPaBulk Modulus . . . . . . . . 1.1635E+02 GPaPoisson's ratio. . . . . . . 0.3400Yield stress at offset . . . 9.3079E-01 GPaEngineering ultimate stress. 9.6527E-01 GPaElongation at failure. . . . 12.000 %CTE. . . . . . . . . . . . . 9.0000E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.17192E+00 m = 0.048078Yield point sy = 9.30974E-01 ey = 0.008335Ultimate (Engineering) SU = 9.65266E-01 EU = 0.049253Ultimate Stress/Total Strain sut = 1.01281E+00 eut = 0.048078Effective Plastic Failure Strain epfs = 0.481400# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.5395E-06, 1.1170E+02, 0.340, 1.1719E+00, 0.048078, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4814==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT 5-AL 2-SN 2-ZR 4-MO 4-CR ANNEALED980 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.6502E-06 Kg/mm^3Young's Modulus. . . . . . . 1.1238E+02 GPaShear Modulus. . . . . . . . 4.2570E+01 GPaBulk Modulus . . . . . . . . 1.0406E+02 GPaPoisson's ratio. . . . . . . 0.3200Yield stress at offset . . . 1.0687E+00 GPaEngineering ultimate stress. 1.1376E+00 GPaElongation at failure. . . . 8.000 %CTE. . . . . . . . . . . . . 9.3600E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.45003E+00 m = 0.065702Yield point sy = 1.06786E+00 ey = 0.009502Ultimate (Engineering) SU = 1.13764E+00 EU = 0.067908Ultimate Stress/Total Strain sut = 1.22519E+00 eut = 0.076961Effective Plastic Failure Strain epfs = 0.111300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.6502E-06, 1.1238E+02, 0.320, 1.4500E+00, 0.065702, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1113==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM 6-AL 4-V ANNEALED981 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.4564E-06 Kg/mm^3Young's Modulus. . . . . . . 1.1376E+02 GPaShear Modulus. . . . . . . . 4.3755E+01 GPaBulk Modulus . . . . . . . . 9.4803E+01 GPaPoisson's ratio. . . . . . . 0.3000Yield stress at offset . . . 8.9632E-01 GPaEngineering ultimate stress. 9.3079E-01 GPaElongation at failure. . . . 15.000 %CTE. . . . . . . . . . . . . 1.0260E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.12935E+00 m = 0.047871Yield point sy = 8.95600E-01 ey = 0.007872Ultimate (Engineering) SU = 9.30792E-01 EU = 0.049035Ultimate Stress/Total Strain sut = 9.76434E-01 eut = 0.047871Effective Plastic Failure Strain epfs = 0.800000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.4564E-06, 1.1376E+02, 0.300, 1.1294E+00, 0.047871, 0.0, 0.0# sigy vp epfs0.0 0.0 0.8000==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM 6-AL 4-V HEAT-TREATED982 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.4564E-06 Kg/mm^3Young's Modulus. . . . . . . 1.1376E+02 GPaShear Modulus. . . . . . . . 4.3755E+01 GPaBulk Modulus . . . . . . . . 9.4803E+01 GPaPoisson's ratio. . . . . . . 0.3000Yield stress at offset . . . 9.9974E-01 GPaEngineering ultimate stress. 1.0687E+00 GPaElongation at failure. . . . 12.000 %CTE. . . . . . . . . . . . . 1.0260E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.37011E+00 m = 0.067132Yield point sy = 9.96877E-01 ey = 0.008763Ultimate (Engineering) SU = 1.06869E+00 EU = 0.069436Ultimate Stress/Total Strain sut = 1.14289E+00 eut = 0.067132Effective Plastic Failure Strain epfs = 0.326900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.4564E-06, 1.1376E+02, 0.300, 1.3701E+00, 0.067132, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3269==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT 6-AL 4-V AGED983 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.4288E-06 Kg/mm^3Young's Modulus. . . . . . . 1.1376E+02 GPaShear Modulus. . . . . . . . 4.2449E+01 GPaBulk Modulus . . . . . . . . 1.1850E+02 GPaPoisson's ratio. . . . . . . 0.3400Yield stress at offset . . . 1.1032E+00 GPaEngineering ultimate stress. 1.1721E+00 GPaElongation at failure. . . . 12.000 %CTE. . . . . . . . . . . . . 9.0000E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.49906E+00 m = 0.066236Yield point sy = 1.10268E+00 ey = 0.009693Ultimate (Engineering) SU = 1.17211E+00 EU = 0.068479Ultimate Stress/Total Strain sut = 1.25237E+00 eut = 0.066236Effective Plastic Failure Strain epfs = 0.335300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.4288E-06, 1.1376E+02, 0.340, 1.4991E+00, 0.066236, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3353==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT 6-AL 4-V ELI ANNEALED984 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.4288E-06 Kg/mm^3Young's Modulus. . . . . . . 1.1032E+02 GPaShear Modulus. . . . . . . . 4.1163E+01 GPaBulk Modulus . . . . . . . . 1.1491E+02 GPaPoisson's ratio. . . . . . . 0.3400Yield stress at offset . . . 8.2737E-01 GPaEngineering ultimate stress. 9.3079E-01 GPaElongation at failure. . . . 10.000 %CTE. . . . . . . . . . . . . 8.6400E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.25883E+00 m = 0.088009Yield point sy = 8.17512E-01 ey = 0.007411Ultimate (Engineering) SU = 9.30792E-01 EU = 0.091998Ultimate Stress/Total Strain sut = 1.01642E+00 eut = 0.088009Effective Plastic Failure Strain epfs = 0.120300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.4288E-06, 1.1032E+02, 0.340, 1.2588E+00, 0.088009, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1203==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT 6-AL 6-V 2-SN ANNEALED985 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.5395E-06 Kg/mm^3Young's Modulus. . . . . . . 1.1032E+02 GPaShear Modulus. . . . . . . . 4.1786E+01 GPaBulk Modulus . . . . . . . . 1.0214E+02 GPaPoisson's ratio. . . . . . . 0.3200Yield stress at offset . . . 9.9974E-01 GPaEngineering ultimate stress. 1.0687E+00 GPaElongation at failure. . . . 14.000 %CTE. . . . . . . . . . . . . 9.1800E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.37298E+00 m = 0.067907Yield point sy = 9.97419E-01 ey = 0.009041Ultimate (Engineering) SU = 1.06869E+00 EU = 0.070266Ultimate Stress/Total Strain sut = 1.14378E+00 eut = 0.067907Effective Plastic Failure Strain epfs = 0.480700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.5395E-06, 1.1032E+02, 0.320, 1.3730E+00, 0.067907, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4807==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT 6-AL 6-V 2-SN AGED986 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.5395E-06 Kg/mm^3Young's Modulus. . . . . . . 1.1721E+02 GPaShear Modulus. . . . . . . . 4.4398E+01 GPaBulk Modulus . . . . . . . . 1.0853E+02 GPaPoisson's ratio. . . . . . . 0.3200Yield stress at offset . . . 1.2066E+00 GPaEngineering ultimate stress. 1.2755E+00 GPaElongation at failure. . . . 10.000 %CTE. . . . . . . . . . . . . 9.1800E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.62508E+00 m = 0.064827Yield point sy = 1.20801E+00 ey = 0.010306Ultimate (Engineering) SU = 1.27553E+00 EU = 0.066974Ultimate Stress/Total Strain sut = 1.36096E+00 eut = 0.064827Effective Plastic Failure Strain epfs = 0.214200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.5395E-06, 1.1721E+02, 0.320, 1.6251E+00, 0.064827, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2142==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT 6-AL 2-SN 4-ZR 2-MO ANNEALED987 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.5395E-06 Kg/mm^3Young's Modulus. . . . . . . 1.1376E+02 GPaShear Modulus. . . . . . . . 4.3092E+01 GPaBulk Modulus . . . . . . . . 1.0534E+02 GPaPoisson's ratio. . . . . . . 0.3200Yield stress at offset . . . 9.1700E-01 GPaEngineering ultimate stress. 9.9974E-01 GPaElongation at failure. . . . 15.000 %CTE. . . . . . . . . . . . . 7.7400E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.30923E+00 m = 0.075166Yield point sy = 9.10804E-01 ey = 0.008006Ultimate (Engineering) SU = 9.99740E-01 EU = 0.078063Ultimate Stress/Total Strain sut = 1.07778E+00 eut = 0.075166Effective Plastic Failure Strain epfs = 0.495600# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.5395E-06, 1.1376E+02, 0.320, 1.3092E+00, 0.075166, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4956==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT 6-AL 2-SN 4-ZR 6-MO ANNEALED988 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.6502E-06 Kg/mm^3Young's Modulus. . . . . . . 1.1376E+02 GPaShear Modulus. . . . . . . . 4.3092E+01 GPaBulk Modulus . . . . . . . . 1.0534E+02 GPaPoisson's ratio. . . . . . . 0.3200Yield stress at offset . . . 9.6527E-01 GPaEngineering ultimate stress. 1.0342E+00 GPaElongation at failure. . . . 11.000 %CTE. . . . . . . . . . . . . 9.0000E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.32726E+00 m = 0.067506Yield point sy = 9.61645E-01 ey = 0.008453Ultimate (Engineering) SU = 1.03421E+00 EU = 0.069837Ultimate Stress/Total Strain sut = 1.10644E+00 eut = 0.067506Effective Plastic Failure Strain epfs = 0.256700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.6502E-06, 1.1376E+02, 0.320, 1.3273E+00, 0.067506, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2567==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT 6-AL 2-SN 4-ZR 6-MO ANNEALED989 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.6502E-06 Kg/mm^3Young's Modulus. . . . . . . 1.1376E+02 GPaShear Modulus. . . . . . . . 4.3092E+01 GPaBulk Modulus . . . . . . . . 1.0534E+02 GPaPoisson's ratio. . . . . . . 0.3200Yield stress at offset . . . 1.1376E+00 GPaEngineering ultimate stress. 1.2066E+00 GPaElongation at failure. . . . 8.000 %CTE. . . . . . . . . . . . . 9.0000E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.53487E+00 m = 0.064931Yield point sy = 1.13822E+00 ey = 0.010005Ultimate (Engineering) SU = 1.20658E+00 EU = 0.067086Ultimate Stress/Total Strain sut = 1.29944E+00 eut = 0.076961Effective Plastic Failure Strain epfs = 0.113800# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.6502E-06, 1.1376E+02, 0.320, 1.5349E+00, 0.064931, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1138==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT 6-AL 2-SN 2-ZR 2-MO 2-CR 0.25-SI990 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.4841E-06 Kg/mm^3Young's Modulus. . . . . . . 1.0825E+02 GPaShear Modulus. . . . . . . . 4.1003E+01 GPaBulk Modulus . . . . . . . . 1.0023E+02 GPaPoisson's ratio. . . . . . . 0.3200Yield stress at offset . . . 1.0135E+00 GPaEngineering ultimate stress. 1.1170E+00 GPaElongation at failure. . . . 14.000 %CTE. . . . . . . . . . . . . 9.1800E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.49830E+00 m = 0.084673Yield point sy = 1.00843E+00 ey = 0.009316Ultimate (Engineering) SU = 1.11695E+00 EU = 0.088361Ultimate Stress/Total Strain sut = 1.21565E+00 eut = 0.084673Effective Plastic Failure Strain epfs = 0.345300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.4841E-06, 1.0825E+02, 0.320, 1.4983E+00, 0.084673, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3453==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT 10-V 2-FE 3-AL ANNEALED991 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.6502E-06 Kg/mm^3Young's Modulus. . . . . . . 1.0963E+02 GPaShear Modulus. . . . . . . . 4.1525E+01 GPaBulk Modulus . . . . . . . . 1.0151E+02 GPaPoisson's ratio. . . . . . . 0.3200Yield stress at offset . . . 8.9632E-01 GPaEngineering ultimate stress. 9.6527E-01 GPaElongation at failure. . . . 9.000 %CTE. . . . . . . . . . . . . 9.7200E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.24472E+00 m = 0.069293Yield point sy = 8.91816E-01 ey = 0.008135Ultimate (Engineering) SU = 9.65266E-01 EU = 0.071750Ultimate Stress/Total Strain sut = 0.00000E+00 eut = 0.000000Effective Plastic Failure Strain epfs = 0.140900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.6502E-06, 1.0963E+02, 0.320, 1.2447E+00, 0.069293, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1409==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT 10-V 2-FE 3-AL AGED992 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.6502E-06 Kg/mm^3Young's Modulus. . . . . . . 1.0963E+02 GPaShear Modulus. . . . . . . . 4.1525E+01 GPaBulk Modulus . . . . . . . . 1.0151E+02 GPaPoisson's ratio. . . . . . . 0.3200Yield stress at offset . . . 1.1376E+00 GPaEngineering ultimate stress. 1.2411E+00 GPaElongation at failure. . . . 7.000 %CTE. . . . . . . . . . . . . 9.7200E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.65350E+00 m = 0.082227Yield point sy = 1.13555E+00 ey = 0.010358Ultimate (Engineering) SU = 1.24106E+00 EU = 0.085703Ultimate Stress/Total Strain sut = 1.32502E+00 eut = 0.067659Effective Plastic Failure Strain epfs = 0.061500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.6502E-06, 1.0963E+02, 0.320, 1.6535E+00, 0.082227, 0.0, 0.0# sigy vp epfs0.0 0.0 0.0615==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT 15-V 3-CR 3-SN 3-AL SOLUTION ANNEALED993 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.7609E-06 Kg/mm^3Young's Modulus. . . . . . . 8.2737E+01 GPaShear Modulus. . . . . . . . 3.1340E+01 GPaBulk Modulus . . . . . . . . 7.6608E+01 GPaPoisson's ratio. . . . . . . 0.3200Yield stress at offset . . . 7.7221E-01 GPaEngineering ultimate stress. 7.9290E-01 GPaElongation at failure. . . . 20.000 %CTE. . . . . . . . . . . . . 8.4600E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.48951E-01 m = 0.043434Yield point sy = 7.74705E-01 ey = 0.009363Ultimate (Engineering) SU = 7.92897E-01 EU = 0.044391Ultimate Stress/Total Strain sut = 8.28094E-01 eut = 0.043434Effective Plastic Failure Strain epfs = 1.345600# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.7609E-06, 8.2737E+01, 0.320, 9.4895E-01, 0.043434, 0.0, 0.0# sigy vp epfs0.0 0.0 1.3456==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT 15-V 3-CR 3-SN 3-AL AGED994 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.7609E-06 Kg/mm^3Young's Modulus. . . . . . . 9.8595E+01 GPaShear Modulus. . . . . . . . 3.7347E+01 GPaBulk Modulus . . . . . . . . 9.1292E+01 GPaPoisson's ratio. . . . . . . 0.3200Yield stress at offset . . . 1.0687E+00 GPaEngineering ultimate stress. 1.1376E+00 GPaElongation at failure. . . . 8.000 %CTE. . . . . . . . . . . . . 8.4600E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.46214E+00 m = 0.068945Yield point sy = 1.07044E+00 ey = 0.010857Ultimate (Engineering) SU = 1.13764E+00 EU = 0.071377Ultimate Stress/Total Strain sut = 1.22519E+00 eut = 0.076961Effective Plastic Failure Strain epfs = 0.100900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.7609E-06, 9.8595E+01, 0.320, 1.4621E+00, 0.068945, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1009==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT 13-V 11-CR 3-AL ANNEALED995 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.8440E-06 Kg/mm^3Young's Modulus. . . . . . . 9.8595E+01 GPaShear Modulus. . . . . . . . 3.7921E+01 GPaBulk Modulus . . . . . . . . 8.2163E+01 GPaPoisson's ratio. . . . . . . 0.3000Yield stress at offset . . . 8.6184E-01 GPaEngineering ultimate stress. 9.3079E-01 GPaElongation at failure. . . . 18.000 %CTE. . . . . . . . . . . . . 9.3600E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.21042E+00 m = 0.072474Yield point sy = 8.58265E-01 ey = 0.008705Ultimate (Engineering) SU = 9.30792E-01 EU = 0.075165Ultimate Stress/Total Strain sut = 1.00076E+00 eut = 0.072474Effective Plastic Failure Strain epfs = 0.851500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.8440E-06, 9.8595E+01, 0.300, 1.2104E+00, 0.072474, 0.0, 0.0# sigy vp epfs0.0 0.0 0.8515==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT 13-V 11-CR 3-AL AGED996 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.8440E-06 Kg/mm^3Young's Modulus. . . . . . . 1.1032E+02 GPaShear Modulus. . . . . . . . 4.2429E+01 GPaBulk Modulus . . . . . . . . 9.1930E+01 GPaPoisson's ratio. . . . . . . 0.3000Yield stress at offset . . . 1.1376E+00 GPaEngineering ultimate stress. 1.2066E+00 GPaElongation at failure. . . . 7.000 %CTE. . . . . . . . . . . . . 9.3600E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.53691E+00 m = 0.065539Yield point sy = 1.13888E+00 ey = 0.010324Ultimate (Engineering) SU = 1.20658E+00 EU = 0.067735Ultimate Stress/Total Strain sut = 1.28822E+00 eut = 0.067659Effective Plastic Failure Strain epfs = 0.076800# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.8440E-06, 1.1032E+02, 0.300, 1.5369E+00, 0.065539, 0.0, 0.0# sigy vp epfs0.0 0.0 0.0768==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT 3-AL 8-V 6-CR 4-MO 4-ZR ANNEALED997 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.8163E-06 Kg/mm^3Young's Modulus. . . . . . . 1.0342E+02 GPaShear Modulus. . . . . . . . 3.8880E+01 GPaBulk Modulus . . . . . . . . 1.0139E+02 GPaPoisson's ratio. . . . . . . 0.3300Yield stress at offset . . . 7.7911E-01 GPaEngineering ultimate stress. 8.2737E-01 GPaElongation at failure. . . . 10.000 %CTE. . . . . . . . . . . . . 8.8200E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.04002E+00 m = 0.059977Yield point sy = 7.75511E-01 ey = 0.007499Ultimate (Engineering) SU = 8.27371E-01 EU = 0.061812Ultimate Stress/Total Strain sut = 8.78513E-01 eut = 0.059977Effective Plastic Failure Strain epfs = 0.237500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.8163E-06, 1.0342E+02, 0.330, 1.0400E+00, 0.059977, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2375==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT 3-AL 8-V 6-CR 4-MO 4-ZR AGED998 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 4.8163E-06 Kg/mm^3Young's Modulus. . . . . . . 1.0342E+02 GPaShear Modulus. . . . . . . . 3.8880E+01 GPaBulk Modulus . . . . . . . . 1.0139E+02 GPaPoisson's ratio. . . . . . . 0.3300Yield stress at offset . . . 1.1721E+00 GPaEngineering ultimate stress. 1.2411E+00 GPaElongation at failure. . . . 7.000 %CTE. . . . . . . . . . . . . 8.8200E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.58736E+00 m = 0.067071Yield point sy = 1.17562E+00 ey = 0.011367Ultimate (Engineering) SU = 1.24106E+00 EU = 0.069371Ultimate Stress/Total Strain sut = 1.32502E+00 eut = 0.067659Effective Plastic Failure Strain epfs = 0.073000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 4.8163E-06, 1.0342E+02, 0.330, 1.5874E+00, 0.067071, 0.0, 0.0# sigy vp epfs0.0 0.0 0.0730==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT 4.5-SN 6-ZR 11.5-MO BETA III ANNEALED999 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 5.0654E-06 Kg/mm^3Young's Modulus. . . . . . . 8.2737E+01 GPaShear Modulus. . . . . . . . 3.0418E+01 GPaBulk Modulus . . . . . . . . 9.8497E+01 GPaPoisson's ratio. . . . . . . 0.3600Yield stress at offset . . . 6.5500E-01 GPaEngineering ultimate stress. 6.8948E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 7.5600E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.57213E-01 m = 0.056118Yield point sy = 6.53273E-01 ey = 0.007896Ultimate (Engineering) SU = 6.89476E-01 EU = 0.057723Ultimate Stress/Total Strain sut = 7.29274E-01 eut = 0.056118Effective Plastic Failure Strain epfs = 1.424800# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 5.0654E-06, 8.2737E+01, 0.360, 8.5721E-01, 0.056118, 0.0, 0.0# sigy vp epfs0.0 0.0 1.4248==================================================================*MAT_POWER_LAW_PLASTICITYTITANIUM WROUGHT 4.5-SN 6-ZR 11.5-MO BETA III AGED1000 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 5.0654E-06 Kg/mm^3Young's Modulus. . . . . . . 1.0342E+02 GPaShear Modulus. . . . . . . . 3.8880E+01 GPaBulk Modulus . . . . . . . . 1.0139E+02 GPaPoisson's ratio. . . . . . . 0.3300Yield stress at offset . . . 1.1721E+00 GPaEngineering ultimate stress. 1.2411E+00 GPaElongation at failure. . . . 7.000 %CTE. . . . . . . . . . . . . 7.5600E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.58736E+00 m = 0.067071Yield point sy = 1.17562E+00 ey = 0.011367Ultimate (Engineering) SU = 1.24106E+00 EU = 0.069371Ultimate Stress/Total Strain sut = 1.32502E+00 eut = 0.067659Effective Plastic Failure Strain epfs = 0.073000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 5.0654E-06, 1.0342E+02, 0.330, 1.5874E+00, 0.067071, 0.0, 0.0# sigy vp epfs0.0 0.0 0.0730==================================================================*MAT_POWER_LAW_PLASTICITYTUNGSTEN DRAWN 15 MIN.1001 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 1.9293E-05 Kg/mm^3Young's Modulus. . . . . . . 3.4474E+02 GPaShear Modulus. . . . . . . . 1.3466E+02 GPaBulk Modulus . . . . . . . . 2.6117E+02 GPaPoisson's ratio. . . . . . . 0.2800Yield stress at offset . . . 1.9650E+00 GPaEngineering ultimate stress. 1.9719E+00 GPaElongation at failure. . . . 1.000 %CTE. . . . . . . . . . . . . 3.9600E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.20443E+00 m = 0.022032Yield point sy = 1.96728E+00 ey = 0.005707Ultimate (Engineering) SU = 1.97190E+00 EU = 0.022276Ultimate Stress/Total Strain sut = 1.99152E+00 eut = 0.009950Effective Plastic Failure Strain epfs = 0.004800# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 1.9293E-05, 3.4474E+02, 0.280, 2.2044E+00, 0.022032, 0.0, 0.0# sigy vp epfs0.0 0.0 0.0048==================================================================*MAT_POWER_LAW_PLASTICITYTUNGSTEN SINTERED1002 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 1.9293E-05 Kg/mm^3Young's Modulus. . . . . . . 3.4474E+02 GPaShear Modulus. . . . . . . . 1.3466E+02 GPaBulk Modulus . . . . . . . . 2.6117E+02 GPaPoisson's ratio. . . . . . . 0.2800Yield stress at offset . . . 1.2755E-01 GPaEngineering ultimate stress. 1.2824E-01 GPaElongation at failure. . . . 1.000 %CTE. . . . . . . . . . . . . 3.9600E-12 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.35006E-01 m = 0.009001Yield point sy = 1.25721E-01 ey = 0.000365Ultimate (Engineering) SU = 1.28242E-01 EU = 0.009042Ultimate Stress/Total Strain sut = 1.29519E-01 eut = 0.009950Effective Plastic Failure Strain epfs = 0.014600# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 1.9293E-05, 3.4474E+02, 0.280, 1.3501E-01, 0.009001, 0.0, 0.0# sigy vp epfs0.0 0.0 0.0146==================================================================*MAT_POWER_LAW_PLASTICITYTUNGSTEN NICKEL IRON1003 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 1.8269E-05 Kg/mm^3Young's Modulus. . . . . . . 4.2334E+02 GPaShear Modulus. . . . . . . . 1.7639E+02 GPaBulk Modulus . . . . . . . . 2.3519E+02 GPaPoisson's ratio. . . . . . . 0.2000Yield stress at offset . . . 6.7569E-01 GPaEngineering ultimate stress. 8.8253E-01 GPaElongation at failure. . . . 29.000 %Reduction in area. . . . . . 26.000 %CTE. . . . . . . . . . . . . 1.6920E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.25345E+00 m = 0.109124Yield point sy = 6.14298E-01 ey = 0.001451Ultimate (Engineering) SU = 8.82529E-01 EU = 0.115301Ultimate Stress/Total Strain sut = 9.84285E-01 eut = 0.109124Effective Plastic Failure Strain epfs = 0.878900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 1.8269E-05, 4.2334E+02, 0.200, 1.2535E+00, 0.109124, 0.0, 0.0# sigy vp epfs0.0 0.0 0.8789==================================================================*MAT_POWER_LAW_PLASTICITYURANIUM 6NI - BINARY1004 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 1.7494E-05 Kg/mm^3Young's Modulus. . . . . . . 6.2053E+01 GPaShear Modulus. . . . . . . . 2.2983E+01 GPaBulk Modulus . . . . . . . . 6.8948E+01 GPaPoisson's ratio. . . . . . . 0.3500Yield stress at offset . . . 4.2058E-01 GPaEngineering ultimate stress. 8.4806E-01 GPaElongation at failure. . . . 30.000 %Reduction in area. . . . . . 45.000 %CTE. . . . . . . . . . . . . 1.6920E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.60366E+00 m = 0.280527Yield point sy = 3.85549E-01 ey = 0.006213Ultimate (Engineering) SU = 8.48055E-01 EU = 0.323827Ultimate Stress/Total Strain sut = 1.12268E+00 eut = 0.280527Effective Plastic Failure Strain epfs = 0.256500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 1.7494E-05, 6.2053E+01, 0.350, 1.6037E+00, 0.280527, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2565==================================================================*MAT_POWER_LAW_PLASTICITYURANIUM BETA QUENCHED1005 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 1.8869E-05 Kg/mm^3Young's Modulus. . . . . . . 1.7237E+02 GPaShear Modulus. . . . . . . . 6.8948E+01 GPaBulk Modulus . . . . . . . . 1.1491E+02 GPaPoisson's ratio. . . . . . . 0.2500Yield stress at offset . . . 3.4474E-01 GPaEngineering ultimate stress. 7.5842E-01 GPaElongation at failure. . . . 25.000 %CTE. . . . . . . . . . . . . 1.4940E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.37729E+00 m = 0.250042Yield point sy = 2.75248E-01 ey = 0.001597Ultimate (Engineering) SU = 7.58423E-01 EU = 0.284080Ultimate Stress/Total Strain sut = 9.73876E-01 eut = 0.250042Effective Plastic Failure Strain epfs = 0.227500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 1.8869E-05, 1.7237E+02, 0.250, 1.3773E+00, 0.250042, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2275==================================================================*MAT_POWER_LAW_PLASTICITYURANIUM D-381006 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 1.8961E-05 Kg/mm^3Young's Modulus. . . . . . . 1.7926E+02 GPaShear Modulus. . . . . . . . 7.1705E+01 GPaBulk Modulus . . . . . . . . 1.1951E+02 GPaPoisson's ratio. . . . . . . 0.2500Yield stress at offset . . . 1.7237E-01 GPaEngineering ultimate stress. 3.7921E-01 GPaElongation at failure. . . . 20.000 %CTE. . . . . . . . . . . . . 1.4940E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 6.72401E-01 m = 0.233237Yield point sy = 1.22948E-01 ey = 0.000686Ultimate (Engineering) SU = 3.79212E-01 EU = 0.262680Ultimate Stress/Total Strain sut = 4.78823E-01 eut = 0.233237Effective Plastic Failure Strain epfs = 0.185500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 1.8961E-05, 1.7926E+02, 0.250, 6.7240E-01, 0.233237, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1855==================================================================*MAT_POWER_LAW_PLASTICITYURANIUM 0.75 TI1007 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 1.8529E-05 Kg/mm^3Young's Modulus. . . . . . . 1.5306E+02 GPaShear Modulus. . . . . . . . 6.1225E+01 GPaBulk Modulus . . . . . . . . 1.0204E+02 GPaPoisson's ratio. . . . . . . 0.2500Yield stress at offset . . . 9.9560E-01 GPaEngineering ultimate stress. 1.2755E+00 GPaElongation at failure. . . . 20.000 %CTE. . . . . . . . . . . . . 1.4940E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.91373E+00 m = 0.135179Yield point sy = 9.64777E-01 ey = 0.006303Ultimate (Engineering) SU = 1.27553E+00 EU = 0.144742Ultimate Stress/Total Strain sut = 1.46015E+00 eut = 0.135179Effective Plastic Failure Strain epfs = 0.392800# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 1.8529E-05, 1.5306E+02, 0.250, 1.9137E+00, 0.135179, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3928==================================================================*MAT_POWER_LAW_PLASTICITYVANADIUM PURE ANNEALED1008 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 6.0896E-06 Kg/mm^3Young's Modulus. . . . . . . 1.2824E+02 GPaShear Modulus. . . . . . . . 4.9324E+01 GPaBulk Modulus . . . . . . . . 1.0687E+02 GPaPoisson's ratio. . . . . . . 0.3000Yield stress at offset . . . 1.2411E-01 GPaEngineering ultimate stress. 1.7513E-01 GPaElongation at failure. . . . 26.000 %CTE. . . . . . . . . . . . . 1.6740E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.57160E-01 m = 0.124643Yield point sy = 1.06183E-01 ey = 0.000828Ultimate (Engineering) SU = 1.75127E-01 EU = 0.132744Ultimate Stress/Total Strain sut = 1.98374E-01 eut = 0.124643Effective Plastic Failure Strain epfs = 0.781700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 6.0896E-06, 1.2824E+02, 0.300, 2.5716E-01, 0.124643, 0.0, 0.0# sigy vp epfs0.0 0.0 0.7817==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4340 1 IN. BAR ANNEALED1009 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 4.7574E-01 GPaEngineering ultimate stress. 7.4463E-01 GPaElongation at failure. . . . 22.000 %Reduction in area. . . . . . 50.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.18609E+00 m = 0.166798Yield point sy = 4.22077E-01 ey = 0.002041Ultimate (Engineering) SU = 7.44634E-01 EU = 0.181515Ultimate Stress/Total Strain sut = 8.79796E-01 eut = 0.166798Effective Plastic Failure Strain epfs = 0.303600# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.1861E+00, 0.166798, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3036==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4340 CASE 11010 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 6.2053E-01 GPaEngineering ultimate stress. 8.1220E-01 GPaElongation at failure. . . . 21.400 %Reduction in area. . . . . . 54.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.18306E+00 m = 0.120793Yield point sy = 5.81962E-01 ey = 0.002814Ultimate (Engineering) SU = 8.12202E-01 EU = 0.128391Ultimate Stress/Total Strain sut = 9.16482E-01 eut = 0.120793Effective Plastic Failure Strain epfs = 0.572200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.1831E+00, 0.120793, 0.0, 0.0# sigy vp epfs0.0 0.0 0.5722==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4340 CASE 21011 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 8.8253E-01 GPaEngineering ultimate stress. 9.8733E-01 GPaElongation at failure. . . . 18.400 %Reduction in area. . . . . . 56.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.28503E+00 m = 0.072799Yield point sy = 8.62291E-01 ey = 0.004169Ultimate (Engineering) SU = 9.87329E-01 EU = 0.075514Ultimate Stress/Total Strain sut = 1.06189E+00 eut = 0.072799Effective Plastic Failure Strain epfs = 0.812800# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.2850E+00, 0.072799, 0.0, 0.0# sigy vp epfs0.0 0.0 0.8128==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4340 1 IN. BAR OQ+1200F1012 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 9.1700E-01 GPaEngineering ultimate stress. 1.0135E+00 GPaElongation at failure. . . . 18.000 %Reduction in area. . . . . . 57.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.30408E+00 m = 0.068468Yield point sy = 8.98623E-01 ey = 0.004344Ultimate (Engineering) SU = 1.01353E+00 EU = 0.070867Ultimate Stress/Total Strain sut = 1.08535E+00 eut = 0.068468Effective Plastic Failure Strain epfs = 0.825100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.3041E+00, 0.068468, 0.0, 0.0# sigy vp epfs0.0 0.0 0.8251==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4340 CASE 31013 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 9.3079E-01 GPaEngineering ultimate stress. 1.0280E+00 GPaElongation at failure. . . . 17.700 %Reduction in area. . . . . . 54.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.32255E+00 m = 0.068424Yield point sy = 9.12529E-01 ey = 0.004412Ultimate (Engineering) SU = 1.02801E+00 EU = 0.070820Ultimate Stress/Total Strain sut = 1.10081E+00 eut = 0.068424Effective Plastic Failure Strain epfs = 0.793600# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.3226E+00, 0.068424, 0.0, 0.0# sigy vp epfs0.0 0.0 0.7936==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4340 CASE 41014 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.0342E+00 GPaEngineering ultimate stress. 1.1252E+00 GPaElongation at failure. . . . 16.800 %Reduction in area. . . . . . 53.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.42947E+00 m = 0.063780Yield point sy = 1.01858E+00 ey = 0.004924Ultimate (Engineering) SU = 1.12522E+00 EU = 0.065857Ultimate Stress/Total Strain sut = 1.19933E+00 eut = 0.063780Effective Plastic Failure Strain epfs = 0.760000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.4295E+00, 0.063780, 0.0, 0.0# sigy vp epfs0.0 0.0 0.7600==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 43401015 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8611E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0477E+02 GPaShear Modulus. . . . . . . . 7.9370E+01 GPaBulk Modulus . . . . . . . . 1.6252E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.0963E+00 GPaEngineering ultimate stress. 1.1376E+00 GPaElongation at failure. . . . 16.500 %Reduction in area. . . . . . 54.100 %CTE. . . . . . . . . . . . . 1.2294E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.35137E+00 m = 0.041064Yield point sy = 1.08993E+00 ey = 0.005323Ultimate (Engineering) SU = 1.13764E+00 EU = 0.041919Ultimate Stress/Total Strain sut = 1.18532E+00 eut = 0.041064Effective Plastic Failure Strain epfs = 0.967300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8611E-06, 2.0477E+02, 0.290, 1.3514E+00, 0.041064, 0.0, 0.0# sigy vp epfs0.0 0.0 0.9673==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4340 1 IN. BAR OQ+1200F1016 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.1721E+00 GPaEngineering ultimate stress. 1.2617E+00 GPaElongation at failure. . . . 14.000 %Reduction in area. . . . . . 52.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.59124E+00 m = 0.061146Yield point sy = 1.15893E+00 ey = 0.005603Ultimate (Engineering) SU = 1.26174E+00 EU = 0.063054Ultimate Stress/Total Strain sut = 1.34130E+00 eut = 0.061146Effective Plastic Failure Strain epfs = 0.518200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.5912E+00, 0.061146, 0.0, 0.0# sigy vp epfs0.0 0.0 0.5182==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4340 CASE 51017 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.2755E+00 GPaEngineering ultimate stress. 1.3996E+00 GPaElongation at failure. . . . 12.900 %Reduction in area. . . . . . 48.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.81720E+00 m = 0.071866Yield point sy = 1.25947E+00 ey = 0.006089Ultimate (Engineering) SU = 1.39964E+00 EU = 0.074511Ultimate Stress/Total Strain sut = 1.50392E+00 eut = 0.071866Effective Plastic Failure Strain epfs = 0.347100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.8172E+00, 0.071866, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3471==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL 4340 AISI OQ 1000癋 0.5 ROUND1018 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8611E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0477E+02 GPaShear Modulus. . . . . . . . 7.9370E+01 GPaBulk Modulus . . . . . . . . 1.6252E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.1652E+00 GPaEngineering ultimate stress. 1.2548E+00 GPaElongation at failure. . . . 13.700 %Reduction in area. . . . . . 45.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.58378E+00 m = 0.061427Yield point sy = 1.15212E+00 ey = 0.005626Ultimate (Engineering) SU = 1.25485E+00 EU = 0.063353Ultimate Stress/Total Strain sut = 1.33434E+00 eut = 0.061427Effective Plastic Failure Strain epfs = 0.489800# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8611E-06, 2.0477E+02, 0.290, 1.5838E+00, 0.061427, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4898==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL 4340 AISI OQ 1000癋 1.0 IN. ROUND1019 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8611E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0477E+02 GPaShear Modulus. . . . . . . . 7.9370E+01 GPaBulk Modulus . . . . . . . . 1.6252E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.1445E+00 GPaEngineering ultimate stress. 1.2066E+00 GPaElongation at failure. . . . 14.200 %Reduction in area. . . . . . 45.900 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.47523E+00 m = 0.050414Yield point sy = 1.13532E+00 ey = 0.005544Ultimate (Engineering) SU = 1.20658E+00 EU = 0.051706Ultimate Stress/Total Strain sut = 1.26897E+00 eut = 0.050414Effective Plastic Failure Strain epfs = 0.645700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8611E-06, 2.0477E+02, 0.290, 1.4752E+00, 0.050414, 0.0, 0.0# sigy vp epfs0.0 0.0 0.6457==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL 4340 AISI OQ 1000癋 2 IN. ROUND1020 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8611E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0477E+02 GPaShear Modulus. . . . . . . . 7.9370E+01 GPaBulk Modulus . . . . . . . . 1.6252E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.1032E+00 GPaEngineering ultimate stress. 1.1721E+00 GPaElongation at failure. . . . 16.000 %Reduction in area. . . . . . 54.800 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.44759E+00 m = 0.053823Yield point sy = 1.09222E+00 ey = 0.005334Ultimate (Engineering) SU = 1.17211E+00 EU = 0.055298Ultimate Stress/Total Strain sut = 1.23692E+00 eut = 0.053823Effective Plastic Failure Strain epfs = 0.801200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8611E-06, 2.0477E+02, 0.290, 1.4476E+00, 0.053823, 0.0, 0.0# sigy vp epfs0.0 0.0 0.8012==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL 4340 AISI OQ 1000癋 4 IN. ROUND1021 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8611E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0477E+02 GPaShear Modulus. . . . . . . . 7.9370E+01 GPaBulk Modulus . . . . . . . . 1.6252E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 9.9974E-01 GPaEngineering ultimate stress. 1.1376E+00 GPaElongation at failure. . . . 15.500 %Reduction in area. . . . . . 53.400 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.51730E+00 m = 0.082360Yield point sy = 9.76975E-01 ey = 0.004771Ultimate (Engineering) SU = 1.13764E+00 EU = 0.085846Ultimate Stress/Total Strain sut = 1.23530E+00 eut = 0.082360Effective Plastic Failure Strain epfs = 0.452400# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8611E-06, 2.0477E+02, 0.290, 1.5173E+00, 0.082360, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4524==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL 4340 AISI OQ 1100癋 0.5 IN. ROUND1022 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8611E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0477E+02 GPaShear Modulus. . . . . . . . 7.9370E+01 GPaBulk Modulus . . . . . . . . 1.6252E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.1170E+00 GPaEngineering ultimate stress. 1.1445E+00 GPaElongation at failure. . . . 17.100 %Reduction in area. . . . . . 57.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.32613E+00 m = 0.033499Yield point sy = 1.11359E+00 ey = 0.005438Ultimate (Engineering) SU = 1.14453E+00 EU = 0.034067Ultimate Stress/Total Strain sut = 1.18352E+00 eut = 0.033499Effective Plastic Failure Strain epfs = 1.118100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8611E-06, 2.0477E+02, 0.290, 1.3261E+00, 0.033499, 0.0, 0.0# sigy vp epfs0.0 0.0 1.1181==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL 4340 AISI OQ 1100癋 1.0 IN. ROUND1023 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8611E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0477E+02 GPaShear Modulus. . . . . . . . 7.9370E+01 GPaBulk Modulus . . . . . . . . 1.6252E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.0963E+00 GPaEngineering ultimate stress. 1.1376E+00 GPaElongation at failure. . . . 16.500 %Reduction in area. . . . . . 54.100 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.35137E+00 m = 0.041064Yield point sy = 1.08993E+00 ey = 0.005323Ultimate (Engineering) SU = 1.13764E+00 EU = 0.041919Ultimate Stress/Total Strain sut = 1.18532E+00 eut = 0.041064Effective Plastic Failure Strain epfs = 0.967300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8611E-06, 2.0477E+02, 0.290, 1.3514E+00, 0.041064, 0.0, 0.0# sigy vp epfs0.0 0.0 0.9673==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL 4340 AISI OQ 1100癋 2 IN. ROUND1024 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8611E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0477E+02 GPaShear Modulus. . . . . . . . 7.9370E+01 GPaBulk Modulus . . . . . . . . 1.6252E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 9.5837E-01 GPaEngineering ultimate stress. 1.0135E+00 GPaElongation at failure. . . . 19.000 %Reduction in area. . . . . . 60.400 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.23487E+00 m = 0.049248Yield point sy = 9.47645E-01 ey = 0.004628Ultimate (Engineering) SU = 1.01353E+00 EU = 0.050481Ultimate Stress/Total Strain sut = 1.06469E+00 eut = 0.049248Effective Plastic Failure Strain epfs = 1.146700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8611E-06, 2.0477E+02, 0.290, 1.2349E+00, 0.049248, 0.0, 0.0# sigy vp epfs0.0 0.0 1.1467==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL 4340 AISI OQ 1100癋 4 IN. ROUND1025 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8611E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0477E+02 GPaShear Modulus. . . . . . . . 7.9370E+01 GPaBulk Modulus . . . . . . . . 1.6252E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 7.8600E-01 GPaEngineering ultimate stress. 9.2390E-01 GPaElongation at failure. . . . 19.700 %Reduction in area. . . . . . 60.700 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.25484E+00 m = 0.089772Yield point sy = 7.59210E-01 ey = 0.003708Ultimate (Engineering) SU = 9.23898E-01 EU = 0.093925Ultimate Stress/Total Strain sut = 1.01067E+00 eut = 0.089772Effective Plastic Failure Strain epfs = 0.743000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8611E-06, 2.0477E+02, 0.290, 1.2548E+00, 0.089772, 0.0, 0.0# sigy vp epfs0.0 0.0 0.7430==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL 4340 AISI OQ 1200癋 0.5 IN. ROUND1026 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8611E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0477E+02 GPaShear Modulus. . . . . . . . 7.9370E+01 GPaBulk Modulus . . . . . . . . 1.6252E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 9.3769E-01 GPaEngineering ultimate stress. 9.9974E-01 GPaElongation at failure. . . . 20.000 %Reduction in area. . . . . . 59.300 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.23134E+00 m = 0.052889Yield point sy = 9.25456E-01 ey = 0.004519Ultimate (Engineering) SU = 9.99740E-01 EU = 0.054313Ultimate Stress/Total Strain sut = 1.05404E+00 eut = 0.052889Effective Plastic Failure Strain epfs = 1.178700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8611E-06, 2.0477E+02, 0.290, 1.2313E+00, 0.052889, 0.0, 0.0# sigy vp epfs0.0 0.0 1.1787==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL 4340 AISI OQ 1200癋 1.0 IN. ROUND1027 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8611E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0477E+02 GPaShear Modulus. . . . . . . . 7.9370E+01 GPaBulk Modulus . . . . . . . . 1.6252E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 8.8253E-01 GPaEngineering ultimate stress. 9.5837E-01 GPaElongation at failure. . . . 20.000 %Reduction in area. . . . . . 59.700 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.20601E+00 m = 0.060368Yield point sy = 8.67136E-01 ey = 0.004235Ultimate (Engineering) SU = 9.58371E-01 EU = 0.062227Ultimate Stress/Total Strain sut = 1.01801E+00 eut = 0.060368Effective Plastic Failure Strain epfs = 1.113000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8611E-06, 2.0477E+02, 0.290, 1.2060E+00, 0.060368, 0.0, 0.0# sigy vp epfs0.0 0.0 1.1130==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL 4340 AISI OQ 1200癋 2 IN. ROUND1028 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8611E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0477E+02 GPaShear Modulus. . . . . . . . 7.9370E+01 GPaBulk Modulus . . . . . . . . 1.6252E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 8.3427E-01 GPaEngineering ultimate stress. 9.3079E-01 GPaElongation at failure. . . . 20.500 %Reduction in area. . . . . . 62.500 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.20527E+00 m = 0.070857Yield point sy = 8.14719E-01 ey = 0.003979Ultimate (Engineering) SU = 9.30792E-01 EU = 0.073428Ultimate Stress/Total Strain sut = 9.99139E-01 eut = 0.070857Effective Plastic Failure Strain epfs = 1.061300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8611E-06, 2.0477E+02, 0.290, 1.2053E+00, 0.070857, 0.0, 0.0# sigy vp epfs0.0 0.0 1.0613==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL 4340 AISI OQ 1200癋 4 IN. ROUND1029 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8611E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0477E+02 GPaShear Modulus. . . . . . . . 7.9370E+01 GPaBulk Modulus . . . . . . . . 1.6252E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 7.3084E-01 GPaEngineering ultimate stress. 8.5495E-01 GPaElongation at failure. . . . 21.700 %Reduction in area. . . . . . 63.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.15230E+00 m = 0.086604Yield point sy = 7.05113E-01 ey = 0.003443Ultimate (Engineering) SU = 8.54950E-01 EU = 0.090465Ultimate Stress/Total Strain sut = 9.32293E-01 eut = 0.086604Effective Plastic Failure Strain epfs = 1.003000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8611E-06, 2.0477E+02, 0.290, 1.1523E+00, 0.086604, 0.0, 0.0# sigy vp epfs0.0 0.0 1.0030==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4340 1 IN. BAR OQ+800F1030 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.3790E+00 GPaEngineering ultimate stress. 1.5306E+00 GPaElongation at failure. . . . 12.000 %Reduction in area. . . . . . 47.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.02381E+00 m = 0.078911Yield point sy = 1.36150E+00 ey = 0.006582Ultimate (Engineering) SU = 1.53064E+00 EU = 0.082108Ultimate Stress/Total Strain sut = 1.65631E+00 eut = 0.078911Effective Plastic Failure Strain epfs = 0.247700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 2.0238E+00, 0.078911, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2477==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4340 1 IN. BAR OQ+400F1031 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.6410E+00 GPaEngineering ultimate stress. 1.9512E+00 GPaElongation at failure. . . . 11.000 %Reduction in area. . . . . . 48.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.79744E+00 m = 0.113400Yield point sy = 1.61333E+00 ey = 0.007800Ultimate (Engineering) SU = 1.95122E+00 EU = 0.120079Ultimate Stress/Total Strain sut = 2.18552E+00 eut = 0.113400Effective Plastic Failure Strain epfs = 0.104900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 2.7974E+00, 0.113400, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1049==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4140 1 IN. BAR ANNEALED1032 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9995E+02 GPaShear Modulus. . . . . . . . 7.7499E+01 GPaBulk Modulus . . . . . . . . 1.5869E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 4.2058E-01 GPaEngineering ultimate stress. 6.5500E-01 GPaElongation at failure. . . . 26.000 %Reduction in area. . . . . . 57.000 %CTE. . . . . . . . . . . . . 1.1160E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.03693E+00 m = 0.163386Yield point sy = 3.71083E-01 ey = 0.001856Ultimate (Engineering) SU = 6.55002E-01 EU = 0.177491Ultimate Stress/Total Strain sut = 7.71259E-01 eut = 0.163386Effective Plastic Failure Strain epfs = 0.546900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9995E+02, 0.290, 1.0369E+00, 0.163386, 0.0, 0.0# sigy vp epfs0.0 0.0 0.5469==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4140 1 IN. BAR NORM1033 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9995E+02 GPaShear Modulus. . . . . . . . 7.7499E+01 GPaBulk Modulus . . . . . . . . 1.5869E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 6.5500E-01 GPaEngineering ultimate stress. 1.0204E+00 GPaElongation at failure. . . . 18.000 %Reduction in area. . . . . . 47.000 %CTE. . . . . . . . . . . . . 1.1160E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.64897E+00 m = 0.174950Yield point sy = 5.96167E-01 ey = 0.002982Ultimate (Engineering) SU = 1.02042E+00 EU = 0.191187Ultimate Stress/Total Strain sut = 1.21552E+00 eut = 0.174950Effective Plastic Failure Strain epfs = 0.174200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9995E+02, 0.290, 1.6490E+00, 0.174950, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1742==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4140 1 IN. BAR OQ+1200F1034 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 6.5500E-01 GPaEngineering ultimate stress. 7.5842E-01 GPaElongation at failure. . . . 18.000 %Reduction in area. . . . . . 53.000 %CTE. . . . . . . . . . . . . 1.1160E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.00746E+00 m = 0.080750Yield point sy = 6.31102E-01 ey = 0.003051Ultimate (Engineering) SU = 7.58423E-01 EU = 0.084100Ultimate Stress/Total Strain sut = 8.22207E-01 eut = 0.080750Effective Plastic Failure Strain epfs = 0.652900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0075E+00, 0.080750, 0.0, 0.0# sigy vp epfs0.0 0.0 0.6529==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4140 1 IN. BAR OQ+1000F1035 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 9.8595E-01 GPaEngineering ultimate stress. 1.1376E+00 GPaElongation at failure. . . . 15.000 %Reduction in area. . . . . . 50.000 %CTE. . . . . . . . . . . . . 1.1160E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.53607E+00 m = 0.087342Yield point sy = 9.60821E-01 ey = 0.004645Ultimate (Engineering) SU = 1.13764E+00 EU = 0.091269Ultimate Stress/Total Strain sut = 1.24147E+00 eut = 0.087342Effective Plastic Failure Strain epfs = 0.377300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.5361E+00, 0.087342, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3773==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 4140 1 IN. BAR OQ+400F1036 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.6410E+00 GPaEngineering ultimate stress. 1.7720E+00 GPaElongation at failure. . . . 8.000 %Reduction in area. . . . . . 38.000 %CTE. . . . . . . . . . . . . 1.1160E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.28893E+00 m = 0.069945Yield point sy = 1.63129E+00 ey = 0.007887Ultimate (Engineering) SU = 1.77195E+00 EU = 0.072449Ultimate Stress/Total Strain sut = 1.90033E+00 eut = 0.069945Effective Plastic Failure Strain epfs = 0.099700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 2.2889E+00, 0.069945, 0.0, 0.0# sigy vp epfs0.0 0.0 0.0997==================================================================*MAT_POWER_LAW_PLASTICITYGRADE 8 BOLT MATERIAL1037 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0684E+02 GPaShear Modulus. . . . . . . . 8.0172E+01 GPaBulk Modulus . . . . . . . . 1.6416E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 8.9632E-01 GPaEngineering ultimate stress. 1.0342E+00 GPaElongation at failure. . . . 18.000 %Reduction in area. . . . . . 43.500 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.38947E+00 m = 0.085303Yield point sy = 8.71401E-01 ey = 0.004213Ultimate (Engineering) SU = 1.03421E+00 EU = 0.089047Ultimate Stress/Total Strain sut = 1.12631E+00 eut = 0.085303Effective Plastic Failure Strain epfs = 0.632900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.3895E+00, 0.085303, 0.0, 0.0# sigy vp epfs0.0 0.0 0.6329==================================================================*MAT_POWER_LAW_PLASTICITYHIGH CARBON SPRING STEEL 1080 ASTM 6841038 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8611E-06 Kg/mm^3Young's Modulus. . . . . . . 2.0477E+02 GPaShear Modulus. . . . . . . . 7.9370E+01 GPaBulk Modulus . . . . . . . . 1.6252E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 8.6874E-01 GPaEngineering ultimate stress. 1.2686E+00 GPaElongation at failure. . . . 12.100 %Reduction in area. . . . . . 34.400 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.01048E+00 m = 0.163965Yield point sy = 8.11876E-01 ey = 0.003965Ultimate (Engineering) SU = 1.26864E+00 EU = 0.178173Ultimate Stress/Total Strain sut = 1.49467E+00 eut = 0.163965Effective Plastic Failure Strain epfs = 0.111000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8611E-06, 2.0477E+02, 0.290, 2.0105E+00, 0.163965, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1110==================================================================*MAT_POWER_LAW_PLASTICITYCARTRIDGE BRASS CU 70 ZN 30 DEAD SOFT1039 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 8.5254E-06 Kg/mm^3Young's Modulus. . . . . . . 1.1032E+02 GPaShear Modulus. . . . . . . . 4.1472E+01 GPaBulk Modulus . . . . . . . . 1.0815E+02 GPaPoisson's ratio. . . . . . . 0.3300Yield stress at offset . . . 7.5842E-02 GPaEngineering ultimate stress. 3.0337E-01 GPaElongation at failure. . . . 68.000 %CTE. . . . . . . . . . . . . 1.9980E-11 1/CYield offset . . . . . . . . 0.5000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 6.63683E-01 m = 0.418280Yield point sy = 1.67960E-02 ey = 0.000152Ultimate (Engineering) SU = 3.03369E-01 EU = 0.519346Ultimate Stress/Total Strain sut = 4.60923E-01 eut = 0.418280Effective Plastic Failure Strain epfs = 1.018200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 8.5254E-06, 1.1032E+02, 0.330, 6.6368E-01, 0.418280, 0.0, 0.0# sigy vp epfs0.0 0.0 1.0182==================================================================*MAT_POWER_LAW_PLASTICITYCARTRIDGE BRASS CU 70 ZN 30 ANNEALED1040 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 8.5254E-06 Kg/mm^3Young's Modulus. . . . . . . 1.1032E+02 GPaShear Modulus. . . . . . . . 4.1472E+01 GPaBulk Modulus . . . . . . . . 1.0815E+02 GPaPoisson's ratio. . . . . . . 0.3300Yield stress at offset . . . 1.3100E-01 GPaEngineering ultimate stress. 3.5163E-01 GPaElongation at failure. . . . 55.000 %CTE. . . . . . . . . . . . . 1.9980E-11 1/CYield offset . . . . . . . . 0.5000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.04769E-01 m = 0.329481Yield point sy = 5.88388E-02 ey = 0.000533Ultimate (Engineering) SU = 3.51633E-01 EU = 0.390246Ultimate Stress/Total Strain sut = 4.88856E-01 eut = 0.329481Effective Plastic Failure Strain epfs = 1.085100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 8.5254E-06, 1.1032E+02, 0.330, 7.0477E-01, 0.329481, 0.0, 0.0# sigy vp epfs0.0 0.0 1.0851==================================================================*MAT_POWER_LAW_PLASTICITYCARTRIDGE BRASS CU 70 ZN 30 1/4 HARD1041 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 8.5254E-06 Kg/mm^3Young's Modulus. . . . . . . 1.1032E+02 GPaShear Modulus. . . . . . . . 4.1472E+01 GPaBulk Modulus . . . . . . . . 1.0815E+02 GPaPoisson's ratio. . . . . . . 0.3300Yield stress at offset . . . 2.7579E-01 GPaEngineering ultimate stress. 3.7232E-01 GPaElongation at failure. . . . 43.000 %CTE. . . . . . . . . . . . . 1.9980E-11 1/CYield offset . . . . . . . . 0.5000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 5.72305E-01 m = 0.147564Yield point sy = 2.30183E-01 ey = 0.002087Ultimate (Engineering) SU = 3.72317E-01 EU = 0.159007Ultimate Stress/Total Strain sut = 4.31518E-01 eut = 0.147564Effective Plastic Failure Strain epfs = 1.707700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 8.5254E-06, 1.1032E+02, 0.330, 5.7230E-01, 0.147564, 0.0, 0.0# sigy vp epfs0.0 0.0 1.7077==================================================================*MAT_POWER_LAW_PLASTICITYCARTRIDGE BRASS CU 70 ZN 30 1/2 HARD1042 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 8.5254E-06 Kg/mm^3Young's Modulus. . . . . . . 1.1032E+02 GPaShear Modulus. . . . . . . . 4.1472E+01 GPaBulk Modulus . . . . . . . . 1.0815E+02 GPaPoisson's ratio. . . . . . . 0.3300Yield stress at offset . . . 3.5853E-01 GPaEngineering ultimate stress. 4.2748E-01 GPaElongation at failure. . . . 24.000 %CTE. . . . . . . . . . . . . 1.9980E-11 1/CYield offset . . . . . . . . 0.5000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 6.04295E-01 m = 0.107014Yield point sy = 3.23779E-01 ey = 0.002935Ultimate (Engineering) SU = 4.27475E-01 EU = 0.112949Ultimate Stress/Total Strain sut = 4.75758E-01 eut = 0.107014Effective Plastic Failure Strain epfs = 0.987000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 8.5254E-06, 1.1032E+02, 0.330, 6.0430E-01, 0.107014, 0.0, 0.0# sigy vp epfs0.0 0.0 0.9870==================================================================*MAT_POWER_LAW_PLASTICITYCARTRIDGE BRASS CU 70 ZN 30 FULL HARD1043 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 8.5254E-06 Kg/mm^3Young's Modulus. . . . . . . 1.1032E+02 GPaShear Modulus. . . . . . . . 4.1472E+01 GPaBulk Modulus . . . . . . . . 1.0815E+02 GPaPoisson's ratio. . . . . . . 0.3300Yield stress at offset . . . 4.3437E-01 GPaEngineering ultimate stress. 5.2400E-01 GPaElongation at failure. . . . 8.000 %CTE. . . . . . . . . . . . . 1.9980E-11 1/CYield offset . . . . . . . . 0.5000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.62174E-01 m = 0.117193Yield point sy = 3.93763E-01 ey = 0.003569Ultimate (Engineering) SU = 5.24002E-01 EU = 0.124337Ultimate Stress/Total Strain sut = 5.64329E-01 eut = 0.076961Effective Plastic Failure Strain epfs = 0.074900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 8.5254E-06, 1.1032E+02, 0.330, 7.6217E-01, 0.117193, 0.0, 0.0# sigy vp epfs0.0 0.0 0.0749==================================================================*MAT_POWER_LAW_PLASTICITYCARTRIDGE BRASS CU 70 ZN 30 EXTRA HARD1044 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 8.5254E-06 Kg/mm^3Young's Modulus. . . . . . . 1.1032E+02 GPaShear Modulus. . . . . . . . 4.1472E+01 GPaBulk Modulus . . . . . . . . 1.0815E+02 GPaPoisson's ratio. . . . . . . 0.3300Yield stress at offset . . . 4.4816E-01 GPaEngineering ultimate stress. 5.9295E-01 GPaElongation at failure. . . . 5.000 %CTE. . . . . . . . . . . . . 1.9980E-11 1/CYield offset . . . . . . . . 0.5000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.09969E+00 m = 0.188741Yield point sy = 3.76400E-01 ey = 0.003412Ultimate (Engineering) SU = 5.92949E-01 EU = 0.207728Ultimate Stress/Total Strain sut = 6.21879E-01 eut = 0.048790Effective Plastic Failure Strain epfs = 0.043800# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 8.5254E-06, 1.1032E+02, 0.330, 1.0997E+00, 0.188741, 0.0, 0.0# sigy vp epfs0.0 0.0 0.0438==================================================================
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