*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A633 PHOENIX GR. C PLATE TO 2.5 IN.688 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 5.5158E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.76973E-01 m = 0.165772Yield point sy = 2.96148E-01 ey = 0.001432Ultimate (Engineering) SU = 5.51581E-01 EU = 0.180304Ultimate Stress/Total Strain sut = 6.51033E-01 eut = 0.165772Effective Plastic Failure Strain epfs = 0.342900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 8.7697E-01, 0.165772, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3429==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A633 PHOENIX GR. C PLATE 2.5-4 IN.689 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 . . . 3.1716E-01 GPaEngineering ultimate stress. 5.1711E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.27067E-01 m = 0.169100Yield point sy = 2.68839E-01 ey = 0.001300Ultimate (Engineering) SU = 5.17107E-01 EU = 0.184239Ultimate Stress/Total Strain sut = 6.12378E-01 eut = 0.169100Effective Plastic Failure Strain epfs = 0.324900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 8.2707E-01, 0.169100, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3249==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A633 PHOENIX GR. D PLATE TO 2.5 IN.690 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 5.5158E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.76973E-01 m = 0.165772Yield point sy = 2.96148E-01 ey = 0.001432Ultimate (Engineering) SU = 5.51581E-01 EU = 0.180304Ultimate Stress/Total Strain sut = 6.51033E-01 eut = 0.165772Effective Plastic Failure Strain epfs = 0.342900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 8.7697E-01, 0.165772, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3429==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A633 PHOENIX GR. D PLATE 2.5-4 IN.691 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 . . . 3.1716E-01 GPaEngineering ultimate stress. 5.1711E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.27067E-01 m = 0.169100Yield point sy = 2.68839E-01 ey = 0.001300Ultimate (Engineering) SU = 5.17107E-01 EU = 0.184239Ultimate Stress/Total Strain sut = 6.12378E-01 eut = 0.169100Effective Plastic Failure Strain epfs = 0.324900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 8.2707E-01, 0.169100, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3249==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A633 PHOENIX GR. E PLATE TO 4 IN.692 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 . . . 4.1369E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.62037E-01 m = 0.152070Yield point sy = 3.67183E-01 ey = 0.001775Ultimate (Engineering) SU = 6.20528E-01 EU = 0.164242Ultimate Stress/Total Strain sut = 7.22445E-01 eut = 0.152070Effective Plastic Failure Strain epfs = 0.427300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.6204E-01, 0.152070, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4273==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A633 PHOENIX GR. E PLATE 4-6 IN.693 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 . . . 3.7921E-01 GPaEngineering ultimate stress. 5.8605E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.19422E-01 m = 0.158432Yield point sy = 3.31670E-01 ey = 0.001603Ultimate (Engineering) SU = 5.86054E-01 EU = 0.171673Ultimate Stress/Total Strain sut = 6.86664E-01 eut = 0.158432Effective Plastic Failure Strain epfs = 0.385200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.1942E-01, 0.158432, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3852==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A633 USS GR. A PLATE BAR TO 4 IN.694 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 . . . 2.8958E-01 GPaEngineering ultimate stress. 5.0332E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.25634E-01 m = 0.183677Yield point sy = 2.38251E-01 ey = 0.001152Ultimate (Engineering) SU = 5.03317E-01 EU = 0.201627Ultimate Stress/Total Strain sut = 6.04800E-01 eut = 0.183677Effective Plastic Failure Strain epfs = 0.269400# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 8.2563E-01, 0.183677, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2694==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A633 USS GR. A PLATE BAR 4-8 IN.695 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 . . . 2.6200E-01 GPaEngineering ultimate stress. 4.8263E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.08353E-01 m = 0.196204Yield point sy = 2.08836E-01 ey = 0.001010Ultimate (Engineering) SU = 4.82633E-01 EU = 0.216775Ultimate Stress/Total Strain sut = 5.87256E-01 eut = 0.196204Effective Plastic Failure Strain epfs = 0.239500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 8.0835E-01, 0.196204, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2395==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A633 USS GR. C PLATE BAR TO 2.5 IN.696 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 5.5158E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.76973E-01 m = 0.165772Yield point sy = 2.96148E-01 ey = 0.001432Ultimate (Engineering) SU = 5.51581E-01 EU = 0.180304Ultimate Stress/Total Strain sut = 6.51033E-01 eut = 0.165772Effective Plastic Failure Strain epfs = 0.342900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 8.7697E-01, 0.165772, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3429==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A633 USS GR. C PLATE BAR 2.5-4 IN.697 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 . . . 3.1716E-01 GPaEngineering ultimate stress. 5.1711E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.27067E-01 m = 0.169100Yield point sy = 2.68839E-01 ey = 0.001300Ultimate (Engineering) SU = 5.17107E-01 EU = 0.184239Ultimate Stress/Total Strain sut = 6.12378E-01 eut = 0.169100Effective Plastic Failure Strain epfs = 0.324900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 8.2707E-01, 0.169100, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3249==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A633 USS GR. C PLATE BAR 4-8 IN.698 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 . . . 2.8958E-01 GPaEngineering ultimate stress. 5.0332E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.25634E-01 m = 0.183677Yield point sy = 2.38251E-01 ey = 0.001152Ultimate (Engineering) SU = 5.03317E-01 EU = 0.201627Ultimate Stress/Total Strain sut = 6.04800E-01 eut = 0.183677Effective Plastic Failure Strain epfs = 0.269300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 8.2563E-01, 0.183677, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2693==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A633 USS GR. E PLATE BAR 3 IN. MAX699 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 . . . 4.1369E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.62037E-01 m = 0.152070Yield point sy = 3.67183E-01 ey = 0.001775Ultimate (Engineering) SU = 6.20528E-01 EU = 0.164242Ultimate Stress/Total Strain sut = 7.22445E-01 eut = 0.152070Effective Plastic Failure Strain epfs = 0.427300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.6204E-01, 0.152070, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4273==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 GR. 50 HSLA PLATE .625 IN. MAX700 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 4.1369E-01 GPaElongation at failure. . . . 20.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 5.53765E-01 m = 0.083827Yield point sy = 3.22082E-01 ey = 0.001557Ultimate (Engineering) SU = 4.13685E-01 EU = 0.087441Ultimate Stress/Total Strain sut = 4.49859E-01 eut = 0.083827Effective Plastic Failure Strain epfs = 0.740300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 5.5377E-01, 0.083827, 0.0, 0.0# sigy vp epfs0.0 0.0 0.7403==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 GR. 60 HSLA PLATE .625 IN. MAX701 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 . . . 4.1369E-01 GPaEngineering ultimate stress. 4.8263E-01 GPaElongation at failure. . . . 17.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 6.34637E-01 m = 0.076755Yield point sy = 3.92278E-01 ey = 0.001897Ultimate (Engineering) SU = 4.82633E-01 EU = 0.079778Ultimate Stress/Total Strain sut = 5.21137E-01 eut = 0.076755Effective Plastic Failure Strain epfs = 0.561900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 6.3464E-01, 0.076755, 0.0, 0.0# sigy vp epfs0.0 0.0 0.5619==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 GR. 70 HSLA PLATE .625 IN. MAX702 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 . . . 4.8263E-01 GPaEngineering ultimate stress. 5.5158E-01 GPaElongation at failure. . . . 14.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.15524E-01 m = 0.071540Yield point sy = 4.62378E-01 ey = 0.002235Ultimate (Engineering) SU = 5.51581E-01 EU = 0.074161Ultimate Stress/Total Strain sut = 5.92487E-01 eut = 0.071540Effective Plastic Failure Strain epfs = 0.387100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 7.1552E-01, 0.071540, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3871==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 GR. 80 HSLA PLATE .625 IN. MAX703 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 . . . 5.5158E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 12.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.96445E-01 m = 0.067549Yield point sy = 5.32408E-01 ey = 0.002574Ultimate (Engineering) SU = 6.20528E-01 EU = 0.069883Ultimate Stress/Total Strain sut = 6.63892E-01 eut = 0.067549Effective Plastic Failure Strain epfs = 0.289700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 7.9645E-01, 0.067549, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2897==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 ARMCO FORMABLE 50V SHEET STRIP .08-.2 IN.704 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 4.5505E-01 GPaElongation at failure. . . . 30.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 6.51586E-01 m = 0.112822Yield point sy = 3.13210E-01 ey = 0.001514Ultimate (Engineering) SU = 4.55054E-01 EU = 0.119432Ultimate Stress/Total Strain sut = 5.09402E-01 eut = 0.112822Effective Plastic Failure Strain epfs = 1.272100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 6.5159E-01, 0.112822, 0.0, 0.0# sigy vp epfs0.0 0.0 1.2721==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 ARMCO FORMABLE 50F SHEET STRIP .08-.2 IN.705 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 4.5505E-01 GPaElongation at failure. . . . 30.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 6.51586E-01 m = 0.112822Yield point sy = 3.13210E-01 ey = 0.001514Ultimate (Engineering) SU = 4.55054E-01 EU = 0.119432Ultimate Stress/Total Strain sut = 5.09402E-01 eut = 0.112822Effective Plastic Failure Strain epfs = 1.272100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 6.5159E-01, 0.112822, 0.0, 0.0# sigy vp epfs0.0 0.0 1.2721==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 ARMCO FORMABLE 70V SHEET STRIP .08-.2 IN.706 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 . . . 4.8263E-01 GPaEngineering ultimate stress. 5.9295E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.17302E-01 m = 0.095971Yield point sy = 4.54207E-01 ey = 0.002196Ultimate (Engineering) SU = 5.92949E-01 EU = 0.100728Ultimate Stress/Total Strain sut = 6.52676E-01 eut = 0.095971Effective Plastic Failure Strain epfs = 0.966900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 8.1730E-01, 0.095971, 0.0, 0.0# sigy vp epfs0.0 0.0 0.9669==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 ARMCO FORMABLE 70F SHEET STRIP .08-.2 IN.707 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 4.5505E-01 GPaElongation at failure. . . . 30.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 6.51586E-01 m = 0.112822Yield point sy = 3.13210E-01 ey = 0.001514Ultimate (Engineering) SU = 4.55054E-01 EU = 0.119432Ultimate Stress/Total Strain sut = 5.09402E-01 eut = 0.112822Effective Plastic Failure Strain epfs = 1.272100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 6.5159E-01, 0.112822, 0.0, 0.0# sigy vp epfs0.0 0.0 1.2721==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 BETHLEHEM GR. 50 PLATE .625 IN. MAX708 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 4.1369E-01 GPaElongation at failure. . . . 20.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 5.53765E-01 m = 0.083827Yield point sy = 3.22082E-01 ey = 0.001557Ultimate (Engineering) SU = 4.13685E-01 EU = 0.087441Ultimate Stress/Total Strain sut = 4.49859E-01 eut = 0.083827Effective Plastic Failure Strain epfs = 0.740300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 5.5377E-01, 0.083827, 0.0, 0.0# sigy vp epfs0.0 0.0 0.7403==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 BETHLEHEM GR. 60 PLATE .625 IN. MAX709 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 . . . 4.1369E-01 GPaEngineering ultimate stress. 4.8263E-01 GPaElongation at failure. . . . 17.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 6.34637E-01 m = 0.076755Yield point sy = 3.92278E-01 ey = 0.001897Ultimate (Engineering) SU = 4.82633E-01 EU = 0.079778Ultimate Stress/Total Strain sut = 5.21137E-01 eut = 0.076755Effective Plastic Failure Strain epfs = 0.561900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 6.3464E-01, 0.076755, 0.0, 0.0# sigy vp epfs0.0 0.0 0.5619==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 BETHLEHEM GR. 70 PLATE .625 IN. MAX710 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 . . . 4.8263E-01 GPaEngineering ultimate stress. 5.5158E-01 GPaElongation at failure. . . . 14.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.15524E-01 m = 0.071540Yield point sy = 4.62378E-01 ey = 0.002235Ultimate (Engineering) SU = 5.51581E-01 EU = 0.074161Ultimate Stress/Total Strain sut = 5.92487E-01 eut = 0.071540Effective Plastic Failure Strain epfs = 0.387100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 7.1552E-01, 0.071540, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3871==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 BETHLEHEM GR. 80 PLATE .75 IN. MAX711 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 . . . 5.5158E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 12.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.96445E-01 m = 0.067549Yield point sy = 5.32408E-01 ey = 0.002574Ultimate (Engineering) SU = 6.20528E-01 EU = 0.069883Ultimate Stress/Total Strain sut = 6.63892E-01 eut = 0.067549Effective Plastic Failure Strain epfs = 0.289700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 7.9645E-01, 0.067549, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2897==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 INLAND HI-FORM 50 PLATE .625 IN. MAX712 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 4.1369E-01 GPaElongation at failure. . . . 18.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 5.53765E-01 m = 0.083827Yield point sy = 3.22082E-01 ey = 0.001557Ultimate (Engineering) SU = 4.13685E-01 EU = 0.087441Ultimate Stress/Total Strain sut = 4.49859E-01 eut = 0.083827Effective Plastic Failure Strain epfs = 0.564800# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 5.5377E-01, 0.083827, 0.0, 0.0# sigy vp epfs0.0 0.0 0.5648==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 INLAND HI-FORM 60 PLATE .625 IN. MAX713 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 . . . 4.1369E-01 GPaEngineering ultimate stress. 4.8263E-01 GPaElongation at failure. . . . 15.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 6.34637E-01 m = 0.076755Yield point sy = 3.92278E-01 ey = 0.001897Ultimate (Engineering) SU = 4.82633E-01 EU = 0.079778Ultimate Stress/Total Strain sut = 5.21137E-01 eut = 0.076755Effective Plastic Failure Strain epfs = 0.411300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 6.3464E-01, 0.076755, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4113==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 INLAND HI-FORM 70 PLATE .375 IN. MAX714 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 . . . 4.8263E-01 GPaEngineering ultimate stress. 5.5158E-01 GPaElongation at failure. . . . 14.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.15524E-01 m = 0.071540Yield point sy = 4.62378E-01 ey = 0.002235Ultimate (Engineering) SU = 5.51581E-01 EU = 0.074161Ultimate Stress/Total Strain sut = 5.92487E-01 eut = 0.071540Effective Plastic Failure Strain epfs = 0.387100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 7.1552E-01, 0.071540, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3871==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 INLAND HI-FORM 80 PLATE .625 IN. MAX715 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 . . . 5.5158E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 12.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.96445E-01 m = 0.067549Yield point sy = 5.32408E-01 ey = 0.002574Ultimate (Engineering) SU = 6.20528E-01 EU = 0.069883Ultimate Stress/Total Strain sut = 6.63892E-01 eut = 0.067549Effective Plastic Failure Strain epfs = 0.289700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 7.9645E-01, 0.067549, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2897==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 INTERLAKE I50XF PLATE BAR .5 IN. MAX716 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 4.1369E-01 GPaElongation at failure. . . . 20.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 5.53765E-01 m = 0.083827Yield point sy = 3.22082E-01 ey = 0.001557Ultimate (Engineering) SU = 4.13685E-01 EU = 0.087441Ultimate Stress/Total Strain sut = 4.49859E-01 eut = 0.083827Effective Plastic Failure Strain epfs = 0.740300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 5.5377E-01, 0.083827, 0.0, 0.0# sigy vp epfs0.0 0.0 0.7403==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 INTERLAKE I60XF PLATE BAR .375 IN. MAX717 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 . . . 4.1369E-01 GPaEngineering ultimate stress. 4.8263E-01 GPaElongation at failure. . . . 17.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 6.34637E-01 m = 0.076755Yield point sy = 3.92278E-01 ey = 0.001897Ultimate (Engineering) SU = 4.82633E-01 EU = 0.079778Ultimate Stress/Total Strain sut = 5.21137E-01 eut = 0.076755Effective Plastic Failure Strain epfs = 0.562000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 6.3464E-01, 0.076755, 0.0, 0.0# sigy vp epfs0.0 0.0 0.5620==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 INTERLAKE I70XF PLATE BAR .5 IN. MAX718 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 . . . 4.8263E-01 GPaEngineering ultimate stress. 5.5158E-01 GPaElongation at failure. . . . 14.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.15524E-01 m = 0.071540Yield point sy = 4.62378E-01 ey = 0.002235Ultimate (Engineering) SU = 5.51581E-01 EU = 0.074161Ultimate Stress/Total Strain sut = 5.92487E-01 eut = 0.071540Effective Plastic Failure Strain epfs = 0.387100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 7.1552E-01, 0.071540, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3871==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 INTERLAKE I80XF PLATE BAR .5 IN. MAX719 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 . . . 5.5158E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 12.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.96445E-01 m = 0.067549Yield point sy = 5.32408E-01 ey = 0.002574Ultimate (Engineering) SU = 6.20528E-01 EU = 0.069883Ultimate Stress/Total Strain sut = 6.63892E-01 eut = 0.067549Effective Plastic Failure Strain epfs = 0.289700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 7.9645E-01, 0.067549, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2897==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 J&L VAN GR. 50 PLATE .5 IN. MAX720 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 4.1369E-01 GPaElongation at failure. . . . 24.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 5.53765E-01 m = 0.083827Yield point sy = 3.22082E-01 ey = 0.001557Ultimate (Engineering) SU = 4.13685E-01 EU = 0.087441Ultimate Stress/Total Strain sut = 4.49859E-01 eut = 0.083827Effective Plastic Failure Strain epfs = 1.102400# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 5.5377E-01, 0.083827, 0.0, 0.0# sigy vp epfs0.0 0.0 1.1024==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 J&L VAN GR. 60 PLATE .5 IN. MAX721 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 . . . 4.1369E-01 GPaEngineering ultimate stress. 4.8263E-01 GPaElongation at failure. . . . 22.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 6.34637E-01 m = 0.076755Yield point sy = 3.92278E-01 ey = 0.001897Ultimate (Engineering) SU = 4.82633E-01 EU = 0.079778Ultimate Stress/Total Strain sut = 5.21137E-01 eut = 0.076755Effective Plastic Failure Strain epfs = 1.047900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 6.3464E-01, 0.076755, 0.0, 0.0# sigy vp epfs0.0 0.0 1.0479==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 J&L VAN GR. 70 PLATE .5 IN. MAX722 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 . . . 4.8263E-01 GPaEngineering ultimate stress. 5.5158E-01 GPaElongation at failure. . . . 20.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.15524E-01 m = 0.071540Yield point sy = 4.62378E-01 ey = 0.002235Ultimate (Engineering) SU = 5.51581E-01 EU = 0.074161Ultimate Stress/Total Strain sut = 5.92487E-01 eut = 0.071540Effective Plastic Failure Strain epfs = 0.934500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 7.1552E-01, 0.071540, 0.0, 0.0# sigy vp epfs0.0 0.0 0.9345==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 J&L VAN GR. 80 PLATE .5 IN. MAX723 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 . . . 5.5158E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 18.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.96445E-01 m = 0.067549Yield point sy = 5.32408E-01 ey = 0.002574Ultimate (Engineering) SU = 6.20528E-01 EU = 0.069883Ultimate Stress/Total Strain sut = 6.63892E-01 eut = 0.067549Effective Plastic Failure Strain epfs = 0.778300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 7.9645E-01, 0.067549, 0.0, 0.0# sigy vp epfs0.0 0.0 0.7783==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 MCLOUTH M35XF SHEET PLATE .4 IN. MAX724 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 . . . 2.4132E-01 GPaEngineering ultimate stress. 3.1026E-01 GPaElongation at failure. . . . 28.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 4.32468E-01 m = 0.100794Yield point sy = 2.16562E-01 ey = 0.001047Ultimate (Engineering) SU = 3.10264E-01 EU = 0.106049Ultimate Stress/Total Strain sut = 3.43167E-01 eut = 0.100794Effective Plastic Failure Strain epfs = 1.173100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 4.3247E-01, 0.100794, 0.0, 0.0# sigy vp epfs0.0 0.0 1.1731==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 MCLOUTH M40XF SHEET PLATE .4 IN. MAX725 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 . . . 2.7579E-01 GPaEngineering ultimate stress. 3.4474E-01 GPaElongation at failure. . . . 27.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 4.72896E-01 m = 0.093929Yield point sy = 2.51765E-01 ey = 0.001217Ultimate (Engineering) SU = 3.44738E-01 EU = 0.098482Ultimate Stress/Total Strain sut = 3.78688E-01 eut = 0.093929Effective Plastic Failure Strain epfs = 1.185400# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 4.7290E-01, 0.093929, 0.0, 0.0# sigy vp epfs0.0 0.0 1.1854==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 MCLOUTH M45XF SHEET PLATE .4 IN. MAX726 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 . . . 3.1026E-01 GPaEngineering ultimate stress. 3.7921E-01 GPaElongation at failure. . . . 25.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 5.13330E-01 m = 0.088390Yield point sy = 2.86940E-01 ey = 0.001387Ultimate (Engineering) SU = 3.79212E-01 EU = 0.092415Ultimate Stress/Total Strain sut = 4.14256E-01 eut = 0.088390Effective Plastic Failure Strain epfs = 1.116700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 5.1333E-01, 0.088390, 0.0, 0.0# sigy vp epfs0.0 0.0 1.1167==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 MCLOUTH M50XF SHEET PLATE .4 IN. MAX727 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 4.1369E-01 GPaElongation at failure. . . . 22.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 5.53765E-01 m = 0.083827Yield point sy = 3.22082E-01 ey = 0.001557Ultimate (Engineering) SU = 4.13685E-01 EU = 0.087441Ultimate Stress/Total Strain sut = 4.49859E-01 eut = 0.083827Effective Plastic Failure Strain epfs = 0.947000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 5.5377E-01, 0.083827, 0.0, 0.0# sigy vp epfs0.0 0.0 0.9470==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 MCLOUTH M55XF SHEET PLATE .4 IN. MAX728 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 . . . 3.7921E-01 GPaEngineering ultimate stress. 4.8263E-01 GPaElongation at failure. . . . 20.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 6.76669E-01 m = 0.103354Yield point sy = 3.49870E-01 ey = 0.001691Ultimate (Engineering) SU = 4.82633E-01 EU = 0.108884Ultimate Stress/Total Strain sut = 5.35184E-01 eut = 0.103354Effective Plastic Failure Strain epfs = 0.568500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 6.7667E-01, 0.103354, 0.0, 0.0# sigy vp epfs0.0 0.0 0.5685==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 MCLOUTH M60XF SHEET PLATE .4 IN. MAX729 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 . . . 4.1369E-01 GPaEngineering ultimate stress. 4.8263E-01 GPaElongation at failure. . . . 22.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 6.34637E-01 m = 0.076755Yield point sy = 3.92278E-01 ey = 0.001897Ultimate (Engineering) SU = 4.82633E-01 EU = 0.079778Ultimate Stress/Total Strain sut = 5.21137E-01 eut = 0.076755Effective Plastic Failure Strain epfs = 1.047900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 6.3464E-01, 0.076755, 0.0, 0.0# sigy vp epfs0.0 0.0 1.0479==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 MCLOUTH M70XF SHEET PLATE .25 IN. MAX730 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 . . . 4.8263E-01 GPaEngineering ultimate stress. 5.5158E-01 GPaElongation at failure. . . . 20.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.15524E-01 m = 0.071540Yield point sy = 4.62378E-01 ey = 0.002235Ultimate (Engineering) SU = 5.51581E-01 EU = 0.074161Ultimate Stress/Total Strain sut = 5.92487E-01 eut = 0.071540Effective Plastic Failure Strain epfs = 0.934500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 7.1552E-01, 0.071540, 0.0, 0.0# sigy vp epfs0.0 0.0 0.9345==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 MCLOUTH M80XF SHEET PLATE .25 IN. MAX731 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 . . . 2.4132E-01 GPaEngineering ultimate stress. 3.1026E-01 GPaElongation at failure. . . . 28.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 4.32468E-01 m = 0.100794Yield point sy = 2.16562E-01 ey = 0.001047Ultimate (Engineering) SU = 3.10264E-01 EU = 0.106049Ultimate Stress/Total Strain sut = 3.43167E-01 eut = 0.100794Effective Plastic Failure Strain epfs = 1.173100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 4.3247E-01, 0.100794, 0.0, 0.0# sigy vp epfs0.0 0.0 1.1731==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 NATIONAL NAPAC-F35 PLATE732 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 . . . 2.4132E-01 GPaEngineering ultimate stress. 3.1026E-01 GPaElongation at failure. . . . 30.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 4.32468E-01 m = 0.100794Yield point sy = 2.16562E-01 ey = 0.001047Ultimate (Engineering) SU = 3.10264E-01 EU = 0.106049Ultimate Stress/Total Strain sut = 3.43167E-01 eut = 0.100794Effective Plastic Failure Strain epfs = 1.294900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 4.3247E-01, 0.100794, 0.0, 0.0# sigy vp epfs0.0 0.0 1.2949==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 NATIONAL NAPAC-F40 PLATE733 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 . . . 2.7579E-01 GPaEngineering ultimate stress. 3.4474E-01 GPaElongation at failure. . . . 28.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 4.72896E-01 m = 0.093929Yield point sy = 2.51765E-01 ey = 0.001217Ultimate (Engineering) SU = 3.44738E-01 EU = 0.098482Ultimate Stress/Total Strain sut = 3.78688E-01 eut = 0.093929Effective Plastic Failure Strain epfs = 1.247600# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 4.7290E-01, 0.093929, 0.0, 0.0# sigy vp epfs0.0 0.0 1.2476==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 NATIONAL NAPAC-F45 PLATE734 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 . . . 3.1026E-01 GPaEngineering ultimate stress. 3.7921E-01 GPaElongation at failure. . . . 26.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 5.13330E-01 m = 0.088390Yield point sy = 2.86940E-01 ey = 0.001387Ultimate (Engineering) SU = 3.79212E-01 EU = 0.092415Ultimate Stress/Total Strain sut = 4.14256E-01 eut = 0.088390Effective Plastic Failure Strain epfs = 1.183100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 5.1333E-01, 0.088390, 0.0, 0.0# sigy vp epfs0.0 0.0 1.1831==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 NATIONAL NAPAC-F50 PLATE735 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 4.1369E-01 GPaElongation at failure. . . . 24.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 5.53765E-01 m = 0.083827Yield point sy = 3.22082E-01 ey = 0.001557Ultimate (Engineering) SU = 4.13685E-01 EU = 0.087441Ultimate Stress/Total Strain sut = 4.49859E-01 eut = 0.083827Effective Plastic Failure Strain epfs = 1.102400# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 5.5377E-01, 0.083827, 0.0, 0.0# sigy vp epfs0.0 0.0 1.1024==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 NATIONAL NAPAC-F55 PLATE736 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 . . . 3.7921E-01 GPaEngineering ultimate stress. 4.4816E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 5.94200E-01 m = 0.080004Yield point sy = 3.57193E-01 ey = 0.001727Ultimate (Engineering) SU = 4.48159E-01 EU = 0.083291Ultimate Stress/Total Strain sut = 4.85487E-01 eut = 0.080004Effective Plastic Failure Strain epfs = 1.078000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 5.9420E-01, 0.080004, 0.0, 0.0# sigy vp epfs0.0 0.0 1.0780==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 NATIONAL NAPAC-F60 PLATE .5 IN. MAX737 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 . . . 4.1369E-01 GPaEngineering ultimate stress. 4.8263E-01 GPaElongation at failure. . . . 22.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 6.34637E-01 m = 0.076755Yield point sy = 3.92278E-01 ey = 0.001897Ultimate (Engineering) SU = 4.82633E-01 EU = 0.079778Ultimate Stress/Total Strain sut = 5.21137E-01 eut = 0.076755Effective Plastic Failure Strain epfs = 1.047900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 6.3464E-01, 0.076755, 0.0, 0.0# sigy vp epfs0.0 0.0 1.0479==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 NATIONAL NAPAC-F65 PLATE .5 IN. MAX738 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 . . . 4.4816E-01 GPaEngineering ultimate stress. 5.5158E-01 GPaElongation at failure. . . . 20.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.59256E-01 m = 0.095397Yield point sy = 4.20315E-01 ey = 0.002032Ultimate (Engineering) SU = 5.51581E-01 EU = 0.100095Ultimate Stress/Total Strain sut = 6.06791E-01 eut = 0.095397Effective Plastic Failure Strain epfs = 0.655700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 7.5926E-01, 0.095397, 0.0, 0.0# sigy vp epfs0.0 0.0 0.6557==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 NATIONAL NAPAC-F70 PLATE .438 IN. MAX739 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 . . . 4.8263E-01 GPaEngineering ultimate stress. 5.5158E-01 GPaElongation at failure. . . . 20.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.15524E-01 m = 0.071540Yield point sy = 4.62378E-01 ey = 0.002235Ultimate (Engineering) SU = 5.51581E-01 EU = 0.074161Ultimate Stress/Total Strain sut = 5.92487E-01 eut = 0.071540Effective Plastic Failure Strain epfs = 0.934500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 7.1552E-01, 0.071540, 0.0, 0.0# sigy vp epfs0.0 0.0 0.9345==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 NATIONAL NAPAC-F80 PLATE .313 IN. MAX740 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 . . . 5.5158E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 18.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.96445E-01 m = 0.067549Yield point sy = 5.32408E-01 ey = 0.002574Ultimate (Engineering) SU = 6.20528E-01 EU = 0.069883Ultimate Stress/Total Strain sut = 6.63892E-01 eut = 0.067549Effective Plastic Failure Strain epfs = 0.778300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 7.9645E-01, 0.067549, 0.0, 0.0# sigy vp epfs0.0 0.0 0.7783==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 OREGON ORELLOY 70FG PLATE .5 IN. MAX741 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 . . . 4.8263E-01 GPaEngineering ultimate stress. 5.5158E-01 GPaElongation at failure. . . . 20.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.15524E-01 m = 0.071540Yield point sy = 4.62378E-01 ey = 0.002235Ultimate (Engineering) SU = 5.51581E-01 EU = 0.074161Ultimate Stress/Total Strain sut = 5.92487E-01 eut = 0.071540Effective Plastic Failure Strain epfs = 0.934500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 7.1552E-01, 0.071540, 0.0, 0.0# sigy vp epfs0.0 0.0 0.9345==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 OREGON ORELLOY 80FG PLATE .5 IN. MAX742 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 . . . 5.5158E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 18.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.96445E-01 m = 0.067549Yield point sy = 5.32408E-01 ey = 0.002574Ultimate (Engineering) SU = 6.20528E-01 EU = 0.069883Ultimate Stress/Total Strain sut = 6.63892E-01 eut = 0.067549Effective Plastic Failure Strain epfs = 0.778300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 7.9645E-01, 0.067549, 0.0, 0.0# sigy vp epfs0.0 0.0 0.7783==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 REPUBLIC MAXI-FORM 50 PLATE .375 IN. MAX743 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 4.1369E-01 GPaElongation at failure. . . . 25.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 5.53765E-01 m = 0.083827Yield point sy = 3.22082E-01 ey = 0.001557Ultimate (Engineering) SU = 4.13685E-01 EU = 0.087441Ultimate Stress/Total Strain sut = 4.49859E-01 eut = 0.083827Effective Plastic Failure Strain epfs = 1.168100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 5.5377E-01, 0.083827, 0.0, 0.0# sigy vp epfs0.0 0.0 1.1681==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 REPUBLIC MAXI-FORM 60 PLATE .375 IN. MAX744 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 . . . 4.1369E-01 GPaEngineering ultimate stress. 4.8263E-01 GPaElongation at failure. . . . 22.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 6.34637E-01 m = 0.076755Yield point sy = 3.92278E-01 ey = 0.001897Ultimate (Engineering) SU = 4.82633E-01 EU = 0.079778Ultimate Stress/Total Strain sut = 5.21137E-01 eut = 0.076755Effective Plastic Failure Strain epfs = 1.047800# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 6.3464E-01, 0.076755, 0.0, 0.0# sigy vp epfs0.0 0.0 1.0478==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 REPUBLIC MAXI-FORM 70 PLATE .312 IN. MAX745 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 . . . 4.8263E-01 GPaEngineering ultimate stress. 5.5158E-01 GPaElongation at failure. . . . 20.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.15524E-01 m = 0.071540Yield point sy = 4.62378E-01 ey = 0.002235Ultimate (Engineering) SU = 5.51581E-01 EU = 0.074161Ultimate Stress/Total Strain sut = 5.92487E-01 eut = 0.071540Effective Plastic Failure Strain epfs = 0.934400# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 7.1552E-01, 0.071540, 0.0, 0.0# sigy vp epfs0.0 0.0 0.9344==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 REPUBLIC MAXI-FORM 80 PLATE .312 IN. MAX746 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 . . . 5.5158E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 18.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.96445E-01 m = 0.067549Yield point sy = 5.32408E-01 ey = 0.002574Ultimate (Engineering) SU = 6.20528E-01 EU = 0.069883Ultimate Stress/Total Strain sut = 6.63892E-01 eut = 0.067549Effective Plastic Failure Strain epfs = 0.778300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 7.9645E-01, 0.067549, 0.0, 0.0# sigy vp epfs0.0 0.0 0.7783==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 REPUBLIC X-80 LOW S PLATE .75 IN. MAX747 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 . . . 5.5158E-01 GPaEngineering ultimate stress. 6.5500E-01 GPaElongation at failure. . . . 21.000 %Reduction in area. . . . . . 55.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.83280E-01 m = 0.086821Yield point sy = 5.25790E-01 ey = 0.002542Ultimate (Engineering) SU = 6.55002E-01 EU = 0.090702Ultimate Stress/Total Strain sut = 7.14412E-01 eut = 0.086821Effective Plastic Failure Strain epfs = 0.874600# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 8.8328E-01, 0.086821, 0.0, 0.0# sigy vp epfs0.0 0.0 0.8746==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 SHARON SHAROFORM 50 SHEET PLATE .5 IN. MAX748 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 4.4816E-01 GPaElongation at failure. . . . 22.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 6.35414E-01 m = 0.108342Yield point sy = 3.14602E-01 ey = 0.001521Ultimate (Engineering) SU = 4.48159E-01 EU = 0.114429Ultimate Stress/Total Strain sut = 4.99442E-01 eut = 0.108342Effective Plastic Failure Strain epfs = 0.679500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 6.3541E-01, 0.108342, 0.0, 0.0# sigy vp epfs0.0 0.0 0.6795==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 SHARON SHAROFORM 60 SHEET PLATE .5 IN. MAX749 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 . . . 4.1369E-01 GPaEngineering ultimate stress. 5.1711E-01 GPaElongation at failure. . . . 20.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.17952E-01 m = 0.099087Yield point sy = 3.85107E-01 ey = 0.001862Ultimate (Engineering) SU = 5.17107E-01 EU = 0.104163Ultimate Stress/Total Strain sut = 5.70970E-01 eut = 0.099087Effective Plastic Failure Strain epfs = 0.613900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 7.1795E-01, 0.099087, 0.0, 0.0# sigy vp epfs0.0 0.0 0.6139==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 USS GR. 50 PLATE750 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 4.1369E-01 GPaElongation at failure. . . . 20.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 5.53765E-01 m = 0.083827Yield point sy = 3.22082E-01 ey = 0.001557Ultimate (Engineering) SU = 4.13685E-01 EU = 0.087441Ultimate Stress/Total Strain sut = 4.49859E-01 eut = 0.083827Effective Plastic Failure Strain epfs = 0.740300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 5.5377E-01, 0.083827, 0.0, 0.0# sigy vp epfs0.0 0.0 0.7403==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 USS GR. 60 PLATE751 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 . . . 4.1369E-01 GPaEngineering ultimate stress. 4.8263E-01 GPaElongation at failure. . . . 17.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 6.34637E-01 m = 0.076755Yield point sy = 3.92278E-01 ey = 0.001897Ultimate (Engineering) SU = 4.82633E-01 EU = 0.079778Ultimate Stress/Total Strain sut = 5.21137E-01 eut = 0.076755Effective Plastic Failure Strain epfs = 0.561900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 6.3464E-01, 0.076755, 0.0, 0.0# sigy vp epfs0.0 0.0 0.5619==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 USS GR. 70 PLATE752 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 . . . 4.8263E-01 GPaEngineering ultimate stress. 5.5158E-01 GPaElongation at failure. . . . 14.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.15524E-01 m = 0.071540Yield point sy = 4.62378E-01 ey = 0.002235Ultimate (Engineering) SU = 5.51581E-01 EU = 0.074161Ultimate Stress/Total Strain sut = 5.92487E-01 eut = 0.071540Effective Plastic Failure Strain epfs = 0.387100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 7.1552E-01, 0.071540, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3871==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 USS GR. 80 PLATE753 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 . . . 5.5158E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 12.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.96445E-01 m = 0.067549Yield point sy = 5.32408E-01 ey = 0.002574Ultimate (Engineering) SU = 6.20528E-01 EU = 0.069883Ultimate Stress/Total Strain sut = 6.63892E-01 eut = 0.067549Effective Plastic Failure Strain epfs = 0.289700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 7.9645E-01, 0.067549, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2897==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 USS MN-MO-CB GR. 80 PLATE .787 IN. MAX754 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 . . . 5.5158E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 12.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.96445E-01 m = 0.067549Yield point sy = 5.32408E-01 ey = 0.002574Ultimate (Engineering) SU = 6.20528E-01 EU = 0.069883Ultimate Stress/Total Strain sut = 6.63892E-01 eut = 0.067549Effective Plastic Failure Strain epfs = 0.289700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 7.9645E-01, 0.067549, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2897==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 W-P PITT-TEN X-50F SHEET PLATE755 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 4.1369E-01 GPaElongation at failure. . . . 22.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 5.53765E-01 m = 0.083827Yield point sy = 3.22082E-01 ey = 0.001557Ultimate (Engineering) SU = 4.13685E-01 EU = 0.087441Ultimate Stress/Total Strain sut = 4.49859E-01 eut = 0.083827Effective Plastic Failure Strain epfs = 0.947000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 5.5377E-01, 0.083827, 0.0, 0.0# sigy vp epfs0.0 0.0 0.9470==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 W-P PITT-TEN X-60F SHEET PLATE756 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 . . . 4.1369E-01 GPaEngineering ultimate stress. 4.8263E-01 GPaElongation at failure. . . . 20.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 6.34637E-01 m = 0.076755Yield point sy = 3.92278E-01 ey = 0.001897Ultimate (Engineering) SU = 4.82633E-01 EU = 0.079778Ultimate Stress/Total Strain sut = 5.21137E-01 eut = 0.076755Effective Plastic Failure Strain epfs = 0.844600# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 6.3464E-01, 0.076755, 0.0, 0.0# sigy vp epfs0.0 0.0 0.8446==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 W-P PITT-TEN X-70F SHEET PLATE757 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 . . . 4.8263E-01 GPaEngineering ultimate stress. 5.5158E-01 GPaElongation at failure. . . . 17.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.15524E-01 m = 0.071540Yield point sy = 4.62378E-01 ey = 0.002235Ultimate (Engineering) SU = 5.51581E-01 EU = 0.074161Ultimate Stress/Total Strain sut = 5.92487E-01 eut = 0.071540Effective Plastic Failure Strain epfs = 0.623800# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 7.1552E-01, 0.071540, 0.0, 0.0# sigy vp epfs0.0 0.0 0.6238==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A656 W-P PITT-TEN X-80F SHEET PLATE758 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 . . . 5.5158E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 14.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.96445E-01 m = 0.067549Yield point sy = 5.32408E-01 ey = 0.002574Ultimate (Engineering) SU = 6.20528E-01 EU = 0.069883Ultimate Stress/Total Strain sut = 6.63892E-01 eut = 0.067549Effective Plastic Failure Strain epfs = 0.423000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 7.9645E-01, 0.067549, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4230==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 GR. A PLATE 1.5 IN. MAX759 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 5.5158E-01 GPaElongation at failure. . . . 22.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.76973E-01 m = 0.165772Yield point sy = 2.96148E-01 ey = 0.001432Ultimate (Engineering) SU = 5.51581E-01 EU = 0.180304Ultimate Stress/Total Strain sut = 6.51033E-01 eut = 0.165772Effective Plastic Failure Strain epfs = 0.299100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 8.7697E-01, 0.165772, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2991==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 GR. B PLATE 2.5 IN. MAX760 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 . . . 4.1369E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 22.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.62037E-01 m = 0.152070Yield point sy = 3.67183E-01 ey = 0.001775Ultimate (Engineering) SU = 6.20528E-01 EU = 0.164242Ultimate Stress/Total Strain sut = 7.22445E-01 eut = 0.152070Effective Plastic Failure Strain epfs = 0.370500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.6204E-01, 0.152070, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3705==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 GR. C PLATE TO .75 IN.761 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 . . . 5.1711E-01 GPaEngineering ultimate stress. 7.2395E-01 GPaElongation at failure. . . . 19.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.09057E+00 m = 0.137204Yield point sy = 4.73589E-01 ey = 0.002290Ultimate (Engineering) SU = 7.23950E-01 EU = 0.147062Ultimate Stress/Total Strain sut = 8.30415E-01 eut = 0.137204Effective Plastic Failure Strain epfs = 0.301000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0906E+00, 0.137204, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3010==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 GR. C PLATE .75-1.5 IN.762 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 . . . 4.8263E-01 GPaEngineering ultimate stress. 6.8948E-01 GPaElongation at failure. . . . 19.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.04763E+00 m = 0.141581Yield point sy = 4.38146E-01 ey = 0.002118Ultimate (Engineering) SU = 6.89476E-01 EU = 0.152093Ultimate Stress/Total Strain sut = 7.94341E-01 eut = 0.141581Effective Plastic Failure Strain epfs = 0.279700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0476E+00, 0.141581, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2797==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 GR. C PLATE 1.5-2 IN.763 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 . . . 4.4816E-01 GPaEngineering ultimate stress. 6.5500E-01 GPaElongation at failure. . . . 19.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.00478E+00 m = 0.146500Yield point sy = 4.02676E-01 ey = 0.001947Ultimate (Engineering) SU = 6.55002E-01 EU = 0.157775Ultimate Stress/Total Strain sut = 7.58345E-01 eut = 0.146500Effective Plastic Failure Strain epfs = 0.258300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0048E+00, 0.146500, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2583==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 ARMCO GR. A PLATE 2 IN. MAX764 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 5.5158E-01 GPaElongation at failure. . . . 22.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.76973E-01 m = 0.165772Yield point sy = 2.96148E-01 ey = 0.001432Ultimate (Engineering) SU = 5.51581E-01 EU = 0.180304Ultimate Stress/Total Strain sut = 6.51033E-01 eut = 0.165772Effective Plastic Failure Strain epfs = 0.299100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 8.7697E-01, 0.165772, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2991==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 ARMCO GR. B PLATE TO 2.5 IN.765 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 . . . 4.1369E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 22.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.62037E-01 m = 0.152070Yield point sy = 3.67183E-01 ey = 0.001775Ultimate (Engineering) SU = 6.20528E-01 EU = 0.164242Ultimate Stress/Total Strain sut = 7.22445E-01 eut = 0.152070Effective Plastic Failure Strain epfs = 0.370500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.6204E-01, 0.152070, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3705==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 ARMCO GR. B PLATE 2.5-4 IN.766 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 . . . 3.7921E-01 GPaEngineering ultimate stress. 5.8605E-01 GPaElongation at failure. . . . 22.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.19422E-01 m = 0.158432Yield point sy = 3.31670E-01 ey = 0.001603Ultimate (Engineering) SU = 5.86054E-01 EU = 0.171673Ultimate Stress/Total Strain sut = 6.86664E-01 eut = 0.158432Effective Plastic Failure Strain epfs = 0.334500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.1942E-01, 0.158432, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3345==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 ARMCO GR. B PLATE 4-6 IN.767 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 . . . 3.1716E-01 GPaEngineering ultimate stress. 5.5158E-01 GPaElongation at failure. . . . 20.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.07712E-01 m = 0.185576Yield point sy = 2.63464E-01 ey = 0.001274Ultimate (Engineering) SU = 5.51581E-01 EU = 0.203911Ultimate Stress/Total Strain sut = 6.64054E-01 eut = 0.185576Effective Plastic Failure Strain epfs = 0.198000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.0771E-01, 0.185576, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1980==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 ARMCO GR. C PLATE TO .75 IN.768 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 . . . 5.1711E-01 GPaEngineering ultimate stress. 7.2395E-01 GPaElongation at failure. . . . 19.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.09057E+00 m = 0.137204Yield point sy = 4.73589E-01 ey = 0.002290Ultimate (Engineering) SU = 7.23950E-01 EU = 0.147062Ultimate Stress/Total Strain sut = 8.30415E-01 eut = 0.137204Effective Plastic Failure Strain epfs = 0.301000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0906E+00, 0.137204, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3010==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 ARMCO GR. C PLATE .75-2 IN.769 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 . . . 4.8263E-01 GPaEngineering ultimate stress. 6.8948E-01 GPaElongation at failure. . . . 19.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.04763E+00 m = 0.141581Yield point sy = 4.38146E-01 ey = 0.002118Ultimate (Engineering) SU = 6.89476E-01 EU = 0.152093Ultimate Stress/Total Strain sut = 7.94341E-01 eut = 0.141581Effective Plastic Failure Strain epfs = 0.279700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0476E+00, 0.141581, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2797==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 ARMCO GR. C PLATE 2-3 IN.770 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 . . . 4.4816E-01 GPaEngineering ultimate stress. 6.5500E-01 GPaElongation at failure. . . . 19.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.00478E+00 m = 0.146500Yield point sy = 4.02676E-01 ey = 0.001947Ultimate (Engineering) SU = 6.55002E-01 EU = 0.157775Ultimate Stress/Total Strain sut = 7.58345E-01 eut = 0.146500Effective Plastic Failure Strain epfs = 0.258300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0048E+00, 0.146500, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2583==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 ARMCO GR. C PLATE 3-6 IN.771 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 . . . 4.1369E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 19.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.62037E-01 m = 0.152070Yield point sy = 3.67183E-01 ey = 0.001775Ultimate (Engineering) SU = 6.20528E-01 EU = 0.164242Ultimate Stress/Total Strain sut = 7.22445E-01 eut = 0.152070Effective Plastic Failure Strain epfs = 0.238200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.6204E-01, 0.152070, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2382==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 ARMCO CT-65 QT PLATE 2.5 IN. MAX772 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 . . . 4.4816E-01 GPaEngineering ultimate stress. 6.5500E-01 GPaElongation at failure. . . . 22.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.00478E+00 m = 0.146500Yield point sy = 4.02676E-01 ey = 0.001947Ultimate (Engineering) SU = 6.55002E-01 EU = 0.157775Ultimate Stress/Total Strain sut = 7.58345E-01 eut = 0.146500Effective Plastic Failure Strain epfs = 0.406900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0048E+00, 0.146500, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4069==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 ARMCO CT-60 QT PLATE 2.5-4 IN.773 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 . . . 4.1369E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 22.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.62037E-01 m = 0.152070Yield point sy = 3.67183E-01 ey = 0.001775Ultimate (Engineering) SU = 6.20528E-01 EU = 0.164242Ultimate Stress/Total Strain sut = 7.22445E-01 eut = 0.152070Effective Plastic Failure Strain epfs = 0.370500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.6204E-01, 0.152070, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3705==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 ARMCO CT-56 QT PLATE 4-6 IN.774 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 . . . 3.8611E-01 GPaEngineering ultimate stress. 5.8605E-01 GPaElongation at failure. . . . 22.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.11758E-01 m = 0.153924Yield point sy = 3.39862E-01 ey = 0.001643Ultimate (Engineering) SU = 5.86054E-01 EU = 0.166403Ultimate Stress/Total Strain sut = 6.83575E-01 eut = 0.153924Effective Plastic Failure Strain epfs = 0.357100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.1176E-01, 0.153924, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3571==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 BETHLEHEM GR. B PLATE TO 2.5 IN.775 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 . . . 4.1369E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 22.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.62037E-01 m = 0.152070Yield point sy = 3.67183E-01 ey = 0.001775Ultimate (Engineering) SU = 6.20528E-01 EU = 0.164242Ultimate Stress/Total Strain sut = 7.22445E-01 eut = 0.152070Effective Plastic Failure Strain epfs = 0.370500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.6204E-01, 0.152070, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3705==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 BETHLEHEM GR. B PLATE 2.5-4 IN.776 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 . . . 3.7921E-01 GPaEngineering ultimate stress. 5.8605E-01 GPaElongation at failure. . . . 22.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.19422E-01 m = 0.158432Yield point sy = 3.31670E-01 ey = 0.001603Ultimate (Engineering) SU = 5.86054E-01 EU = 0.171673Ultimate Stress/Total Strain sut = 6.86664E-01 eut = 0.158432Effective Plastic Failure Strain epfs = 0.334600# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.1942E-01, 0.158432, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3346==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 LUKENS GR. A PLATE 1.5 IN. MAX777 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 5.5158E-01 GPaElongation at failure. . . . 22.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.76973E-01 m = 0.165772Yield point sy = 2.96148E-01 ey = 0.001432Ultimate (Engineering) SU = 5.51581E-01 EU = 0.180304Ultimate Stress/Total Strain sut = 6.51033E-01 eut = 0.165772Effective Plastic Failure Strain epfs = 0.299100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 8.7697E-01, 0.165772, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2991==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 LUKENS GR. B PLATE 2 IN. MAX778 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 . . . 4.1369E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 22.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.62037E-01 m = 0.152070Yield point sy = 3.67183E-01 ey = 0.001775Ultimate (Engineering) SU = 6.20528E-01 EU = 0.164242Ultimate Stress/Total Strain sut = 7.22445E-01 eut = 0.152070Effective Plastic Failure Strain epfs = 0.370500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.6204E-01, 0.152070, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3705==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 LUKENS GR. C PLATE TO .75 IN.779 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 . . . 5.1711E-01 GPaEngineering ultimate stress. 7.2395E-01 GPaElongation at failure. . . . 22.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.09057E+00 m = 0.137204Yield point sy = 4.73589E-01 ey = 0.002290Ultimate (Engineering) SU = 7.23950E-01 EU = 0.147062Ultimate Stress/Total Strain sut = 8.30415E-01 eut = 0.137204Effective Plastic Failure Strain epfs = 0.475400# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0906E+00, 0.137204, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4754==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 LUKENS GR. C PLATE .75-1.5 IN.780 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 . . . 4.8263E-01 GPaEngineering ultimate stress. 6.8948E-01 GPaElongation at failure. . . . 22.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.04763E+00 m = 0.141581Yield point sy = 4.38146E-01 ey = 0.002118Ultimate (Engineering) SU = 6.89476E-01 EU = 0.152093Ultimate Stress/Total Strain sut = 7.94341E-01 eut = 0.141581Effective Plastic Failure Strain epfs = 0.441800# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0476E+00, 0.141581, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4418==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 LUKENS GR. C PLATE 1.5-2 IN.781 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 . . . 4.4816E-01 GPaEngineering ultimate stress. 6.5500E-01 GPaElongation at failure. . . . 22.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.00478E+00 m = 0.146500Yield point sy = 4.02676E-01 ey = 0.001947Ultimate (Engineering) SU = 6.55002E-01 EU = 0.157775Ultimate Stress/Total Strain sut = 7.58345E-01 eut = 0.146500Effective Plastic Failure Strain epfs = 0.406900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0048E+00, 0.146500, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4069==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 OREGON GR. A PLATE 1.5 IN. MAX782 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 5.5158E-01 GPaElongation at failure. . . . 22.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.76973E-01 m = 0.165772Yield point sy = 2.96148E-01 ey = 0.001432Ultimate (Engineering) SU = 5.51581E-01 EU = 0.180304Ultimate Stress/Total Strain sut = 6.51033E-01 eut = 0.165772Effective Plastic Failure Strain epfs = 0.299100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 8.7697E-01, 0.165772, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2991==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 OREGON GR. B PLATE 2.5 IN. MAX783 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 . . . 4.1369E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 22.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.62037E-01 m = 0.152070Yield point sy = 3.67183E-01 ey = 0.001775Ultimate (Engineering) SU = 6.20528E-01 EU = 0.164242Ultimate Stress/Total Strain sut = 7.22445E-01 eut = 0.152070Effective Plastic Failure Strain epfs = 0.370500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.6204E-01, 0.152070, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3705==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 OREGON GR. C PLATE TO .75 IN.784 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 . . . 5.1711E-01 GPaEngineering ultimate stress. 7.2395E-01 GPaElongation at failure. . . . 19.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.09057E+00 m = 0.137204Yield point sy = 4.73589E-01 ey = 0.002290Ultimate (Engineering) SU = 7.23950E-01 EU = 0.147062Ultimate Stress/Total Strain sut = 8.30415E-01 eut = 0.137204Effective Plastic Failure Strain epfs = 0.301000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0906E+00, 0.137204, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3010==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 OREGON GR. C PLATE .75-1.5 IN.785 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 . . . 4.8263E-01 GPaEngineering ultimate stress. 6.8948E-01 GPaElongation at failure. . . . 19.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.04763E+00 m = 0.141581Yield point sy = 4.38146E-01 ey = 0.002118Ultimate (Engineering) SU = 6.89476E-01 EU = 0.152093Ultimate Stress/Total Strain sut = 7.94341E-01 eut = 0.141581Effective Plastic Failure Strain epfs = 0.279700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0476E+00, 0.141581, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2797==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 OREGON GR. C PLATE 1.5-2 IN.786 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 . . . 4.4816E-01 GPaEngineering ultimate stress. 6.5500E-01 GPaElongation at failure. . . . 19.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.00478E+00 m = 0.146500Yield point sy = 4.02676E-01 ey = 0.001947Ultimate (Engineering) SU = 6.55002E-01 EU = 0.157775Ultimate Stress/Total Strain sut = 7.58345E-01 eut = 0.146500Effective Plastic Failure Strain epfs = 0.258300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0048E+00, 0.146500, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2583==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 PHOENIX GR. A PLATE 1.5 IN. MAX787 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 5.5158E-01 GPaElongation at failure. . . . 22.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.76973E-01 m = 0.165772Yield point sy = 2.96148E-01 ey = 0.001432Ultimate (Engineering) SU = 5.51581E-01 EU = 0.180304Ultimate Stress/Total Strain sut = 6.51033E-01 eut = 0.165772Effective Plastic Failure Strain epfs = 0.299100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 8.7697E-01, 0.165772, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2991==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 PHOENIX GR. B PLATE 2 IN. MAX788 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 . . . 4.1369E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 22.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.62037E-01 m = 0.152070Yield point sy = 3.67183E-01 ey = 0.001775Ultimate (Engineering) SU = 6.20528E-01 EU = 0.164242Ultimate Stress/Total Strain sut = 7.22445E-01 eut = 0.152070Effective Plastic Failure Strain epfs = 0.370500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.6204E-01, 0.152070, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3705==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 PHOENIX GR. C PLATE TO .75 IN.789 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 . . . 5.1711E-01 GPaEngineering ultimate stress. 7.2395E-01 GPaElongation at failure. . . . 19.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.09057E+00 m = 0.137204Yield point sy = 4.73589E-01 ey = 0.002290Ultimate (Engineering) SU = 7.23950E-01 EU = 0.147062Ultimate Stress/Total Strain sut = 8.30415E-01 eut = 0.137204Effective Plastic Failure Strain epfs = 0.301000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0906E+00, 0.137204, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3010==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 PHOENIX GR. C PLATE .75-1.5 IN.790 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 . . . 4.8263E-01 GPaEngineering ultimate stress. 6.8948E-01 GPaElongation at failure. . . . 19.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.04763E+00 m = 0.141581Yield point sy = 4.38146E-01 ey = 0.002118Ultimate (Engineering) SU = 6.89476E-01 EU = 0.152093Ultimate Stress/Total Strain sut = 7.94341E-01 eut = 0.141581Effective Plastic Failure Strain epfs = 0.279700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0476E+00, 0.141581, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2797==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 PHOENIX GR. C PLATE 1.5-2 IN.791 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 . . . 4.4816E-01 GPaEngineering ultimate stress. 6.5500E-01 GPaElongation at failure. . . . 19.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.00478E+00 m = 0.146500Yield point sy = 4.02676E-01 ey = 0.001947Ultimate (Engineering) SU = 6.55002E-01 EU = 0.157775Ultimate Stress/Total Strain sut = 7.58345E-01 eut = 0.146500Effective Plastic Failure Strain epfs = 0.258300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0048E+00, 0.146500, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2583==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 USS GR. A PLATE 1.5 IN. MAX792 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 5.5158E-01 GPaElongation at failure. . . . 22.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.76973E-01 m = 0.165772Yield point sy = 2.96148E-01 ey = 0.001432Ultimate (Engineering) SU = 5.51581E-01 EU = 0.180304Ultimate Stress/Total Strain sut = 6.51033E-01 eut = 0.165772Effective Plastic Failure Strain epfs = 0.299100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 8.7697E-01, 0.165772, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2991==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 USS GR. B PLATE 2.5 IN. MAX793 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 . . . 4.1369E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 22.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.62037E-01 m = 0.152070Yield point sy = 3.67183E-01 ey = 0.001775Ultimate (Engineering) SU = 6.20528E-01 EU = 0.164242Ultimate Stress/Total Strain sut = 7.22445E-01 eut = 0.152070Effective Plastic Failure Strain epfs = 0.370500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.6204E-01, 0.152070, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3705==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 USS GR. C PLATE TO .75 IN.794 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 . . . 5.1711E-01 GPaEngineering ultimate stress. 7.2395E-01 GPaElongation at failure. . . . 19.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.09057E+00 m = 0.137204Yield point sy = 4.73589E-01 ey = 0.002290Ultimate (Engineering) SU = 7.23950E-01 EU = 0.147062Ultimate Stress/Total Strain sut = 8.30415E-01 eut = 0.137204Effective Plastic Failure Strain epfs = 0.301000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0906E+00, 0.137204, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3010==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 USS GR. C PLATE .75-1.5 IN.795 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 . . . 4.8263E-01 GPaEngineering ultimate stress. 6.8948E-01 GPaElongation at failure. . . . 19.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.04763E+00 m = 0.141581Yield point sy = 4.38146E-01 ey = 0.002118Ultimate (Engineering) SU = 6.89476E-01 EU = 0.152093Ultimate Stress/Total Strain sut = 7.94341E-01 eut = 0.141581Effective Plastic Failure Strain epfs = 0.279700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0476E+00, 0.141581, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2797==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A678 USS GR. C PLATE 1.5-2 IN.796 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 . . . 4.4816E-01 GPaEngineering ultimate stress. 6.5500E-01 GPaElongation at failure. . . . 19.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.00478E+00 m = 0.146500Yield point sy = 4.02676E-01 ey = 0.001947Ultimate (Engineering) SU = 6.55002E-01 EU = 0.157775Ultimate Stress/Total Strain sut = 7.58345E-01 eut = 0.146500Effective Plastic Failure Strain epfs = 0.258300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0048E+00, 0.146500, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2583==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A690 H-PILES SHEET PILING797 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 4.8263E-01 GPaElongation at failure. . . . 18.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.16045E-01 m = 0.129636Yield point sy = 3.07916E-01 ey = 0.001489Ultimate (Engineering) SU = 4.82633E-01 EU = 0.138414Ultimate Stress/Total Strain sut = 5.49436E-01 eut = 0.129636Effective Plastic Failure Strain epfs = 0.276500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 7.1604E-01, 0.129636, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2765==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A699 CLASS 1 PLATE BAR TO .625 IN.798 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 . . . 4.8263E-01 GPaEngineering ultimate stress. 6.8948E-01 GPaElongation at failure. . . . 18.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.04763E+00 m = 0.141581Yield point sy = 4.38146E-01 ey = 0.002118Ultimate (Engineering) SU = 6.89476E-01 EU = 0.152093Ultimate Stress/Total Strain sut = 7.94341E-01 eut = 0.141581Effective Plastic Failure Strain epfs = 0.238500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0476E+00, 0.141581, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2385==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A699 CLASS 1 PLATE BAR .625-1 IN.799 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 . . . 4.8263E-01 GPaEngineering ultimate stress. 6.8948E-01 GPaElongation at failure. . . . 18.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.04763E+00 m = 0.141581Yield point sy = 4.38146E-01 ey = 0.002118Ultimate (Engineering) SU = 6.89476E-01 EU = 0.152093Ultimate Stress/Total Strain sut = 7.94341E-01 eut = 0.141581Effective Plastic Failure Strain epfs = 0.238500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0476E+00, 0.141581, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2385==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A699 CLASS 1 OREGON PLATE TO .625 IN.800 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 . . . 4.8263E-01 GPaEngineering ultimate stress. 6.8948E-01 GPaElongation at failure. . . . 18.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.04763E+00 m = 0.141581Yield point sy = 4.38146E-01 ey = 0.002118Ultimate (Engineering) SU = 6.89476E-01 EU = 0.152093Ultimate Stress/Total Strain sut = 7.94341E-01 eut = 0.141581Effective Plastic Failure Strain epfs = 0.238500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0476E+00, 0.141581, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2385==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A699 CLASS 1 OREGON PLATE .625-1 IN.801 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 . . . 4.8263E-01 GPaEngineering ultimate stress. 6.8948E-01 GPaElongation at failure. . . . 18.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.04763E+00 m = 0.141581Yield point sy = 4.38146E-01 ey = 0.002118Ultimate (Engineering) SU = 6.89476E-01 EU = 0.152093Ultimate Stress/Total Strain sut = 7.94341E-01 eut = 0.141581Effective Plastic Failure Strain epfs = 0.238500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0476E+00, 0.141581, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2385==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A699 CLASS 2 PLATE BAR TO .625 IN.802 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 . . . 5.1711E-01 GPaEngineering ultimate stress. 6.8948E-01 GPaElongation at failure. . . . 18.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.00834E+00 m = 0.122703Yield point sy = 4.78890E-01 ey = 0.002315Ultimate (Engineering) SU = 6.89476E-01 EU = 0.130549Ultimate Stress/Total Strain sut = 7.79486E-01 eut = 0.122703Effective Plastic Failure Strain epfs = 0.322500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0083E+00, 0.122703, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3225==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A699 CLASS 2 PLATE BAR .625-1 IN.803 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 . . . 5.1711E-01 GPaEngineering ultimate stress. 6.8948E-01 GPaElongation at failure. . . . 18.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.00834E+00 m = 0.122703Yield point sy = 4.78890E-01 ey = 0.002315Ultimate (Engineering) SU = 6.89476E-01 EU = 0.130549Ultimate Stress/Total Strain sut = 7.79486E-01 eut = 0.122703Effective Plastic Failure Strain epfs = 0.322500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0083E+00, 0.122703, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3225==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A699 CLASS 2 OREGON PLATE 1 IN. MAX804 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 . . . 5.1711E-01 GPaEngineering ultimate stress. 6.8948E-01 GPaElongation at failure. . . . 18.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.00834E+00 m = 0.122703Yield point sy = 4.78890E-01 ey = 0.002315Ultimate (Engineering) SU = 6.89476E-01 EU = 0.130549Ultimate Stress/Total Strain sut = 7.79486E-01 eut = 0.122703Effective Plastic Failure Strain epfs = 0.322500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0083E+00, 0.122703, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3225==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A699 CLASS 3 PLATE BAR TO .625 IN.805 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 . . . 4.8263E-01 GPaEngineering ultimate stress. 6.5500E-01 GPaElongation at failure. . . . 18.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.65818E-01 m = 0.126644Yield point sy = 4.43526E-01 ey = 0.002144Ultimate (Engineering) SU = 6.55002E-01 EU = 0.135012Ultimate Stress/Total Strain sut = 7.43435E-01 eut = 0.126644Effective Plastic Failure Strain epfs = 0.300700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.6582E-01, 0.126644, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3007==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A699 CLASS 3 PLATE BAR .625-1 IN.806 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 . . . 4.8263E-01 GPaEngineering ultimate stress. 6.5500E-01 GPaElongation at failure. . . . 18.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.65818E-01 m = 0.126644Yield point sy = 4.43526E-01 ey = 0.002144Ultimate (Engineering) SU = 6.55002E-01 EU = 0.135012Ultimate Stress/Total Strain sut = 7.43435E-01 eut = 0.126644Effective Plastic Failure Strain epfs = 0.300700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.6582E-01, 0.126644, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3007==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A699 CLASS 3 OREGON PLATE TO .625 IN.807 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 . . . 4.8263E-01 GPaEngineering ultimate stress. 6.5500E-01 GPaElongation at failure. . . . 18.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.65818E-01 m = 0.126644Yield point sy = 4.43526E-01 ey = 0.002144Ultimate (Engineering) SU = 6.55002E-01 EU = 0.135012Ultimate Stress/Total Strain sut = 7.43435E-01 eut = 0.126644Effective Plastic Failure Strain epfs = 0.300700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.6582E-01, 0.126644, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3007==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A699 CLASS 3 OREGON PLATE .625-1 IN.808 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 . . . 4.8263E-01 GPaEngineering ultimate stress. 6.5500E-01 GPaElongation at failure. . . . 18.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.65818E-01 m = 0.126644Yield point sy = 4.43526E-01 ey = 0.002144Ultimate (Engineering) SU = 6.55002E-01 EU = 0.135012Ultimate Stress/Total Strain sut = 7.43435E-01 eut = 0.126644Effective Plastic Failure Strain epfs = 0.300700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.6582E-01, 0.126644, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3007==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A699 CLASS 4 PLATE BAR TO 1 IN.809 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 . . . 5.1711E-01 GPaEngineering ultimate stress. 6.5500E-01 GPaElongation at failure. . . . 18.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.25649E-01 m = 0.106875Yield point sy = 4.84544E-01 ey = 0.002343Ultimate (Engineering) SU = 6.55002E-01 EU = 0.112795Ultimate Stress/Total Strain sut = 7.28883E-01 eut = 0.106875Effective Plastic Failure Strain epfs = 0.418400# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.2565E-01, 0.106875, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4184==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A699 CLASS 4 OREGON PLATE 1 IN. MAX810 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 . . . 5.1711E-01 GPaEngineering ultimate stress. 6.5500E-01 GPaElongation at failure. . . . 18.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.25649E-01 m = 0.106875Yield point sy = 4.84544E-01 ey = 0.002343Ultimate (Engineering) SU = 6.55002E-01 EU = 0.112795Ultimate Stress/Total Strain sut = 7.28883E-01 eut = 0.106875Effective Plastic Failure Strain epfs = 0.418400# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.2565E-01, 0.106875, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4184==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A709 GRADE 36 PLATE TO 8 IN. MAX811 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 . . . 2.4821E-01 GPaEngineering ultimate stress. 4.7574E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.07927E-01 m = 0.204830Yield point sy = 1.93650E-01 ey = 0.000936Ultimate (Engineering) SU = 4.75738E-01 EU = 0.227317Ultimate Stress/Total Strain sut = 5.83882E-01 eut = 0.204830Effective Plastic Failure Strain epfs = 0.228500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 8.0793E-01, 0.204830, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2285==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A709 GRADE 36 PLATE OVER 8 IN.812 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 . . . 2.2063E-01 GPaEngineering ultimate stress. 3.9990E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 6.62267E-01 m = 0.189353Yield point sy = 1.73115E-01 ey = 0.000837Ultimate (Engineering) SU = 3.99896E-01 EU = 0.208468Ultimate Stress/Total Strain sut = 4.83261E-01 eut = 0.189353Effective Plastic Failure Strain epfs = 0.250400# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 6.6227E-01, 0.189353, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2504==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A709 GRADE 50 PLATE BAR 2 IN. MAX813 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 4.4816E-01 GPaElongation at failure. . . . 21.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 6.35414E-01 m = 0.108342Yield point sy = 3.14602E-01 ey = 0.001521Ultimate (Engineering) SU = 4.48159E-01 EU = 0.114429Ultimate Stress/Total Strain sut = 4.99442E-01 eut = 0.108342Effective Plastic Failure Strain epfs = 0.596200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 6.3541E-01, 0.108342, 0.0, 0.0# sigy vp epfs0.0 0.0 0.5962==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A709 GRADE 50W PLATE BAR 4 IN. MAX814 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 4.8263E-01 GPaElongation at failure. . . . 21.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.16045E-01 m = 0.129636Yield point sy = 3.07916E-01 ey = 0.001489Ultimate (Engineering) SU = 4.82633E-01 EU = 0.138414Ultimate Stress/Total Strain sut = 5.49436E-01 eut = 0.129636Effective Plastic Failure Strain epfs = 0.436300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 7.1604E-01, 0.129636, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4363==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A737 GR. B PLATE815 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 5.5158E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.76973E-01 m = 0.165772Yield point sy = 2.96148E-01 ey = 0.001432Ultimate (Engineering) SU = 5.51581E-01 EU = 0.180304Ultimate Stress/Total Strain sut = 6.51033E-01 eut = 0.165772Effective Plastic Failure Strain epfs = 0.342900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 8.7697E-01, 0.165772, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3429==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A737 GR. C PLATE816 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 . . . 4.1369E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.62037E-01 m = 0.152070Yield point sy = 3.67183E-01 ey = 0.001775Ultimate (Engineering) SU = 6.20528E-01 EU = 0.164242Ultimate Stress/Total Strain sut = 7.22445E-01 eut = 0.152070Effective Plastic Failure Strain epfs = 0.427300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.6204E-01, 0.152070, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4273==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A737 ARMCO CT-50N GR. B PLATE 4 IN. MAX817 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 5.5158E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.76973E-01 m = 0.165772Yield point sy = 2.96148E-01 ey = 0.001432Ultimate (Engineering) SU = 5.51581E-01 EU = 0.180304Ultimate Stress/Total Strain sut = 6.51033E-01 eut = 0.165772Effective Plastic Failure Strain epfs = 0.342900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 8.7697E-01, 0.165772, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3429==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A737 ARMCO CT-65QT GR. B PLATE TO 2.5 IN.818 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 . . . 4.4816E-01 GPaEngineering ultimate stress. 6.5500E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.00478E+00 m = 0.146500Yield point sy = 4.02676E-01 ey = 0.001947Ultimate (Engineering) SU = 6.55002E-01 EU = 0.157775Ultimate Stress/Total Strain sut = 7.58345E-01 eut = 0.146500Effective Plastic Failure Strain epfs = 0.468900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0048E+00, 0.146500, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4689==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A737 ARMCO CT-65QT GR. B PLATE 2.5-4 IN.819 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 . . . 4.1369E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.62037E-01 m = 0.152070Yield point sy = 3.67183E-01 ey = 0.001775Ultimate (Engineering) SU = 6.20528E-01 EU = 0.164242Ultimate Stress/Total Strain sut = 7.22445E-01 eut = 0.152070Effective Plastic Failure Strain epfs = 0.427300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.6204E-01, 0.152070, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4273==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A737 ARMCO CT-65QT GR. B PLATE 4-6 IN.820 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 . . . 3.8611E-01 GPaEngineering ultimate stress. 5.8605E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.11758E-01 m = 0.153924Yield point sy = 3.39862E-01 ey = 0.001643Ultimate (Engineering) SU = 5.86054E-01 EU = 0.166403Ultimate Stress/Total Strain sut = 6.83575E-01 eut = 0.153924Effective Plastic Failure Strain epfs = 0.411900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.1176E-01, 0.153924, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4119==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A737 ARMCO VNT-N GR. C PLATE TO 4 IN.821 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 . . . 4.1369E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.62037E-01 m = 0.152070Yield point sy = 3.67183E-01 ey = 0.001775Ultimate (Engineering) SU = 6.20528E-01 EU = 0.164242Ultimate Stress/Total Strain sut = 7.22445E-01 eut = 0.152070Effective Plastic Failure Strain epfs = 0.427200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.6204E-01, 0.152070, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4272==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A737 ARMCO VNT-N GR. C PLATE 4-6 IN.822 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 . . . 3.7921E-01 GPaEngineering ultimate stress. 5.8605E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.19422E-01 m = 0.158432Yield point sy = 3.31670E-01 ey = 0.001603Ultimate (Engineering) SU = 5.86054E-01 EU = 0.171673Ultimate Stress/Total Strain sut = 6.86664E-01 eut = 0.158432Effective Plastic Failure Strain epfs = 0.385200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.1942E-01, 0.158432, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3852==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A737 LUKENS GR. B PLATE 4 IN. MAX823 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 5.5158E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.76973E-01 m = 0.165772Yield point sy = 2.96148E-01 ey = 0.001432Ultimate (Engineering) SU = 5.51581E-01 EU = 0.180304Ultimate Stress/Total Strain sut = 6.51033E-01 eut = 0.165772Effective Plastic Failure Strain epfs = 0.342900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 8.7697E-01, 0.165772, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3429==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A737 LUKENS GR. C PLATE 4 IN. MAX824 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 . . . 4.1369E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.62037E-01 m = 0.152070Yield point sy = 3.67183E-01 ey = 0.001775Ultimate (Engineering) SU = 6.20528E-01 EU = 0.164242Ultimate Stress/Total Strain sut = 7.22445E-01 eut = 0.152070Effective Plastic Failure Strain epfs = 0.427300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.6204E-01, 0.152070, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4273==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A737 OREGON GR. B PLATE 2.5 IN. MAX825 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 4.8263E-01 GPaElongation at failure. . . . 18.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.16045E-01 m = 0.129636Yield point sy = 3.07916E-01 ey = 0.001489Ultimate (Engineering) SU = 4.82633E-01 EU = 0.138414Ultimate Stress/Total Strain sut = 5.49436E-01 eut = 0.129636Effective Plastic Failure Strain epfs = 0.276500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 7.1604E-01, 0.129636, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2765==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A737 USS GR. B PLATE 2.5 IN. MAX826 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 5.5158E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.76973E-01 m = 0.165772Yield point sy = 2.96148E-01 ey = 0.001432Ultimate (Engineering) SU = 5.51581E-01 EU = 0.180304Ultimate Stress/Total Strain sut = 6.51033E-01 eut = 0.165772Effective Plastic Failure Strain epfs = 0.342900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 8.7697E-01, 0.165772, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3429==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL CARBON A737 USS GR. C PLATE 3 IN. MAX827 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 . . . 4.1369E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 23.000 %CTE. . . . . . . . . . . . . 1.1340E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.62037E-01 m = 0.152070Yield point sy = 3.67183E-01 ey = 0.001775Ultimate (Engineering) SU = 6.20528E-01 EU = 0.164242Ultimate Stress/Total Strain sut = 7.22445E-01 eut = 0.152070Effective Plastic Failure Strain epfs = 0.427200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.6204E-01, 0.152070, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4272==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL HP-9-4-20 HEAT-TREATED828 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. . . . . . . . 7.8105E+01 GPaBulk Modulus . . . . . . . . 1.5148E+02 GPaPoisson's ratio. . . . . . . 0.2800Yield stress at offset . . . 1.2411E+00 GPaEngineering ultimate stress. 1.4479E+00 GPaElongation at failure. . . . 12.000 %Reduction in area. . . . . . 45.000 %CTE. . . . . . . . . . . . . 1.3140E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.00621E+00 m = 0.098216Yield point sy = 1.21537E+00 ey = 0.006078Ultimate (Engineering) SU = 1.44790E+00 EU = 0.103201Ultimate Stress/Total Strain sut = 1.59732E+00 eut = 0.098216Effective Plastic Failure Strain epfs = 0.162100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9995E+02, 0.280, 2.0062E+00, 0.098216, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1621==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL H13 TOOL ROOM TEMPERATURE PROPERTIES829 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 . . . 1.6547E+00 GPaEngineering ultimate stress. 1.8616E+00 GPaElongation at failure. . . . 10.000 %Reduction in area. . . . . . 30.000 %CTE. . . . . . . . . . . . . 1.1700E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.52880E+00 m = 0.089834Yield point sy = 1.63729E+00 ey = 0.007916Ultimate (Engineering) SU = 1.86158E+00 EU = 0.093993Ultimate Stress/Total Strain sut = 2.03656E+00 eut = 0.089834Effective Plastic Failure Strain epfs = 0.115400# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 2.5288E+00, 0.089834, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1154==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL H13 TOOL HEAT TREAT TO RC=52 MINIMUM830 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. 1.0342E+00 GPaElongation at failure. . . . 17.600 %Reduction in area. . . . . . 57.900 %CTE. . . . . . . . . . . . . 1.1700E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.44458E+00 m = 0.101709Yield point sy = 8.23457E-01 ey = 0.003981Ultimate (Engineering) SU = 1.03421E+00 EU = 0.107061Ultimate Stress/Total Strain sut = 1.14494E+00 eut = 0.101709Effective Plastic Failure Strain epfs = 0.452100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.4446E+00, 0.101709, 0.0, 0.0# sigy vp epfs0.0 0.0 0.4521==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1020 1 IN. BAR ANNEALED831 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 . . . 2.9647E-01 GPaEngineering ultimate stress. 3.9300E-01 GPaElongation at failure. . . . 36.000 %Reduction in area. . . . . . 66.000 %CTE. . . . . . . . . . . . . 1.5120E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 5.62823E-01 m = 0.112895Yield point sy = 2.67746E-01 ey = 0.001387Ultimate (Engineering) SU = 3.93001E-01 EU = 0.119515Ultimate Stress/Total Strain sut = 4.39971E-01 eut = 0.112895Effective Plastic Failure Strain epfs = 1.559000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9305E+02, 0.290, 5.6282E-01, 0.112895, 0.0, 0.0# sigy vp epfs0.0 0.0 1.5590==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1020 1 IN. BAR HOT ROLLED832 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 . . . 3.3095E-01 GPaEngineering ultimate stress. 4.4816E-01 GPaElongation at failure. . . . 36.000 %Reduction in area. . . . . . 59.000 %CTE. . . . . . . . . . . . . 1.5120E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 6.52578E-01 m = 0.120638Yield point sy = 2.98975E-01 ey = 0.001549Ultimate (Engineering) SU = 4.48159E-01 EU = 0.128216Ultimate Stress/Total Strain sut = 5.05621E-01 eut = 0.120638Effective Plastic Failure Strain epfs = 1.525000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9305E+02, 0.290, 6.5258E-01, 0.120638, 0.0, 0.0# sigy vp epfs0.0 0.0 1.5250==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1020 1 IN. BAR NORM833 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 . . . 3.4474E-01 GPaEngineering ultimate stress. 4.4126E-01 GPaElongation at failure. . . . 36.000 %Reduction in area. . . . . . 68.000 %CTE. . . . . . . . . . . . . 1.5120E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 6.20554E-01 m = 0.104698Yield point sy = 3.17143E-01 ey = 0.001643Ultimate (Engineering) SU = 4.41265E-01 EU = 0.110375Ultimate Stress/Total Strain sut = 4.89969E-01 eut = 0.104698Effective Plastic Failure Strain epfs = 1.614500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9305E+02, 0.290, 6.2055E-01, 0.104698, 0.0, 0.0# sigy vp epfs0.0 0.0 1.6145==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1020 1 IN. BAR COLD ROLLED834 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 . . . 4.4126E-01 GPaEngineering ultimate stress. 5.1711E-01 GPaElongation at failure. . . . 20.000 %CTE. . . . . . . . . . . . . 1.5120E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 6.84016E-01 m = 0.079081Yield point sy = 4.18847E-01 ey = 0.002025Ultimate (Engineering) SU = 5.17107E-01 EU = 0.082292Ultimate Stress/Total Strain sut = 5.59660E-01 eut = 0.079081Effective Plastic Failure Strain epfs = 0.826900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 6.8402E-01, 0.079081, 0.0, 0.0# sigy vp epfs0.0 0.0 0.8269==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1020 1 IN. BAR WQ+1200F835 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 . . . 3.2405E-01 GPaEngineering ultimate stress. 5.5158E-01 GPaElongation at failure. . . . 29.000 %Reduction in area. . . . . . 68.000 %CTE. . . . . . . . . . . . . 1.5120E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.00000E-01 m = 0.180550Yield point sy = 2.71615E-01 ey = 0.001313Ultimate (Engineering) SU = 5.51581E-01 EU = 0.197876Ultimate Stress/Total Strain sut = 6.60725E-01 eut = 0.180550Effective Plastic Failure Strain epfs = 0.599100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.0000E-01, 0.180550, 0.0, 0.0# sigy vp epfs0.0 0.0 0.5991==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1020 1 IN. BAR WQ+400F836 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 . . . 5.5158E-01 GPaEngineering ultimate stress. 7.2395E-01 GPaElongation at failure. . . . 11.000 %Reduction in area. . . . . . 40.000 %CTE. . . . . . . . . . . . . 1.5120E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.05092E+00 m = 0.119184Yield point sy = 5.14228E-01 ey = 0.002486Ultimate (Engineering) SU = 7.23950E-01 EU = 0.126578Ultimate Stress/Total Strain sut = 8.15585E-01 eut = 0.119184Effective Plastic Failure Strain epfs = 0.109400# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0509E+00, 0.119184, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1094==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1030 1 IN. BAR ANNEALED837 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.8961E+02 GPaShear Modulus. . . . . . . . 7.3491E+01 GPaBulk Modulus . . . . . . . . 1.5048E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 3.4474E-01 GPaEngineering ultimate stress. 4.6195E-01 GPaElongation at failure. . . . 31.000 %Reduction in area. . . . . . 58.000 %CTE. . . . . . . . . . . . . 1.4940E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 6.69639E-01 m = 0.118520Yield point sy = 3.13439E-01 ey = 0.001653Ultimate (Engineering) SU = 4.61949E-01 EU = 0.125829Ultimate Stress/Total Strain sut = 5.20076E-01 eut = 0.118520Effective Plastic Failure Strain epfs = 1.280900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.8961E+02, 0.290, 6.6964E-01, 0.118520, 0.0, 0.0# sigy vp epfs0.0 0.0 1.2809==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1030 1 IN. BAR HOT ROLLED838 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.8961E+02 GPaShear Modulus. . . . . . . . 7.3491E+01 GPaBulk Modulus . . . . . . . . 1.5048E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 3.4474E-01 GPaEngineering ultimate stress. 5.5158E-01 GPaElongation at failure. . . . 32.000 %Reduction in area. . . . . . 67.000 %CTE. . . . . . . . . . . . . 1.4940E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.79701E-01 m = 0.167506Yield point sy = 2.98408E-01 ey = 0.001574Ultimate (Engineering) SU = 5.51581E-01 EU = 0.182352Ultimate Stress/Total Strain sut = 6.52162E-01 eut = 0.167506Effective Plastic Failure Strain epfs = 1.009400# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.8961E+02, 0.290, 8.7970E-01, 0.167506, 0.0, 0.0# sigy vp epfs0.0 0.0 1.0094==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1030 1 IN. BAR NORM839 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.8961E+02 GPaShear Modulus. . . . . . . . 7.3491E+01 GPaBulk Modulus . . . . . . . . 1.5048E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 3.4474E-01 GPaEngineering ultimate stress. 5.2400E-01 GPaElongation at failure. . . . 32.000 %Reduction in area. . . . . . 61.000 %CTE. . . . . . . . . . . . . 1.4940E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.15021E-01 m = 0.153795Yield point sy = 3.02714E-01 ey = 0.001597Ultimate (Engineering) SU = 5.24002E-01 EU = 0.166251Ultimate Stress/Total Strain sut = 6.11118E-01 eut = 0.153795Effective Plastic Failure Strain epfs = 1.104800# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.8961E+02, 0.290, 8.1502E-01, 0.153795, 0.0, 0.0# sigy vp epfs0.0 0.0 1.1048==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1030 1 IN. BAR WQ+1200F840 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 . . . 4.4126E-01 GPaEngineering ultimate stress. 5.8605E-01 GPaElongation at failure. . . . 32.000 %Reduction in area. . . . . . 70.000 %CTE. . . . . . . . . . . . . 1.4940E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 8.49631E-01 m = 0.118569Yield point sy = 4.05707E-01 ey = 0.001961Ultimate (Engineering) SU = 5.86054E-01 EU = 0.125885Ultimate Stress/Total Strain sut = 6.59830E-01 eut = 0.118569Effective Plastic Failure Strain epfs = 1.387900# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 8.4963E-01, 0.118569, 0.0, 0.0# sigy vp epfs0.0 0.0 1.3879==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1030 1 IN. BAR WQ+400F841 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 . . . 6.4811E-01 GPaEngineering ultimate stress. 8.4806E-01 GPaElongation at failure. . . . 17.000 %Reduction in area. . . . . . 47.000 %CTE. . . . . . . . . . . . . 1.4940E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.23755E+00 m = 0.121662Yield point sy = 6.09027E-01 ey = 0.002944Ultimate (Engineering) SU = 8.48055E-01 EU = 0.129372Ultimate Stress/Total Strain sut = 9.57770E-01 eut = 0.121662Effective Plastic Failure Strain epfs = 0.282400# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.2376E+00, 0.121662, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2824==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1040 1 IN. BAR ANNEALED842 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9857E+02 GPaShear Modulus. . . . . . . . 7.6965E+01 GPaBulk Modulus . . . . . . . . 1.5759E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 3.5163E-01 GPaEngineering ultimate stress. 5.1711E-01 GPaElongation at failure. . . . 30.000 %Reduction in area. . . . . . 57.000 %CTE. . . . . . . . . . . . . 1.4940E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 7.89895E-01 m = 0.144303Yield point sy = 3.11014E-01 ey = 0.001566Ultimate (Engineering) SU = 5.17107E-01 EU = 0.155234Ultimate Stress/Total Strain sut = 5.97380E-01 eut = 0.144303Effective Plastic Failure Strain epfs = 1.007400# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9857E+02, 0.290, 7.8990E-01, 0.144303, 0.0, 0.0# sigy vp epfs0.0 0.0 1.0074==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1040 1 IN. BAR HOT ROLLED843 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9857E+02 GPaShear Modulus. . . . . . . . 7.6965E+01 GPaBulk Modulus . . . . . . . . 1.5759E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 4.1369E-01 GPaEngineering ultimate stress. 6.2053E-01 GPaElongation at failure. . . . 25.000 %Reduction in area. . . . . . 50.000 %CTE. . . . . . . . . . . . . 1.4940E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.63560E-01 m = 0.152911Yield point sy = 3.68267E-01 ey = 0.001855Ultimate (Engineering) SU = 6.20528E-01 EU = 0.165222Ultimate Stress/Total Strain sut = 7.23053E-01 eut = 0.152911Effective Plastic Failure Strain epfs = 0.556000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9857E+02, 0.290, 9.6356E-01, 0.152911, 0.0, 0.0# sigy vp epfs0.0 0.0 0.5560==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1040 1 IN. BAR WQ+1200F844 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9857E+02 GPaShear Modulus. . . . . . . . 7.6965E+01 GPaBulk Modulus . . . . . . . . 1.5759E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 4.9642E-01 GPaEngineering ultimate stress. 6.3432E-01 GPaElongation at failure. . . . 28.000 %Reduction in area. . . . . . 68.000 %CTE. . . . . . . . . . . . . 1.4940E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.01904E-01 m = 0.109619Yield point sy = 4.64231E-01 ey = 0.002338Ultimate (Engineering) SU = 6.34318E-01 EU = 0.115853Ultimate Stress/Total Strain sut = 7.07805E-01 eut = 0.109619Effective Plastic Failure Strain epfs = 1.223300# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9857E+02, 0.290, 9.0190E-01, 0.109619, 0.0, 0.0# sigy vp epfs0.0 0.0 1.2233==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1040 1 IN. BAR WQ+400F845 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9857E+02 GPaShear Modulus. . . . . . . . 7.6965E+01 GPaBulk Modulus . . . . . . . . 1.5759E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 6.6879E-01 GPaEngineering ultimate stress. 8.9632E-01 GPaElongation at failure. . . . 17.000 %Reduction in area. . . . . . 45.000 %CTE. . . . . . . . . . . . . 1.4940E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.33317E+00 m = 0.130878Yield point sy = 6.27562E-01 ey = 0.003160Ultimate (Engineering) SU = 8.96319E-01 EU = 0.139828Ultimate Stress/Total Strain sut = 1.02165E+00 eut = 0.130878Effective Plastic Failure Strain epfs = 0.243000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9857E+02, 0.290, 1.3332E+00, 0.130878, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2430==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1040 1 IN. BAR OQ+1200F846 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 . . . 4.3437E-01 GPaEngineering ultimate stress. 6.3432E-01 GPaElongation at failure. . . . 29.000 %Reduction in area. . . . . . 65.000 %CTE. . . . . . . . . . . . . 1.4940E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 9.71415E-01 m = 0.145625Yield point sy = 3.89552E-01 ey = 0.001883Ultimate (Engineering) SU = 6.34318E-01 EU = 0.156763Ultimate Stress/Total Strain sut = 7.33755E-01 eut = 0.145625Effective Plastic Failure Strain epfs = 0.997000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 9.7142E-01, 0.145625, 0.0, 0.0# sigy vp epfs0.0 0.0 0.9970==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1040 1 IN. BAR OQ+400F847 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 . . . 5.9295E-01 GPaEngineering ultimate stress. 7.7911E-01 GPaElongation at failure. . . . 19.000 %Reduction in area. . . . . . 48.000 %CTE. . . . . . . . . . . . . 1.4940E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.13541E+00 m = 0.121023Yield point sy = 5.54516E-01 ey = 0.002681Ultimate (Engineering) SU = 7.79108E-01 EU = 0.128650Ultimate Stress/Total Strain sut = 8.79340E-01 eut = 0.121023Effective Plastic Failure Strain epfs = 0.396500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.1354E+00, 0.121023, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3965==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1050 1 IN. BAR ANNEALED848 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. 6.3432E-01 GPaElongation at failure. . . . 24.000 %Reduction in area. . . . . . 40.000 %CTE. . . . . . . . . . . . . 1.4580E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.04956E+00 m = 0.188822Yield point sy = 3.09244E-01 ey = 0.001547Ultimate (Engineering) SU = 6.34318E-01 EU = 0.207826Ultimate Stress/Total Strain sut = 7.66146E-01 eut = 0.188822Effective Plastic Failure Strain epfs = 0.293000# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9995E+02, 0.290, 1.0496E+00, 0.188822, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2930==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1050 1 IN. BAR HOT ROLLED849 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 . . . 3.7921E-01 GPaEngineering ultimate stress. 7.2395E-01 GPaElongation at failure. . . . 20.000 %Reduction in area. . . . . . 40.000 %CTE. . . . . . . . . . . . . 1.4580E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.24676E+00 m = 0.213766Yield point sy = 3.13499E-01 ey = 0.001568Ultimate (Engineering) SU = 7.23950E-01 EU = 0.238333Ultimate Stress/Total Strain sut = 8.96491E-01 eut = 0.213766Effective Plastic Failure Strain epfs = 0.186100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9995E+02, 0.290, 1.2468E+00, 0.213766, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1861==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1050 1 IN. BAR WQ+1200F850 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 . . . 5.3779E-01 GPaEngineering ultimate stress. 7.1705E-01 GPaElongation at failure. . . . 28.000 %Reduction in area. . . . . . 65.000 %CTE. . . . . . . . . . . . . 1.4580E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.05041E+00 m = 0.123491Yield point sy = 4.99020E-01 ey = 0.002413Ultimate (Engineering) SU = 7.17055E-01 EU = 0.131440Ultimate Stress/Total Strain sut = 8.11305E-01 eut = 0.123491Effective Plastic Failure Strain epfs = 1.116600# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.0504E+00, 0.123491, 0.0, 0.0# sigy vp epfs0.0 0.0 1.1166==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1050 1 IN. BAR WQ+400F851 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 . . . 8.0669E-01 GPaEngineering ultimate stress. 1.1238E+00 GPaElongation at failure. . . . 9.000 %Reduction in area. . . . . . 27.000 %CTE. . . . . . . . . . . . . 1.4580E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.72522E+00 m = 0.146871Yield point sy = 7.56777E-01 ey = 0.003659Ultimate (Engineering) SU = 1.12385E+00 EU = 0.158205Ultimate Stress/Total Strain sut = 1.30164E+00 eut = 0.146871Effective Plastic Failure Strain epfs = 0.082700# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.7252E+00, 0.146871, 0.0, 0.0# sigy vp epfs0.0 0.0 0.0827==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1050 1 IN. BAR OQ+1200F852 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 . . . 4.4126E-01 GPaEngineering ultimate stress. 7.3084E-01 GPaElongation at failure. . . . 25.000 %Reduction in area. . . . . . 61.000 %CTE. . . . . . . . . . . . . 1.4580E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.19179E+00 m = 0.180202Yield point sy = 3.83656E-01 ey = 0.001855Ultimate (Engineering) SU = 7.30844E-01 EU = 0.197459Ultimate Stress/Total Strain sut = 8.75156E-01 eut = 0.180202Effective Plastic Failure Strain epfs = 0.378500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.1918E+00, 0.180202, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3785==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1050 1 IN. BAR OQ+600F853 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 . . . 7.2395E-01 GPaEngineering ultimate stress. 9.7906E-01 GPaElongation at failure. . . . 14.000 %Reduction in area. . . . . . 47.000 %CTE. . . . . . . . . . . . . 1.4580E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.46742E+00 m = 0.134669Yield point sy = 6.79357E-01 ey = 0.003284Ultimate (Engineering) SU = 9.79056E-01 EU = 0.144158Ultimate Stress/Total Strain sut = 1.12019E+00 eut = 0.134669Effective Plastic Failure Strain epfs = 0.142800# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.4674E+00, 0.134669, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1428==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1060 1 IN. BAR ANNEALED854 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. 6.2742E-01 GPaElongation at failure. . . . 22.000 %Reduction in area. . . . . . 38.000 %CTE. . . . . . . . . . . . . 1.4580E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.02559E+00 m = 0.181600Yield point sy = 3.18304E-01 ey = 0.001592Ultimate (Engineering) SU = 6.27423E-01 EU = 0.199135Ultimate Stress/Total Strain sut = 7.52365E-01 eut = 0.181600Effective Plastic Failure Strain epfs = 0.249100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9995E+02, 0.290, 1.0256E+00, 0.181600, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2491==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1060 1 IN. HOT ROLLED855 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 . . . 4.8263E-01 GPaEngineering ultimate stress. 8.1358E-01 GPaElongation at failure. . . . 17.000 %Reduction in area. . . . . . 34.000 %CTE. . . . . . . . . . . . . 1.4580E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.34436E+00 m = 0.188013Yield point sy = 4.22185E-01 ey = 0.002111Ultimate (Engineering) SU = 8.13581E-01 EU = 0.206850Ultimate Stress/Total Strain sut = 9.81870E-01 eut = 0.188013Effective Plastic Failure Strain epfs = 0.159600# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9995E+02, 0.290, 1.3444E+00, 0.188013, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1596==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1060 1 IN. BAR OQ+1200F856 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 . . . 5.2400E-01 GPaEngineering ultimate stress. 7.9979E-01 GPaElongation at failure. . . . 23.000 %Reduction in area. . . . . . 54.000 %CTE. . . . . . . . . . . . . 1.4580E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.26337E+00 m = 0.162177Yield point sy = 4.70920E-01 ey = 0.002277Ultimate (Engineering) SU = 7.99792E-01 EU = 0.176068Ultimate Stress/Total Strain sut = 9.40610E-01 eut = 0.162177Effective Plastic Failure Strain epfs = 0.378400# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.2634E+00, 0.162177, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3784==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1060 1 IN. BAR OQ+400F857 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 . . . 7.7911E-01 GPaEngineering ultimate stress. 1.1032E+00 GPaElongation at failure. . . . 13.000 %Reduction in area. . . . . . 40.000 %CTE. . . . . . . . . . . . . 1.4580E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.70640E+00 m = 0.150865Yield point sy = 7.27608E-01 ey = 0.003518Ultimate (Engineering) SU = 1.10316E+00 EU = 0.162840Ultimate Stress/Total Strain sut = 1.28280E+00 eut = 0.150865Effective Plastic Failure Strain epfs = 0.122500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 2.0684E+02, 0.290, 1.7064E+00, 0.150865, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1225==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1095 1 IN. BAR ANNEALED858 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9926E+02 GPaShear Modulus. . . . . . . . 7.7232E+01 GPaBulk Modulus . . . . . . . . 1.5814E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 3.7921E-01 GPaEngineering ultimate stress. 6.5500E-01 GPaElongation at failure. . . . 13.000 %Reduction in area. . . . . . 21.000 %CTE. . . . . . . . . . . . . 1.3320E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.08316E+00 m = 0.188476Yield point sy = 3.22637E-01 ey = 0.001619Ultimate (Engineering) SU = 6.55002E-01 EU = 0.207408Ultimate Stress/Total Strain sut = 7.90854E-01 eut = 0.188476Effective Plastic Failure Strain epfs = 0.121600# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9926E+02, 0.290, 1.0832E+00, 0.188476, 0.0, 0.0# sigy vp epfs0.0 0.0 0.1216==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1095 1 IN. BAR HOT ROLLED859 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9926E+02 GPaShear Modulus. . . . . . . . 7.7232E+01 GPaBulk Modulus . . . . . . . . 1.5814E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 5.7226E-01 GPaEngineering ultimate stress. 9.6527E-01 GPaElongation at failure. . . . 9.000 %Reduction in area. . . . . . 18.000 %CTE. . . . . . . . . . . . . 1.3320E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.60853E+00 m = 0.193106Yield point sy = 5.07617E-01 ey = 0.002548Ultimate (Engineering) SU = 9.65266E-01 EU = 0.213011Ultimate Stress/Total Strain sut = 1.17088E+00 eut = 0.193106Effective Plastic Failure Strain epfs = 0.082500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9926E+02, 0.290, 1.6085E+00, 0.193106, 0.0, 0.0# sigy vp epfs0.0 0.0 0.0825==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1095 1 IN. BAR WQ+1200F860 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9926E+02 GPaShear Modulus. . . . . . . . 7.7232E+01 GPaBulk Modulus . . . . . . . . 1.5814E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 5.8605E-01 GPaEngineering ultimate stress. 8.4116E-01 GPaElongation at failure. . . . 20.000 %Reduction in area. . . . . . 47.000 %CTE. . . . . . . . . . . . . 1.3320E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.29474E+00 m = 0.148274Yield point sy = 5.38783E-01 ey = 0.002704Ultimate (Engineering) SU = 8.41160E-01 EU = 0.159831Ultimate Stress/Total Strain sut = 9.75604E-01 eut = 0.148274Effective Plastic Failure Strain epfs = 0.301100# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9926E+02, 0.290, 1.2947E+00, 0.148274, 0.0, 0.0# sigy vp epfs0.0 0.0 0.3011==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1095 1 IN. BAR WQ+400F861 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9926E+02 GPaShear Modulus. . . . . . . . 7.7232E+01 GPaBulk Modulus . . . . . . . . 1.5814E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 1.0480E+00 GPaEngineering ultimate stress. 1.4893E+00 GPaElongation at failure. . . . 10.000 %Reduction in area. . . . . . 31.000 %CTE. . . . . . . . . . . . . 1.3320E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.35520E+00 m = 0.162811Yield point sy = 9.93577E-01 ey = 0.004986Ultimate (Engineering) SU = 1.48927E+00 EU = 0.176814Ultimate Stress/Total Strain sut = 1.75259E+00 eut = 0.162811Effective Plastic Failure Strain epfs = 0.089500# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9926E+02, 0.290, 2.3552E+00, 0.162811, 0.0, 0.0# sigy vp epfs0.0 0.0 0.0895==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1095 1 IN. BAR OQ+1200F862 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9926E+02 GPaShear Modulus. . . . . . . . 7.7232E+01 GPaBulk Modulus . . . . . . . . 1.5814E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 5.5158E-01 GPaEngineering ultimate stress. 8.9632E-01 GPaElongation at failure. . . . 21.000 %Reduction in area. . . . . . 47.000 %CTE. . . . . . . . . . . . . 1.3320E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 1.46576E+00 m = 0.181853Yield point sy = 4.91894E-01 ey = 0.002469Ultimate (Engineering) SU = 8.96319E-01 EU = 0.199438Ultimate Stress/Total Strain sut = 1.07508E+00 eut = 0.181853Effective Plastic Failure Strain epfs = 0.223200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9926E+02, 0.290, 1.4658E+00, 0.181853, 0.0, 0.0# sigy vp epfs0.0 0.0 0.2232==================================================================*MAT_POWER_LAW_PLASTICITYSTEEL WROUGHT 1095 1 IN. BAR OQ+400F863 Power Law Plasticity (MAT_018)GM Units (kg, mm, ms, KN, GPa, KN-mm)Material density . . . . . . 7.8334E-06 Kg/mm^3Young's Modulus. . . . . . . 1.9926E+02 GPaShear Modulus. . . . . . . . 7.7232E+01 GPaBulk Modulus . . . . . . . . 1.5814E+02 GPaPoisson's ratio. . . . . . . 0.2900Yield stress at offset . . . 8.2737E-01 GPaEngineering ultimate stress. 1.2893E+00 GPaElongation at failure. . . . 10.000 %Reduction in area. . . . . . 30.000 %CTE. . . . . . . . . . . . . 1.3320E-11 1/CYield offset . . . . . . . . 0.2000 %------------------ Calculated values -----------------------Strain Hardening equation s = s0 * e^mEquation constants s0 = 2.11157E+00 m = 0.182724Yield point sy = 7.63979E-01 ey = 0.003834Ultimate (Engineering) SU = 1.28932E+00 EU = 0.200483Ultimate Stress/Total Strain sut = 1.54781E+00 eut = 0.182724Effective Plastic Failure Strain epfs = 0.090200# MID RHO E PR K N src srpKg/mm^3 GPa GPaxx, 7.8334E-06, 1.9926E+02, 0.290, 2.1116E+00, 0.182724, 0.0, 0.0# sigy vp epfs0.0 0.0 0.0902==================================================================
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