零
概述
        开发了适用于静力通用计算的三维二十节点(C3D20)的用户自定义单元,在挖孔悬臂梁受剪切荷载算例中,位移计算结果与ABAQUS自带单元保持一致。对比刚度矩阵,与abaqus保持一致。
帖子分为两部分
->理论部分-C3D20 UEL用户自定义单元开发(1)结果部分-C3D20 UEL用户自定义单元开发(2)
壹
二理论与程序设计
      C3D20单元节点排布示意图
    形函数为
    求解刚度矩阵主程序
subroutine KKmartix(KK,coords,DMatx,mcrd,nnode,jelem)INCLUDE 'ABA_PARAM.INC'double precision coords(mcrd,nnode),dmatx(6,6)double precision integerpoint(1,3),wgt(1,3)double precision KK(3*nnode,3*nnode)double precision B(6,3*NNODE),J(3,3)double precision detJ,kesai,eta,zeta,Coffdouble precision npxy(3,NNODE)!积分点,二阶单元,设置三个积分点integerpoint(1,1)= 0.D0integerpoint(1,2)= 0.7745966692D0integerpoint(1,3)=-0.7745966692D0!积分权重wgt(1,1)=0.8888888889D0wgt(1,2)=0.5555555556D0wgt(1,3)=0.5555555556D0B=0.d0J=0.d0detJ=0.d0kesai=0.d0eta=0.d0zeta=0.d0Coff=0.d0npxy=0.d0do i=1,3do ii=1,3do iii=1,3kesai=integerpoint(1,i)eta =integerpoint(1,ii)zeta =integerpoint(1,iii)call Shapefunction(npxy,detj,kesai,eta,zeta,1 coords,mcrd,nnode,J)call CalBmartix(B,npxy)write(6,*)"kk-detj=",detjCOFF=detJ*wgt(1,i)*wgt(1,ii)*wgt(1,iii)KK=KK+matmul(matmul(transpose(B),DMatx),B)*COFFenddoenddoenddoreturnend
形函数对物理坐标(x、y、z)的导数
subroutine Shapefunction(npxy,detj,kesai,eta,zeta,1 coords,mcrd,nnode,J)INCLUDE 'ABA_PARAM.INC'integer mcrd,nnodedouble precision kesai,eta,zeta,detJdouble precision coords(mcrd,nnode),npxy(3,nnode)double precision J(3,3),NPGHR(3,nnode)double precision invJ(3,3)j=0.d0jj=0.d0invJ=0.d0call CalNpLocalCoord(NPGHR,kesai,eta,zeta)J=matmul(NPGHR,transpose(coords))Call CaldetJ(detJ,J)call CalInvjocabin(invJ,detj,j)npxy=matmul(invJ,NPGHR)returnend
B矩阵
subroutine CalBmartix(B,npxy)INCLUDE 'ABA_PARAM.INC'double precision npxy(3,20),B(6,60)B=0.d0do i=1,20B(1,3*i-2)=npxy(1,i)B(2,3*i-1)=npxy(2,i)B(3,3*i)=npxy(3,i)B(4,3*i-2)=npxy(2,i)B(4,3*i-1)=npxy(1,i)B(5,3*i-1)=npxy(3,i)B(5,3*i)=npxy(2,i)B(6,3*i-2)=npxy(3,i)B(6,3*i)=npxy(1,i)enddoreturnend
形函数对局部坐标(G、H、R)的导数
SUBROUTINE CalNpLocalCoord(NPGHR,KESAI,ETA,ZETA)INCLUDE 'ABA_PARAM.INC'DOUBLE PRECISION NPGHR(3,20)DOUBLE PRECISION KESAI,ETA,ZETADOUBLE PRECISION PG,PH,PRDO i=1,20CALL NPG(PG,KESAI,ETA,ZETA,I)CALL NPH(PH,KESAI,ETA,ZETA,I)CALL NPR(PR,KESAI,ETA,ZETA,I)NPGHR(1,i)=PGNPGHR(2,i)=PHNPGHR(3,i)=PRENDDORETURNEND-------------------------!形函数对局部坐标G的导数SUBROUTINE NPG(PG,G,H,R,NINDEX)DOUBLE PRECISION G,H,R,PGINTEGER NINDEXIF (NINDEX.EQ.1)THENPG=-0.125*( -1)*(1-H)*(1-R)*(2+G+H+R)1 -0.125*(1-G)*(1-H)*(1-R)*( 1)ELSEIF(NINDEX.EQ.2)THENPG=-0.125*( 1)*(1-H)*(1-R)*(2-G+H+R)1 -0.125*(1+G)*(1-H)*(1-R)*( -1)ELSEIF(NINDEX.EQ.3)THENPG=-0.125*( 1)*(1+H)*(1-R)*(2-G-H+R)1 -0.125*(1+G)*(1+H)*(1-R)*( -1)ELSEIF(NINDEX.EQ.4)THENPG=-0.125*( -1)*(1+H)*(1-R)*(2+G-H+R)1 -0.125*(1-G)*(1+H)*(1-R)*( 1)ELSEIF(NINDEX.EQ.5)THENPG=-0.125*( -1)*(1-H)*(1+R)*(2+G+H-R)1 -0.125*(1-G)*(1-H)*(1+R)*( 1)ELSEIF(NINDEX.EQ.6)THENPG=-0.125*( 1)*(1-H)*(1+R)*(2-G+H-R)1 -0.125*(1+G)*(1-H)*(1+R)*( -1)ELSEIF(NINDEX.EQ.7)THENPG=-0.125*( 1)*(1+H)*(1+R)*(2-G-H-R)1 -0.125*(1+G)*(1+H)*(1+R)*( -1)ELSEIF(NINDEX.EQ.8)THENPG=-0.125*( -1)*(1+H)*(1+R)*(2+G-H-R)1 -0.125*(1-G)*(1+H)*(1+R)*( 1)ELSEIF(NINDEX.EQ.9)THENPG=0.25*( -1)*(1+G)*(1-H)*(1-R)1 +0.25*(1-G)*( 1)*(1-H)*(1-R)ELSEIF(NINDEX.EQ.10)THENPG=0.25*(1-H)*(1+H)*( 1)*(1-R)ELSEIF(NINDEX.EQ.11)THENPG=0.25*( -1)*(1+G)*(1+H)*(1-R)1 +0.25*(1-G)*( 1)*(1+H)*(1-R)ELSEIF(NINDEX.EQ.12)THENPG=0.25*(1-H)*(1+H)*(-1)*(1-R)ELSEIF(NINDEX.EQ.13)THENPG=0.25*( -1)*(1+G)*(1-H)*(1+R)1 +0.25*(1-G)*( 1)*(1-H)*(1+R)ELSEIF(NINDEX.EQ.14)THENPG=0.25*(1-H)*(1+H)*( 1)*(1+R)ELSEIF(NINDEX.EQ.15)THENPG=0.25*( -1)*(1+G)*(1+H)*(1+R)1 +0.25*(1-G)*( 1)*(1+H)*(1+R)ELSEIF(NINDEX.EQ.16)THENPG=0.25*(1-H)*(1+H)*(-1)*(1+R)ELSEIF(NINDEX.EQ.17)THENPG=0.25*(1-R)*(1+R)*(-1)*(1-H)ELSEIF(NINDEX.EQ.18)THENPG=0.25*(1-R)*(1+R)*( 1)*(1-H)ELSEIF(NINDEX.EQ.19)THENPG=0.25*(1-R)*(1+R)*( 1)*(1+H)ELSEIF(NINDEX.EQ.20)THENPG=0.25*(1-R)*(1+R)*(-1)*(1+H)ENDIFRETURNEND!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!形函数对局部坐标H的导数SUBROUTINE NPH(PH,G,H,R,NINDEX)DOUBLE PRECISION G,H,R,PHINTEGER NINDEXIF (NINDEX.EQ.1)THENPH=-0.125*(1-G)*( -1)*(1-R)*(2+G+H+R)1 -0.125*(1-G)*(1-H)*(1-R)*( 1 )ELSEIF(NINDEX.EQ.2)THENPH=-0.125*(1+G)*( -1)*(1-R)*(2-G+H+R)1 -0.125*(1+G)*(1-H)*(1-R)*( 1 )ELSEIF(NINDEX.EQ.3)THENPH=-0.125*(1+G)*( 1)*(1-R)*(2-G-H+R)1 -0.125*(1+G)*(1+H)*(1-R)*( -1 )ELSEIF(NINDEX.EQ.4)THENPH=-0.125*(1-G)*( 1)*(1-R)*(2+G-H+R)1 -0.125*(1-G)*(1+H)*(1-R)*( -1 )ELSEIF(NINDEX.EQ.5)THENPH=-0.125*(1-G)*( -1)*(1+R)*(2+G+H-R)1 -0.125*(1-G)*(1-H)*(1+R)*( 1 )ELSEIF(NINDEX.EQ.6)THENPH=-0.125*(1+G)*( -1)*(1+R)*(2-G+H-R)1 -0.125*(1+G)*(1-H)*(1+R)*( 1 )ELSEIF(NINDEX.EQ.7)THENPH=-0.125*(1+G)*( 1)*(1+R)*(2-G-H-R)1 -0.125*(1+G)*(1+H)*(1+R)*( -1 )ELSEIF(NINDEX.EQ.8)THENPH=-0.125*(1-G)*( 1)*(1+R)*(2+G-H-R)1 -0.125*(1-G)*(1+H)*(1+R)*( -1 )ELSEIF(NINDEX.EQ.9)THENPH=0.25*(1-G)*(1+G)*(-1)*(1-R)ELSEIF(NINDEX.EQ.10)THENPH=0.25*( -1)*(1+H)*(1+G)*(1-R)1 +0.25*(1-H)*( 1)*(1+G)*(1-R)ELSEIF(NINDEX.EQ.11)THENPH=0.25*(1-G)*(1+G)*( 1)*(1-R)ELSEIF(NINDEX.EQ.12)THENPH=0.25*( -1)*(1+H)*(1-G)*(1-R)1 +0.25*(1-H)*( 1)*(1-G)*(1-R)ELSEIF(NINDEX.EQ.13)THENPH=0.25*(1-G)*(1+G)*(-1)*(1+R)ELSEIF(NINDEX.EQ.14)THENPH=0.25*( -1)*(1+H)*(1+G)*(1+R)1 +0.25*(1-H)*( 1)*(1+G)*(1+R)ELSEIF(NINDEX.EQ.15)THENPH=0.25*(1-G)*(1+G)*( 1)*(1+R)ELSEIF(NINDEX.EQ.16)THENPH=0.25*( -1)*(1+H)*(1-G)*(1+R)1 +0.25*(1-H)*( 1)*(1-G)*(1+R)ELSEIF(NINDEX.EQ.17)THENPH=0.25*(1-R)*(1+R)*(1-G)*(-1)ELSEIF(NINDEX.EQ.18)THENPH=0.25*(1-R)*(1+R)*(1+G)*(-1)ELSEIF(NINDEX.EQ.19)THENPH=0.25*(1-R)*(1+R)*(1+G)*( 1)ELSEIF(NINDEX.EQ.20)THENPH=0.25*(1-R)*(1+R)*(1-G)*( 1)ENDIFRETURNEND!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!形函数对局部坐标R的导数SUBROUTINE NPR(PR,G,H,R,NINDEX)DOUBLE PRECISION G,H,R,PRINTEGER NINDEXIF (NINDEX.EQ.1)THENPR=-0.125*(1-G)*(1-H)*( -1)*(2+G+H+R)1 -0.125*(1-G)*(1-H)*(1-R)*( 1)ELSEIF(NINDEX.EQ.2)THENPR=-0.125*(1+G)*(1-H)*( -1)*(2-G+H+R)1 -0.125*(1+G)*(1-H)*(1-R)*( 1)ELSEIF(NINDEX.EQ.3)THENPR=-0.125*(1+G)*(1+H)*( -1)*(2-G-H+R)1 -0.125*(1+G)*(1+H)*(1-R)*( 1)ELSEIF(NINDEX.EQ.4)THENPR=-0.125*(1-G)*(1+H)*( -1)*(2+G-H+R)1 -0.125*(1-G)*(1+H)*(1-R)*( 1)ELSEIF(NINDEX.EQ.5)THENPR=-0.125*(1-G)*(1-H)*( 1)*(2+G+H-R)1 -0.125*(1-G)*(1-H)*(1+R)*( -1)ELSEIF(NINDEX.EQ.6)THENPR=-0.125*(1+G)*(1-H)*( 1)*(2-G+H-R)1 -0.125*(1+G)*(1-H)*(1+R)*( -1)ELSEIF(NINDEX.EQ.7)THENPR=-0.125*(1+G)*(1+H)*( 1)*(2-G-H-R)1 -0.125*(1+G)*(1+H)*(1+R)*( -1)ELSEIF(NINDEX.EQ.8)THENPR=-0.125*(1-G)*(1+H)*( 1)*(2+G-H-R)1 -0.125*(1-G)*(1+H)*(1+R)*( -1)ELSEIF(NINDEX.EQ.9)THENPR=0.25*(1-G)*(1+G)*(1-H)*(-1)ELSEIF(NINDEX.EQ.10)THENPR=0.25*(1-H)*(1+H)*(1+G)*(-1)ELSEIF(NINDEX.EQ.11)THENPR=0.25*(1-G)*(1+G)*(1+H)*(-1)ELSEIF(NINDEX.EQ.12)THENPR=0.25*(1-H)*(1+H)*(1-G)*(-1)ELSEIF(NINDEX.EQ.13)THENPR=0.25*(1-G)*(1+G)*(1-H)*( 1)ELSEIF(NINDEX.EQ.14)THENPR=0.25*(1-H)*(1+H)*(1+G)*( 1)ELSEIF(NINDEX.EQ.15)THENPR=0.25*(1-G)*(1+G)*(1+H)*( 1)ELSEIF(NINDEX.EQ.16)THENPR=0.25*(1-H)*(1+H)*(1-G)*( 1)ELSEIF(NINDEX.EQ.17)THENPR=0.25*( -1)*(1+R)*(1-G)*(1-H)1 +0.25*(1-R)*( 1)*(1-G)*(1-H)ELSEIF(NINDEX.EQ.18)THENPR=0.25*( -1)*(1+R)*(1+G)*(1-H)1 +0.25*(1-R)*( 1)*(1+G)*(1-H)ELSEIF(NINDEX.EQ.19)THENPR=0.25*( -1)*(1+R)*(1+G)*(1+H)1 +0.25*(1-R)*( 1)*(1+G)*(1+H)ELSEIF(NINDEX.EQ.20)THENPR=0.25*( -1)*(1+R)*(1-G)*(1+H)1 +0.25*(1-R)*( 1)*(1-G)*(1+H)ENDIFRETURNEND