semi-separate handling of damage
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@ -1009,16 +1009,12 @@ module function phase_mechanical_constitutive(dt,co,ip,el) result(converged_)
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subLi0 = phase_mechanical_Li0(ph)%data(1:3,1:3,en)
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subLi0 = phase_mechanical_Li0(ph)%data(1:3,1:3,en)
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subLp0 = phase_mechanical_Lp0(ph)%data(1:3,1:3,en)
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subLp0 = phase_mechanical_Lp0(ph)%data(1:3,1:3,en)
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subState0 = plasticState(ph)%State0(:,en)
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subState0 = plasticState(ph)%State0(:,en)
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if (damageState(ph)%sizeState > 0) &
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damageState(ph)%subState0(:,en) = damageState(ph)%state0(:,en)
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subFp0 = phase_mechanical_Fp0(ph)%data(1:3,1:3,en)
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subFp0 = phase_mechanical_Fp0(ph)%data(1:3,1:3,en)
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subFi0 = phase_mechanical_Fi0(ph)%data(1:3,1:3,en)
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subFi0 = phase_mechanical_Fi0(ph)%data(1:3,1:3,en)
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subF0 = phase_mechanical_F0(ph)%data(1:3,1:3,en)
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subF0 = phase_mechanical_F0(ph)%data(1:3,1:3,en)
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subFrac = 0.0_pReal
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subFrac = 0.0_pReal
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subStep = 1.0_pReal/num%subStepSizeCryst
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todo = .true.
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todo = .true.
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subStep = 1.0_pReal/num%subStepSizeCryst
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converged_ = .false. ! pretend failed step of 1/subStepSizeCryst
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converged_ = .false. ! pretend failed step of 1/subStepSizeCryst
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todo = .true.
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todo = .true.
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@ -1038,9 +1034,6 @@ module function phase_mechanical_constitutive(dt,co,ip,el) result(converged_)
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subFp0 = phase_mechanical_Fp(ph)%data(1:3,1:3,en)
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subFp0 = phase_mechanical_Fp(ph)%data(1:3,1:3,en)
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subFi0 = phase_mechanical_Fi(ph)%data(1:3,1:3,en)
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subFi0 = phase_mechanical_Fi(ph)%data(1:3,1:3,en)
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subState0 = plasticState(ph)%state(:,en)
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subState0 = plasticState(ph)%state(:,en)
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if (damageState(ph)%sizeState > 0) &
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damageState(ph)%subState0(:,en) = damageState(ph)%state(:,en)
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endif
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endif
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!--------------------------------------------------------------------------------------------------
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!--------------------------------------------------------------------------------------------------
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! cut back (reduced time and restore)
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! cut back (reduced time and restore)
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@ -1054,9 +1047,6 @@ module function phase_mechanical_constitutive(dt,co,ip,el) result(converged_)
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phase_mechanical_Li(ph)%data(1:3,1:3,en) = subLi0
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phase_mechanical_Li(ph)%data(1:3,1:3,en) = subLi0
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endif
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endif
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plasticState(ph)%state(:,en) = subState0
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plasticState(ph)%state(:,en) = subState0
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if (damageState(ph)%sizeState > 0) &
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damageState(ph)%state(:,en) = damageState(ph)%subState0(:,en)
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todo = subStep > num%subStepMinCryst ! still on track or already done (beyond repair)
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todo = subStep > num%subStepMinCryst ! still on track or already done (beyond repair)
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endif
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endif
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@ -1066,11 +1056,13 @@ module function phase_mechanical_constitutive(dt,co,ip,el) result(converged_)
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subF = subF0 &
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subF = subF0 &
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+ subStep * (phase_mechanical_F(ph)%data(1:3,1:3,en) - phase_mechanical_F0(ph)%data(1:3,1:3,en))
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+ subStep * (phase_mechanical_F(ph)%data(1:3,1:3,en) - phase_mechanical_F0(ph)%data(1:3,1:3,en))
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converged_ = .not. integrateState(subF0,subF,subFp0,subFi0,subState0(1:sizeDotState),subStep * dt,co,ip,el)
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converged_ = .not. integrateState(subF0,subF,subFp0,subFi0,subState0(1:sizeDotState),subStep * dt,co,ip,el)
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converged_ = converged_ .and. .not. integrateDamageState(subStep * dt,co,(el-1)*discretization_nIPs + ip)
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endif
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endif
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enddo cutbackLooping
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enddo cutbackLooping
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if (damageState(ph)%sizeState > 0) damageState(ph)%subState0(:,en) = damageState(ph)%state0(:,en)
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converged_ = converged_ .and. .not. integrateDamageState(dt,co,(el-1)*discretization_nIPs + ip)
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end function phase_mechanical_constitutive
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end function phase_mechanical_constitutive
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