dependentState is more descriptive than microstructure
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@ -384,7 +384,9 @@ subroutine constitutive_microstructure(orientations, Fe, Fp, ipc, ip, el)
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use prec, only: &
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pReal
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use material, only: &
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phasememberAt, &
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phase_plasticity, &
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phase_plasticityInstance, &
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material_phase, &
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material_homogenizationAt, &
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temperature, &
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@ -396,8 +398,8 @@ subroutine constitutive_microstructure(orientations, Fe, Fp, ipc, ip, el)
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plastic_nonlocal_microstructure
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use plastic_dislotwin, only: &
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plastic_dislotwin_microstructure
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use plastic_disloucla, only: &
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plastic_disloucla_microstructure
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use plastic_disloUCLA, only: &
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plastic_disloUCLA_dependentState
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implicit none
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integer(pInt), intent(in) :: &
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@ -409,7 +411,8 @@ subroutine constitutive_microstructure(orientations, Fe, Fp, ipc, ip, el)
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Fp !< plastic deformation gradient
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integer(pInt) :: &
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ho, & !< homogenization
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tme !< thermal member position
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tme, & !< thermal member position
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instance, of
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real(pReal), intent(in), dimension(:,:,:,:) :: &
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orientations !< crystal orientations as quaternions
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@ -420,7 +423,9 @@ subroutine constitutive_microstructure(orientations, Fe, Fp, ipc, ip, el)
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case (PLASTICITY_DISLOTWIN_ID) plasticityType
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call plastic_dislotwin_microstructure(temperature(ho)%p(tme),ipc,ip,el)
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case (PLASTICITY_DISLOUCLA_ID) plasticityType
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call plastic_disloucla_microstructure(temperature(ho)%p(tme),ipc,ip,el)
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of = phasememberAt(ipc,ip,el)
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instance = phase_plasticityInstance(material_phase(ipc,ip,el))
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call plastic_disloUCLA_dependentState(temperature(ho)%p(tme),instance,of)
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case (PLASTICITY_NONLOCAL_ID) plasticityType
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call plastic_nonlocal_microstructure (Fe,Fp,ip,el)
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end select plasticityType
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@ -112,7 +112,7 @@ module plastic_disloUCLA
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public :: &
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plastic_disloUCLA_init, &
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plastic_disloUCLA_microstructure, &
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plastic_disloUCLA_dependentState, &
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plastic_disloUCLA_LpAndItsTangent, &
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plastic_disloUCLA_dotState, &
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plastic_disloUCLA_postResults
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@ -436,30 +436,18 @@ end subroutine plastic_disloUCLA_init
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!--------------------------------------------------------------------------------------------------
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!> @brief calculates derived quantities from state
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!--------------------------------------------------------------------------------------------------
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subroutine plastic_disloUCLA_microstructure(temperature,ipc,ip,el)
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use material, only: &
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phase_plasticityInstance, &
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phaseAt, phasememberAt, &
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material_phase
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subroutine plastic_disloUCLA_dependentState(temperature,instance,of)
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implicit none
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integer(pInt), intent(in) :: &
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ipc, & !< component-ID of integration point
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ip, & !< integration point
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el !< element
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integer(pInt), intent(in) :: instance, of
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real(pReal), intent(in) :: &
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temperature !< temperature at IP
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integer(pInt) :: &
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instance, &
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s, &
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of
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real(pReal), dimension(plastic_disloUCLA_totalNslip(phase_plasticityInstance(material_phase(ipc,ip,el)))) :: &
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s
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real(pReal), dimension(param(instance)%totalNslip) :: &
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invLambdaSlip ! 1/mean free distance between 2 forest dislocations seen by a moving dislocation
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of = phasememberAt(ipc,ip,el)
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instance = phase_plasticityInstance(phaseAt(ipc,ip,el))
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associate(prm => param(instance), stt => state(instance),mse => microstructure(instance))
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forall (s = 1_pInt:prm%totalNslip) &
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@ -476,7 +464,7 @@ subroutine plastic_disloUCLA_microstructure(temperature,ipc,ip,el)
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end associate
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end subroutine plastic_disloUCLA_microstructure
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end subroutine plastic_disloUCLA_dependentState
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!--------------------------------------------------------------------------------------------------
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