adjusting to phenopowerlaw
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2fd348f251
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@ -197,6 +197,7 @@ subroutine plastic_dislotwin_init(fileUnit)
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compiler_options
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#endif
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use prec, only: &
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pStringLen, &
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dEq0, &
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dNeq0, &
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dNeq
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@ -237,13 +238,12 @@ subroutine plastic_dislotwin_init(fileUnit)
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implicit none
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integer(pInt), intent(in) :: fileUnit
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integer(pInt) :: Ninstances,&
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integer(pInt) :: Ninstance,&
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f,j,i,k,l,m,n,o,p,q,r,s,p1, &
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offset_slip, index_myFamily, index_otherFamily, &
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startIndex, endIndex, outputSize
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integer(pInt) :: sizeState, sizeDotState, sizeDeltaState
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integer(pInt) :: NofMyPhase
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integer(kind(undefined_ID)) outputID
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integer(pInt) :: NipcMyPhase
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real(pReal), dimension(3,3,3,3) :: &
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temp3333
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@ -258,15 +258,10 @@ subroutine plastic_dislotwin_init(fileUnit)
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MartensiteVolume0
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real(pReal), allocatable, dimension(:,:) :: temp1,temp2,temp3
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character(len=65536) :: &
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tag = ''
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character(len=65536), dimension(:), allocatable :: outputs
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integer(pInt), dimension(0), parameter :: emptyInt = [integer(pInt)::]
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real(pReal), dimension(0), parameter :: emptyReal = [real(pReal)::]
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character(len=65536), dimension(0), parameter :: emptyString = [character(len=65536)::]
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integer(pInt), dimension(0), parameter :: emptyIntArray = [integer(pInt)::]
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real(pReal), dimension(0), parameter :: emptyRealArray = [real(pReal)::]
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character(len=65536), dimension(0), parameter :: emptyStringArray = [character(len=65536)::]
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type(tParameters) :: &
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prm
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@ -275,6 +270,16 @@ subroutine plastic_dislotwin_init(fileUnit)
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dot
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type(tDislotwinMicrostructure) :: &
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mse
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integer(kind(undefined_ID)) :: &
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outputID !< ID of each post result output
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character(len=pStringLen) :: &
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structure = '',&
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extmsg = ''
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character(len=65536), dimension(:), allocatable :: &
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outputs
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write(6,'(/,a)') ' <<<+- constitutive_'//PLASTICITY_DISLOTWIN_label//' init -+>>>'
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write(6,'(/,a)') ' A. Ma and F. Roters, Acta Materialia, 52(12):3603–3612, 2004'
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write(6,'(a)') ' https://doi.org/10.1016/j.actamat.2004.04.012'
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@ -285,21 +290,21 @@ subroutine plastic_dislotwin_init(fileUnit)
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write(6,'(a15,a)') ' Current time: ',IO_timeStamp()
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#include "compilation_info.f90"
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Ninstances = int(count(phase_plasticity == PLASTICITY_DISLOTWIN_ID),pInt)
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if (Ninstances == 0_pInt) return
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Ninstance = int(count(phase_plasticity == PLASTICITY_DISLOTWIN_ID),pInt)
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if (Ninstance == 0_pInt) return
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if (iand(debug_level(debug_constitutive),debug_levelBasic) /= 0_pInt) &
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write(6,'(a16,1x,i5,/)') '# instances:',Ninstances
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write(6,'(a16,1x,i5,/)') '# instances:',Ninstance
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allocate(plastic_dislotwin_sizePostResult(maxval(phase_Noutput),Ninstances),source=0_pInt)
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allocate(plastic_dislotwin_output(maxval(phase_Noutput),Ninstances))
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allocate(plastic_dislotwin_sizePostResult(maxval(phase_Noutput),Ninstance),source=0_pInt)
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allocate(plastic_dislotwin_output(maxval(phase_Noutput),Ninstance))
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plastic_dislotwin_output = ''
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allocate(param(Ninstances))
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allocate(state(Ninstances))
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allocate(dotState(Ninstances))
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allocate(microstructure(Ninstances))
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allocate(param(Ninstance))
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allocate(state(Ninstance))
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allocate(dotState(Ninstance))
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allocate(microstructure(Ninstance))
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do p = 1_pInt, size(phase_plasticityInstance)
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if (phase_plasticity(p) /= PLASTICITY_DISLOTWIN_ID) cycle
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@ -314,7 +319,7 @@ subroutine plastic_dislotwin_init(fileUnit)
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prm%nu = lattice_nu(p)
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prm%C66 = lattice_C66(1:6,1:6,p)
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prm%Nslip = config_phase(p)%getInts('nslip',defaultVal=emptyInt)
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prm%Nslip = config_phase(p)%getInts('nslip',defaultVal=emptyIntArray)
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prm%totalNslip = sum(prm%Nslip)
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slipActive: if (prm%totalNslip > 0_pInt) then
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@ -365,7 +370,7 @@ subroutine plastic_dislotwin_init(fileUnit)
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allocate(prm%burgers_slip(0))
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endif slipActive
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prm%Ntwin = config_phase(p)%getInts('ntwin', defaultVal=emptyInt)
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prm%Ntwin = config_phase(p)%getInts('ntwin', defaultVal=emptyIntArray)
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prm%totalNtwin = sum(prm%Ntwin)
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if (prm%totalNtwin > 0_pInt) then
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@ -396,7 +401,7 @@ subroutine plastic_dislotwin_init(fileUnit)
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allocate(prm%r(0))
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endif
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prm%Ntrans = config_phase(p)%getInts('ntrans', defaultVal=emptyInt)
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prm%Ntrans = config_phase(p)%getInts('ntrans', defaultVal=emptyIntArray)
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prm%totalNtrans = sum(prm%Ntrans)
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if (prm%totalNtrans > 0_pInt) then
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prm%burgers_trans = config_phase(p)%getFloats('transburgers')
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@ -464,7 +469,7 @@ subroutine plastic_dislotwin_init(fileUnit)
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prm%qShearBand = config_phase(p)%getFloat('q_shearband')
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endif
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outputs = config_phase(p)%getStrings('(output)', defaultVal=emptyString)
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outputs = config_phase(p)%getStrings('(output)', defaultVal=emptyStringArray)
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allocate(prm%outputID(0))
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do i= 1_pInt, size(outputs)
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outputID = undefined_ID
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@ -581,12 +586,9 @@ subroutine plastic_dislotwin_init(fileUnit)
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prm%qShearBand <= 0.0_pReal) &
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call IO_error(211_pInt,el=p,ext_msg='qShearBand ('//PLASTICITY_DISLOTWIN_label//')')
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NofMyPhase=count(material_phase==p)
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!--------------------------------------------------------------------------------------------------
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! allocate state arrays
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NipcMyPhase=count(material_phase==p)
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sizeDotState = int(size(['rho ','rhoDip ','accshearslip']),pInt) * prm%totalNslip &
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+ int(size(['twinFraction','accsheartwin']),pInt) * prm%totalNtwin &
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+ int(size(['stressTransFraction','strainTransFraction']),pInt) * prm%totalNtrans
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@ -600,28 +602,28 @@ subroutine plastic_dislotwin_init(fileUnit)
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plasticState(p)%nTwin = prm%totalNtwin
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plasticState(p)%nTrans= prm%totalNtrans
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allocate(plasticState(p)%aTolState (sizeState), source=0.0_pReal)
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allocate(plasticState(p)%state0 (sizeState,NofMyPhase), source=0.0_pReal)
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allocate(plasticState(p)%partionedState0 (sizeState,NofMyPhase), source=0.0_pReal)
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allocate(plasticState(p)%subState0 (sizeState,NofMyPhase), source=0.0_pReal)
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allocate(plasticState(p)%state (sizeState,NofMyPhase), source=0.0_pReal)
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allocate(plasticState(p)%state0 (sizeState,NipcMyPhase), source=0.0_pReal)
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allocate(plasticState(p)%partionedState0 (sizeState,NipcMyPhase), source=0.0_pReal)
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allocate(plasticState(p)%subState0 (sizeState,NipcMyPhase), source=0.0_pReal)
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allocate(plasticState(p)%state (sizeState,NipcMyPhase), source=0.0_pReal)
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allocate(plasticState(p)%dotState (sizeDotState,NofMyPhase), source=0.0_pReal)
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allocate(plasticState(p)%deltaState (sizeDeltaState,NofMyPhase), source=0.0_pReal)
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allocate(plasticState(p)%dotState (sizeDotState,NipcMyPhase), source=0.0_pReal)
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allocate(plasticState(p)%deltaState (sizeDeltaState,NipcMyPhase), source=0.0_pReal)
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if (any(numerics_integrator == 1_pInt)) then
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allocate(plasticState(p)%previousDotState (sizeDotState,NofMyPhase), source=0.0_pReal)
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allocate(plasticState(p)%previousDotState2 (sizeDotState,NofMyPhase), source=0.0_pReal)
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allocate(plasticState(p)%previousDotState (sizeDotState,NipcMyPhase), source=0.0_pReal)
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allocate(plasticState(p)%previousDotState2 (sizeDotState,NipcMyPhase), source=0.0_pReal)
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endif
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if (any(numerics_integrator == 4_pInt)) &
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allocate(plasticState(p)%RK4dotState (sizeDotState,NofMyPhase), source=0.0_pReal)
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allocate(plasticState(p)%RK4dotState (sizeDotState,NipcMyPhase), source=0.0_pReal)
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if (any(numerics_integrator == 5_pInt)) &
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allocate(plasticState(p)%RKCK45dotState (6,sizeDotState,NofMyPhase),source=0.0_pReal)
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allocate(plasticState(p)%RKCK45dotState (6,sizeDotState,NipcMyPhase),source=0.0_pReal)
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! ToDo: do later on
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offset_slip = 2_pInt*plasticState(p)%nslip
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plasticState(p)%slipRate => &
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plasticState(p)%dotState(offset_slip+1:offset_slip+plasticState(p)%nslip,1:NofMyPhase)
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plasticState(p)%dotState(offset_slip+1:offset_slip+plasticState(p)%nslip,1:NipcMyPhase)
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plasticState(p)%accumulatedSlip => &
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plasticState(p)%state (offset_slip+1:offset_slip+plasticState(p)%nslip,1:NofMyPhase)
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plasticState(p)%state (offset_slip+1:offset_slip+plasticState(p)%nslip,1:NipcMyPhase)
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! ToDo: All these things are repeated for each constitutive law. Lattice can provide it as a 'sevice'
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@ -804,14 +806,14 @@ subroutine plastic_dislotwin_init(fileUnit)
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startIndex=1_pInt
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endIndex=prm%totalNslip
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stt%rhoEdge=>plasticState(p)%state(startIndex:endIndex,:)
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stt%rhoEdge= spread(prm%rho0,2,NofMyPhase)
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stt%rhoEdge= spread(prm%rho0,2,NipcMyPhase)
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dot%rhoEdge=>plasticState(p)%dotState(startIndex:endIndex,:)
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plasticState(p)%aTolState(startIndex:endIndex) = prm%aTolRho
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startIndex=endIndex+1
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endIndex=endIndex+prm%totalNslip
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stt%rhoEdgeDip=>plasticState(p)%state(startIndex:endIndex,:)
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stt%rhoEdgeDip= spread(prm%rhoDip0,2,NofMyPhase)
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stt%rhoEdgeDip= spread(prm%rhoDip0,2,NipcMyPhase)
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dot%rhoEdgeDip=>plasticState(p)%dotState(startIndex:endIndex,:)
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plasticState(p)%aTolState(startIndex:endIndex) = prm%aTolRho
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@ -848,25 +850,25 @@ subroutine plastic_dislotwin_init(fileUnit)
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plasticState(p)%state0 = plasticState(p)%state
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dot%whole => plasticState(p)%dotState
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allocate(mse%invLambdaSlip(prm%totalNslip,NofMyPhase),source=0.0_pReal)
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allocate(mse%invLambdaSlipTwin(prm%totalNslip,NofMyPhase),source=0.0_pReal)
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allocate(mse%invLambdaTwin(prm%totalNtwin,NofMyPhase),source=0.0_pReal)
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allocate(mse%invLambdaSlipTrans(prm%totalNtrans,NofMyPhase),source=0.0_pReal)
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allocate(mse%invLambdaTrans(prm%totalNtrans,NofMyPhase),source=0.0_pReal)
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allocate(mse%invLambdaSlip(prm%totalNslip,NipcMyPhase),source=0.0_pReal)
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allocate(mse%invLambdaSlipTwin(prm%totalNslip,NipcMyPhase),source=0.0_pReal)
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allocate(mse%invLambdaTwin(prm%totalNtwin,NipcMyPhase),source=0.0_pReal)
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allocate(mse%invLambdaSlipTrans(prm%totalNtrans,NipcMyPhase),source=0.0_pReal)
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allocate(mse%invLambdaTrans(prm%totalNtrans,NipcMyPhase),source=0.0_pReal)
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allocate(mse%mfp_slip(prm%totalNslip,NofMyPhase), source=0.0_pReal)
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allocate(mse%mfp_twin(prm%totalNtwin,NofMyPhase), source=0.0_pReal)
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allocate(mse%mfp_trans(prm%totalNtrans,NofMyPhase),source=0.0_pReal)
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allocate(mse%mfp_slip(prm%totalNslip,NipcMyPhase), source=0.0_pReal)
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allocate(mse%mfp_twin(prm%totalNtwin,NipcMyPhase), source=0.0_pReal)
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allocate(mse%mfp_trans(prm%totalNtrans,NipcMyPhase),source=0.0_pReal)
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allocate(mse%threshold_stress_slip(prm%totalNslip,NofMyPhase), source=0.0_pReal)
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allocate(mse%threshold_stress_twin(prm%totalNtwin,NofMyPhase), source=0.0_pReal)
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allocate(mse%threshold_stress_trans(prm%totalNtrans,NofMyPhase),source=0.0_pReal)
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allocate(mse%threshold_stress_slip(prm%totalNslip,NipcMyPhase), source=0.0_pReal)
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allocate(mse%threshold_stress_twin(prm%totalNtwin,NipcMyPhase), source=0.0_pReal)
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allocate(mse%threshold_stress_trans(prm%totalNtrans,NipcMyPhase),source=0.0_pReal)
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allocate(mse%tau_r_twin(prm%totalNtwin,NofMyPhase), source=0.0_pReal)
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allocate(mse%tau_r_trans(prm%totalNtrans,NofMyPhase), source=0.0_pReal)
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allocate(mse%tau_r_twin(prm%totalNtwin,NipcMyPhase), source=0.0_pReal)
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allocate(mse%tau_r_trans(prm%totalNtrans,NipcMyPhase), source=0.0_pReal)
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allocate(mse%twinVolume(prm%totalNtwin,NofMyPhase), source=0.0_pReal)
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allocate(mse%martensiteVolume(prm%totalNtrans,NofMyPhase), source=0.0_pReal)
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allocate(mse%twinVolume(prm%totalNtwin,NipcMyPhase), source=0.0_pReal)
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allocate(mse%martensiteVolume(prm%totalNtrans,NipcMyPhase), source=0.0_pReal)
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end associate
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enddo
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