avoid usage of lattice variables
This commit is contained in:
parent
eba763cf38
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1bf31598c5
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@ -22,26 +22,14 @@ module kinematics_slipplane_opening
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sdot0, &
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n
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real(pReal), dimension(:), allocatable :: &
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critDisp, &
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critPlasticStrain
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end type
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! Begin Deprecated
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integer(pInt), dimension(:), allocatable, private :: &
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kinematics_slipplane_opening_totalNslip !< total number of slip systems
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integer(pInt), dimension(:,:), allocatable, private :: &
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kinematics_slipplane_opening_Nslip !< number of slip systems per family
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real(pReal), dimension(:), allocatable, private :: &
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kinematics_slipplane_opening_sdot_0, &
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kinematics_slipplane_opening_N
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real(pReal), dimension(:,:), allocatable, private :: &
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kinematics_slipplane_opening_critPlasticStrain, &
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kinematics_slipplane_opening_critLoad
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! End Deprecated
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critLoad
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real(pReal), dimension(:,:), allocatable :: &
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slip_direction, &
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slip_normal, &
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slip_transverse
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end type tParameters
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type(tParameters), dimension(:), allocatable, private :: param !< containers of constitutive parameters (len Ninstance)
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public :: &
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kinematics_slipplane_opening_init, &
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kinematics_slipplane_opening_LiAndItsTangent
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@ -54,11 +42,6 @@ contains
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!> @details reads in material parameters, allocates arrays, and does sanity checks
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!--------------------------------------------------------------------------------------------------
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subroutine kinematics_slipplane_opening_init()
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#if defined(__GFORTRAN__) || __INTEL_COMPILER >= 1800
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use, intrinsic :: iso_fortran_env, only: &
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compiler_version, &
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compiler_options
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#endif
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use debug, only: &
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debug_level,&
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debug_constitutive,&
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@ -66,29 +49,23 @@ subroutine kinematics_slipplane_opening_init()
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use config, only: &
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config_phase
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use IO, only: &
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IO_warning, &
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IO_error, &
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IO_timeStamp
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IO_error
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use math, only: &
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math_expand
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use material, only: &
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phase_kinematics, &
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KINEMATICS_slipplane_opening_label, &
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KINEMATICS_slipplane_opening_ID
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use lattice, only: &
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lattice_maxNslipFamily, &
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lattice_NslipSystem
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use lattice
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implicit none
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integer(pInt), allocatable, dimension(:) :: tempInt
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real(pReal), allocatable, dimension(:) :: tempFloat
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integer(pInt) :: maxNinstance,p,instance,kinematics
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write(6,'(/,a)') ' <<<+- kinematics_'//KINEMATICS_slipplane_opening_LABEL//' init -+>>>'
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write(6,'(a15,a)') ' Current time: ',IO_timeStamp()
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#include "compilation_info.f90"
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maxNinstance = int(count(phase_kinematics == KINEMATICS_slipplane_opening_ID),pInt)
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if (maxNinstance == 0_pInt) return
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maxNinstance = count(phase_kinematics == KINEMATICS_slipplane_opening_ID)
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if (maxNinstance == 0) 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:',maxNinstance
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@ -98,37 +75,37 @@ subroutine kinematics_slipplane_opening_init()
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kinematics_slipplane_opening_instance(p) = count(phase_kinematics(:,1:p) == kinematics_slipplane_opening_ID) ! ToDo: count correct?
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enddo
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allocate(kinematics_slipplane_opening_critLoad(lattice_maxNslipFamily,maxNinstance), source=0.0_pReal)
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allocate(kinematics_slipplane_opening_critPlasticStrain(lattice_maxNslipFamily,maxNinstance),source=0.0_pReal)
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allocate(kinematics_slipplane_opening_Nslip(lattice_maxNslipFamily,maxNinstance), source=0_pInt)
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allocate(kinematics_slipplane_opening_totalNslip(maxNinstance), source=0_pInt)
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allocate(kinematics_slipplane_opening_N(maxNinstance), source=0.0_pReal)
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allocate(kinematics_slipplane_opening_sdot_0(maxNinstance), source=0.0_pReal)
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allocate(param(maxNinstance))
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do p = 1_pInt, size(config_phase)
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if (all(phase_kinematics(:,p) /= KINEMATICS_slipplane_opening_ID)) cycle
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associate(prm => param(kinematics_slipplane_opening_instance(p)), &
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config => config_phase(p))
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instance = kinematics_slipplane_opening_instance(p)
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kinematics_slipplane_opening_sdot_0(instance) = config_phase(p)%getFloat('anisoductile_sdot0')
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kinematics_slipplane_opening_N(instance) = config_phase(p)%getFloat('anisoductile_ratesensitivity')
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tempInt = config_phase(p)%getInts('ncleavage')
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kinematics_slipplane_opening_Nslip(1:size(tempInt),instance) = tempInt
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prm%sdot0 = config_phase(p)%getFloat('anisoductile_sdot0')
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prm%n = config_phase(p)%getFloat('anisoductile_ratesensitivity')
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tempFloat = config_phase(p)%getFloats('anisoductile_criticalplasticstrain',requiredSize=size(tempInt))
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kinematics_slipplane_opening_critPlasticStrain(1:size(tempInt),instance) = tempFloat
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prm%Nslip = config%getInts('nslip')
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tempFloat = config_phase(p)%getFloats('anisoductile_criticalload',requiredSize=size(tempInt))
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kinematics_slipplane_opening_critLoad(1:size(tempInt),instance) = tempFloat
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prm%critLoad = config_phase(p)%getFloats('anisoductile_criticalload',requiredSize=size(prm%Nslip ))
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kinematics_slipplane_opening_Nslip(1:lattice_maxNslipFamily,instance) = &
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min(lattice_NslipSystem(1:lattice_maxNslipFamily,p),& ! limit active cleavage systems per family to min of available and requested
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kinematics_slipplane_opening_Nslip(1:lattice_maxNslipFamily,instance))
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kinematics_slipplane_opening_totalNslip(instance) = sum(kinematics_slipplane_opening_Nslip(:,instance))
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if (kinematics_slipplane_opening_sdot_0(instance) <= 0.0_pReal) &
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call IO_error(211_pInt,el=instance,ext_msg='sdot_0 ('//KINEMATICS_slipplane_opening_LABEL//')')
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if (any(kinematics_slipplane_opening_critPlasticStrain(:,instance) < 0.0_pReal)) &
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call IO_error(211_pInt,el=instance,ext_msg='criticaPlasticStrain ('//KINEMATICS_slipplane_opening_LABEL//')')
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if (kinematics_slipplane_opening_N(instance) <= 0.0_pReal) &
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call IO_error(211_pInt,el=instance,ext_msg='rate_sensitivity ('//KINEMATICS_slipplane_opening_LABEL//')')
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prm%critLoad = math_expand(prm%critLoad, prm%Nslip)
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prm%slip_direction = lattice_slip_direction (prm%Nslip,config%getString('lattice_structure'),&
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config%getFloat('c/a',defaultVal=0.0_pReal))
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prm%slip_normal = lattice_slip_normal (prm%Nslip,config%getString('lattice_structure'),&
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config%getFloat('c/a',defaultVal=0.0_pReal))
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prm%slip_transverse = lattice_slip_transverse(prm%Nslip,config%getString('lattice_structure'),&
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config%getFloat('c/a',defaultVal=0.0_pReal))
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! if (kinematics_slipplane_opening_sdot_0(instance) <= 0.0_pReal) &
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! call IO_error(211_pInt,el=instance,ext_msg='sdot_0 ('//KINEMATICS_slipplane_opening_LABEL//')')
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! if (any(kinematics_slipplane_opening_critPlasticStrain(:,instance) < 0.0_pReal)) &
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! call IO_error(211_pInt,el=instance,ext_msg='criticaPlasticStrain ('//KINEMATICS_slipplane_opening_LABEL//')')
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! if (kinematics_slipplane_opening_N(instance) <= 0.0_pReal) &
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! call IO_error(211_pInt,el=instance,ext_msg='rate_sensitivity ('//KINEMATICS_slipplane_opening_LABEL//')')
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end associate
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enddo
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end subroutine kinematics_slipplane_opening_init
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@ -140,23 +117,16 @@ subroutine kinematics_slipplane_opening_LiAndItsTangent(Ld, dLd_dTstar, S, ipc,
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use prec, only: &
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tol_math_check
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use math, only: &
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math_mul33xx33
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use lattice, only: &
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lattice_maxNslipFamily, &
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lattice_NslipSystem, &
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lattice_sd, &
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lattice_st, &
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lattice_sn
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math_mul33xx33, &
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math_outer
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use material, only: &
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material_phase, &
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material_homog, &
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damage, &
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damageMapping
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use math, only: &
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math_tensorproduct33
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implicit none
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integer(pInt), intent(in) :: &
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integer, intent(in) :: &
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ipc, & !< grain number
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ip, & !< integration point number
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el !< element number
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@ -168,10 +138,10 @@ subroutine kinematics_slipplane_opening_LiAndItsTangent(Ld, dLd_dTstar, S, ipc,
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dLd_dTstar !< derivative of Ld with respect to Tstar (4th-order tensor)
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real(pReal), dimension(3,3) :: &
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projection_d, projection_t, projection_n !< projection modes 3x3 tensor
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integer(pInt) :: &
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integer :: &
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instance, phase, &
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homog, damageOffset, &
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f, i, index_myFamily, k, l, m, n
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i, k, l, m, n
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real(pReal) :: &
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traction_d, traction_t, traction_n, traction_crit, &
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udotd, dudotd_dt, udott, dudott_dt, udotn, dudotn_dt
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@ -181,66 +151,60 @@ subroutine kinematics_slipplane_opening_LiAndItsTangent(Ld, dLd_dTstar, S, ipc,
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homog = material_homog(ip,el)
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damageOffset = damageMapping(homog)%p(ip,el)
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associate(prm => param(instance))
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Ld = 0.0_pReal
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dLd_dTstar = 0.0_pReal
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do f = 1_pInt,lattice_maxNslipFamily
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index_myFamily = sum(lattice_NslipSystem(1:f-1_pInt,phase)) ! at which index starts my family
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do i = 1_pInt,kinematics_slipplane_opening_Nslip(f,instance) ! process each (active) slip system in family
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projection_d = math_tensorproduct33(lattice_sd(1:3,index_myFamily+i,phase),&
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lattice_sn(1:3,index_myFamily+i,phase))
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projection_t = math_tensorproduct33(lattice_st(1:3,index_myFamily+i,phase),&
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lattice_sn(1:3,index_myFamily+i,phase))
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projection_n = math_tensorproduct33(lattice_sn(1:3,index_myFamily+i,phase),&
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lattice_sn(1:3,index_myFamily+i,phase))
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do i = 1, prm%totalNslip
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projection_d = math_outer(prm%slip_direction(1:3,i),prm%slip_normal(1:3,i))
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projection_t = math_outer(prm%slip_transverse(1:3,i),prm%slip_normal(1:3,i))
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projection_n = math_outer(prm%slip_normal(1:3,i),prm%slip_normal(1:3,i))
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traction_d = math_mul33xx33(S,projection_d)
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traction_t = math_mul33xx33(S,projection_t)
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traction_n = math_mul33xx33(S,projection_n)
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traction_crit = kinematics_slipplane_opening_critLoad(f,instance)* &
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damage(homog)%p(damageOffset) ! degrading critical load carrying capacity by damage
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traction_crit = prm%critLoad(i)* damage(homog)%p(damageOffset) ! degrading critical load carrying capacity by damage
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udotd = &
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sign(1.0_pReal,traction_d)* &
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kinematics_slipplane_opening_sdot_0(instance)* &
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udotd = sign(1.0_pReal,traction_d)* &
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prm%sdot0* &
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(abs(traction_d)/traction_crit - &
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abs(traction_d)/kinematics_slipplane_opening_critLoad(f,instance))**kinematics_slipplane_opening_N(instance)
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abs(traction_d)/prm%critLoad(i))**prm%n
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if (abs(udotd) > tol_math_check) then
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Ld = Ld + udotd*projection_d
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dudotd_dt = udotd*kinematics_slipplane_opening_N(instance)/traction_d
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dudotd_dt = udotd*prm%n/traction_d
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forall (k=1_pInt:3_pInt,l=1_pInt:3_pInt,m=1_pInt:3_pInt,n=1_pInt:3_pInt) &
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dLd_dTstar(k,l,m,n) = dLd_dTstar(k,l,m,n) + &
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dudotd_dt*projection_d(k,l)*projection_d(m,n)
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endif
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udott = &
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sign(1.0_pReal,traction_t)* &
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kinematics_slipplane_opening_sdot_0(instance)* &
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udott = sign(1.0_pReal,traction_t)* &
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prm%sdot0* &
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(abs(traction_t)/traction_crit - &
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abs(traction_t)/kinematics_slipplane_opening_critLoad(f,instance))**kinematics_slipplane_opening_N(instance)
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abs(traction_t)/prm%critLoad(i))**prm%n
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if (abs(udott) > tol_math_check) then
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Ld = Ld + udott*projection_t
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dudott_dt = udott*kinematics_slipplane_opening_N(instance)/traction_t
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dudott_dt = udott*prm%n/traction_t
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forall (k=1_pInt:3_pInt,l=1_pInt:3_pInt,m=1_pInt:3_pInt,n=1_pInt:3_pInt) &
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dLd_dTstar(k,l,m,n) = dLd_dTstar(k,l,m,n) + &
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dudott_dt*projection_t(k,l)*projection_t(m,n)
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endif
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udotn = &
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kinematics_slipplane_opening_sdot_0(instance)* &
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prm%sdot0* &
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(max(0.0_pReal,traction_n)/traction_crit - &
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max(0.0_pReal,traction_n)/kinematics_slipplane_opening_critLoad(f,instance))**kinematics_slipplane_opening_N(instance)
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max(0.0_pReal,traction_n)/prm%critLoad(i))**prm%n
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if (abs(udotn) > tol_math_check) then
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Ld = Ld + udotn*projection_n
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dudotn_dt = udotn*kinematics_slipplane_opening_N(instance)/traction_n
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dudotn_dt = udotn*prm%n/traction_n
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forall (k=1_pInt:3_pInt,l=1_pInt:3_pInt,m=1_pInt:3_pInt,n=1_pInt:3_pInt) &
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dLd_dTstar(k,l,m,n) = dLd_dTstar(k,l,m,n) + &
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dudotn_dt*projection_n(k,l)*projection_n(m,n)
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endif
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enddo
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enddo
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end associate
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end subroutine kinematics_slipplane_opening_LiAndItsTangent
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end module kinematics_slipplane_opening
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@ -22,9 +22,6 @@ module source_damage_anisoDuctile
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source_damage_anisoDuctile_output !< name of each post result output
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integer(pInt), dimension(:,:), allocatable, private :: &
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source_damage_anisoDuctile_Nslip !< number of slip systems per family
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enum, bind(c)
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enumerator :: undefined_ID, &
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damage_drivingforce_ID
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@ -37,9 +34,9 @@ module source_damage_anisoDuctile
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N
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real(pReal), dimension(:), allocatable :: &
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critPlasticStrain
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integer(pInt) :: &
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integer :: &
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totalNslip
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integer(pInt), dimension(:), allocatable :: &
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integer, dimension(:), allocatable :: &
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Nslip
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integer(kind(undefined_ID)), allocatable, dimension(:) :: &
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outputID
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@ -82,13 +79,10 @@ subroutine source_damage_anisoDuctile_init
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material_phase, &
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sourceState
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use config, only: &
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config_phase, &
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material_Nphase
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use lattice, only: &
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lattice_maxNslipFamily
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config_phase
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implicit none
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integer(pInt) :: Ninstance,phase,instance,source,sourceOffset
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integer(pInt) :: NofMyPhase,p ,i
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@ -110,9 +104,9 @@ subroutine source_damage_anisoDuctile_init
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if (iand(debug_level(debug_constitutive),debug_levelBasic) /= 0_pInt) &
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write(6,'(a16,1x,i5,/)') '# instances:',Ninstance
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allocate(source_damage_anisoDuctile_offset(material_Nphase), source=0_pInt)
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allocate(source_damage_anisoDuctile_instance(material_Nphase), source=0_pInt)
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do phase = 1, material_Nphase
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allocate(source_damage_anisoDuctile_offset(size(config_phase)), source=0_pInt)
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allocate(source_damage_anisoDuctile_instance(size(config_phase)), source=0_pInt)
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do phase = 1, size(config_phase)
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source_damage_anisoDuctile_instance(phase) = count(phase_source(:,1:phase) == source_damage_anisoDuctile_ID)
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do source = 1, phase_Nsources(phase)
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if (phase_source(source,phase) == source_damage_anisoDuctile_ID) &
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@ -124,7 +118,6 @@ subroutine source_damage_anisoDuctile_init
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allocate(source_damage_anisoDuctile_output(maxval(phase_Noutput),Ninstance))
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source_damage_anisoDuctile_output = ''
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allocate(source_damage_anisoDuctile_Nslip(lattice_maxNslipFamily,Ninstance), source=0_pInt)
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allocate(param(Ninstance))
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@ -136,7 +129,7 @@ subroutine source_damage_anisoDuctile_init
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prm%aTol = config%getFloat('anisoductile_atol',defaultVal = 1.0e-3_pReal)
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prm%N = config%getFloat('anisoductile_ratesensitivity')
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prm%totalNslip = sum(prm%Nslip)
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! sanity checks
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if (prm%aTol < 0.0_pReal) extmsg = trim(extmsg)//' anisoductile_atol'
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@ -185,8 +178,6 @@ subroutine source_damage_anisoDuctile_init
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sourceState(phase)%p(sourceOffset)%sizePostResults = sum(source_damage_anisoDuctile_sizePostResult(:,instance))
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sourceState(phase)%p(sourceOffset)%aTolState=param(instance)%aTol
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source_damage_anisoDuctile_Nslip(1:size(param(instance)%Nslip),instance) = param(instance)%Nslip
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enddo
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end subroutine source_damage_anisoDuctile_init
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@ -202,8 +193,6 @@ subroutine source_damage_anisoDuctile_dotState(ipc, ip, el)
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material_homog, &
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damage, &
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damageMapping
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use lattice, only: &
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lattice_maxNslipFamily
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implicit none
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integer(pInt), intent(in) :: &
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|
@ -216,7 +205,7 @@ subroutine source_damage_anisoDuctile_dotState(ipc, ip, el)
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sourceOffset, &
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homog, damageOffset, &
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||||
instance, &
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||||
index, f, i
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f, i
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||||
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phase = phaseAt(ipc,ip,el)
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||||
constituent = phasememberAt(ipc,ip,el)
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||||
|
@ -225,17 +214,12 @@ subroutine source_damage_anisoDuctile_dotState(ipc, ip, el)
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|||
homog = material_homog(ip,el)
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||||
damageOffset = damageMapping(homog)%p(ip,el)
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||||
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||||
index = 1_pInt
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sourceState(phase)%p(sourceOffset)%dotState(1,constituent) = 0.0_pReal
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||||
do f = 1_pInt,lattice_maxNslipFamily
|
||||
do i = 1_pInt,source_damage_anisoDuctile_Nslip(f,instance) ! process each (active) slip system in family
|
||||
|
||||
do i = 1, param(instance)%totalNslip
|
||||
sourceState(phase)%p(sourceOffset)%dotState(1,constituent) = &
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||||
sourceState(phase)%p(sourceOffset)%dotState(1,constituent) + &
|
||||
plasticState(phase)%slipRate(index,constituent)/ &
|
||||
((damage(homog)%p(damageOffset))**param(instance)%N)/param(instance)%critPlasticStrain(index)
|
||||
|
||||
index = index + 1_pInt
|
||||
enddo
|
||||
plasticState(phase)%slipRate(i,constituent)/ &
|
||||
((damage(homog)%p(damageOffset))**param(instance)%N)/param(instance)%critPlasticStrain(i)
|
||||
enddo
|
||||
|
||||
end subroutine source_damage_anisoDuctile_dotState
|
||||
|
|
Loading…
Reference in New Issue