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!--------------------------------------------------------------------------------------------------
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! $Id$
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!--------------------------------------------------------------------------------------------------
!> @author Franz Roters, Max-Planck-Institut für Eisenforschung GmbH
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!> @author Philip Eisenlohr, Max-Planck-Institut für Eisenforschung GmbH
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!> @brief elasticity, plasticity, internal microstructure state
!--------------------------------------------------------------------------------------------------
module constitutive
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use prec , only : &
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pInt
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implicit none
private
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integer ( pInt ) , public , protected :: &
constitutive_maxSizePostResults , &
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constitutive_maxSizeDotState , &
constitutive_damage_maxSizePostResults , &
constitutive_damage_maxSizeDotState , &
constitutive_thermal_maxSizePostResults , &
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constitutive_thermal_maxSizeDotState , &
constitutive_vacancy_maxSizePostResults , &
constitutive_vacancy_maxSizeDotState
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public :: &
constitutive_init , &
constitutive_homogenizedC , &
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constitutive_damagedC , &
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constitutive_microstructure , &
constitutive_LpAndItsTangent , &
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constitutive_LiAndItsTangent , &
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constitutive_TandItsTangent , &
constitutive_collectDotState , &
constitutive_collectDeltaState , &
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constitutive_getLocalDamage , &
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constitutive_putLocalDamage , &
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constitutive_getDamage , &
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constitutive_getDamageDiffusion33 , &
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constitutive_getAdiabaticTemperature , &
constitutive_putAdiabaticTemperature , &
constitutive_getTemperature , &
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constitutive_getHeatGeneration , &
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constitutive_getLocalVacancyConcentration , &
constitutive_putLocalVacancyConcentration , &
constitutive_getVacancyConcentration , &
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constitutive_getVacancyDiffusion33 , &
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constitutive_getVacancyMobility33 , &
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constitutive_getVacancyEnergy , &
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constitutive_postResults
private :: &
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constitutive_hooke_TandItsTangent
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contains
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!--------------------------------------------------------------------------------------------------
!> @brief allocates arrays pointing to array of the various constitutive modules
!--------------------------------------------------------------------------------------------------
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subroutine constitutive_init ( temperature_init )
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#ifdef HDF
use hdf5 , only : &
HID_T
use IO , only : &
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HDF5_mappingConstitutive
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#endif
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use , intrinsic :: iso_fortran_env ! to get compiler_version and compiler_options (at least for gfortran 4.6 at the moment)
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use prec , only : &
pReal
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use debug , only : &
debug_level , &
debug_constitutive , &
debug_levelBasic
use numerics , only : &
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worldrank , &
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numerics_integrator
use IO , only : &
IO_error , &
IO_open_file , &
IO_open_jobFile_stat , &
IO_write_jobFile , &
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IO_write_jobIntFile , &
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IO_timeStamp
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use mesh , only : &
mesh_maxNips , &
mesh_NcpElems , &
mesh_element , &
FE_Nips , &
FE_geomtype
use material , only : &
material_phase , &
material_Nphase , &
material_localFileExt , &
material_configFile , &
phase_name , &
phase_elasticity , &
phase_plasticity , &
phase_plasticityInstance , &
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phase_damage , &
phase_damageInstance , &
phase_thermal , &
phase_thermalInstance , &
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phase_vacancy , &
phase_vacancyInstance , &
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phase_Noutput , &
homogenization_Ngrains , &
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homogenization_maxNgrains , &
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ELASTICITY_hooke_ID , &
PLASTICITY_none_ID , &
PLASTICITY_j2_ID , &
PLASTICITY_phenopowerlaw_ID , &
PLASTICITY_dislotwin_ID , &
PLASTICITY_dislokmc_ID , &
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PLASTICITY_disloucla_ID , &
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PLASTICITY_titanmod_ID , &
PLASTICITY_nonlocal_ID , &
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ELASTICITY_HOOKE_label , &
PLASTICITY_NONE_label , &
PLASTICITY_J2_label , &
PLASTICITY_PHENOPOWERLAW_label , &
PLASTICITY_DISLOTWIN_label , &
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PLASTICITY_DISLOKMC_label , &
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PLASTICITY_DISLOUCLA_label , &
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PLASTICITY_TITANMOD_label , &
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PLASTICITY_NONLOCAL_label , &
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LOCAL_DAMAGE_none_ID , &
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LOCAL_DAMAGE_isoBrittle_ID , &
LOCAL_DAMAGE_isoDuctile_ID , &
LOCAL_DAMAGE_anisoBrittle_ID , &
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LOCAL_DAMAGE_anisoDuctile_ID , &
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LOCAL_DAMAGE_gurson_ID , &
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LOCAL_DAMAGE_phaseField_ID , &
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LOCAL_THERMAL_isothermal_ID , &
LOCAL_THERMAL_adiabatic_ID , &
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LOCAL_VACANCY_constant_ID , &
LOCAL_VACANCY_generation_ID , &
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LOCAL_DAMAGE_none_LABEL , &
LOCAL_DAMAGE_isoBrittle_LABEL , &
LOCAL_DAMAGE_isoDuctile_LABEL , &
LOCAL_DAMAGE_anisoBrittle_LABEL , &
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LOCAL_DAMAGE_anisoDuctile_LABEL , &
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LOCAL_DAMAGE_gurson_LABEL , &
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LOCAL_DAMAGE_phaseField_label , &
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LOCAL_THERMAL_isothermal_label , &
LOCAL_THERMAL_adiabatic_label , &
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LOCAL_VACANCY_constant_label , &
LOCAL_VACANCY_generation_label , &
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plasticState , &
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damageState , &
thermalState , &
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vacancyState , &
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mappingConstitutive
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use plastic_none
use plastic_j2
use plastic_phenopowerlaw
use plastic_dislotwin
use plastic_dislokmc
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use plastic_disloucla
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use plastic_titanmod
use plastic_nonlocal
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use damage_none
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use damage_isoBrittle
use damage_isoDuctile
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use damage_anisoDuctile
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use damage_anisoBrittle
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use damage_gurson
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use damage_phaseField
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use thermal_isothermal
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use thermal_adiabatic
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use vacancy_constant
use vacancy_generation
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implicit none
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real ( pReal ) , intent ( in ) :: temperature_init !< initial temperature
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integer ( pInt ) , parameter :: FILEUNIT = 200_pInt
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integer ( pInt ) :: &
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e , & !< maximum number of elements
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phase , &
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instance
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integer ( pInt ) , dimension ( : , : ) , pointer :: thisSize
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integer ( pInt ) , dimension ( : ) , pointer :: thisNoutput
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character ( len = 64 ) , dimension ( : , : ) , pointer :: thisOutput
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character ( len = 32 ) :: outputName !< name of output, intermediate fix until HDF5 output is ready
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logical :: knownPlasticity , knownDamage , knownThermal , knownVacancy , nonlocalConstitutionPresent
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nonlocalConstitutionPresent = . false .
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!--------------------------------------------------------------------------------------------------
! parse plasticities from config file
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if ( . not . IO_open_jobFile_stat ( FILEUNIT , material_localFileExt ) ) & ! no local material configuration present...
call IO_open_file ( FILEUNIT , material_configFile ) ! ... open material.config file
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if ( any ( phase_plasticity == PLASTICITY_NONE_ID ) ) call plastic_none_init
if ( any ( phase_plasticity == PLASTICITY_J2_ID ) ) call plastic_j2_init ( FILEUNIT )
if ( any ( phase_plasticity == PLASTICITY_PHENOPOWERLAW_ID ) ) call plastic_phenopowerlaw_init ( FILEUNIT )
if ( any ( phase_plasticity == PLASTICITY_DISLOTWIN_ID ) ) call plastic_dislotwin_init ( FILEUNIT )
if ( any ( phase_plasticity == PLASTICITY_DISLOKMC_ID ) ) call plastic_dislokmc_init ( FILEUNIT )
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if ( any ( phase_plasticity == PLASTICITY_DISLOUCLA_ID ) ) call plastic_disloucla_init ( FILEUNIT )
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if ( any ( phase_plasticity == PLASTICITY_TITANMOD_ID ) ) call plastic_titanmod_init ( FILEUNIT )
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if ( any ( phase_plasticity == PLASTICITY_NONLOCAL_ID ) ) then
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call plastic_nonlocal_init ( FILEUNIT )
call plastic_nonlocal_stateInit ( )
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endif
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close ( FILEUNIT )
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!--------------------------------------------------------------------------------------------------
! parse damage from config file
if ( . not . IO_open_jobFile_stat ( FILEUNIT , material_localFileExt ) ) & ! no local material configuration present...
call IO_open_file ( FILEUNIT , material_configFile ) ! ... open material.config file
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if ( any ( phase_damage == LOCAL_DAMAGE_none_ID ) ) call damage_none_init
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if ( any ( phase_damage == LOCAL_DAMAGE_isoBrittle_ID ) ) call damage_isoBrittle_init ( FILEUNIT )
if ( any ( phase_damage == LOCAL_DAMAGE_isoductile_ID ) ) call damage_isoDuctile_init ( FILEUNIT )
if ( any ( phase_damage == LOCAL_DAMAGE_anisoBrittle_ID ) ) call damage_anisoBrittle_init ( FILEUNIT )
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if ( any ( phase_damage == LOCAL_DAMAGE_anisoductile_ID ) ) call damage_anisoDuctile_init ( FILEUNIT )
if ( any ( phase_damage == LOCAL_DAMAGE_gurson_ID ) ) call damage_gurson_init ( FILEUNIT )
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if ( any ( phase_damage == LOCAL_DAMAGE_phaseField_ID ) ) call damage_phaseField_init ( FILEUNIT )
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close ( FILEUNIT )
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!--------------------------------------------------------------------------------------------------
! parse thermal from config file
if ( . not . IO_open_jobFile_stat ( FILEUNIT , material_localFileExt ) ) & ! no local material configuration present...
call IO_open_file ( FILEUNIT , material_configFile ) ! ... open material.config file
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if ( any ( phase_thermal == LOCAL_THERMAL_isothermal_ID ) ) call thermal_isothermal_init ( temperature_init )
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if ( any ( phase_thermal == LOCAL_THERMAL_adiabatic_ID ) ) call thermal_adiabatic_init ( FILEUNIT , temperature_init )
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close ( FILEUNIT )
!--------------------------------------------------------------------------------------------------
! parse vacancy model from config file
if ( . not . IO_open_jobFile_stat ( FILEUNIT , material_localFileExt ) ) & ! no local material configuration present...
call IO_open_file ( FILEUNIT , material_configFile ) ! ... open material.config file
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if ( any ( phase_vacancy == LOCAL_VACANCY_constant_ID ) ) call vacancy_constant_init
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if ( any ( phase_vacancy == LOCAL_VACANCY_generation_ID ) ) call vacancy_generation_init ( FILEUNIT )
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close ( FILEUNIT )
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mainProcess : if ( worldrank == 0 ) then
write ( 6 , '(/,a)' ) ' <<<+- constitutive init -+>>>'
write ( 6 , '(a)' ) ' $Id$'
write ( 6 , '(a15,a)' ) ' Current time: ' , IO_timeStamp ( )
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#include "compilation_info.f90"
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endif mainProcess
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!--------------------------------------------------------------------------------------------------
! write description file for constitutive phase output
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call IO_write_jobFile ( FILEUNIT , 'outputConstitutive' )
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do phase = 1_pInt , material_Nphase
instance = phase_plasticityInstance ( phase ) ! which instance of a plasticity is present phase
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knownPlasticity = . true . ! assume valid
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select case ( phase_plasticity ( phase ) ) ! split per constititution
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case ( PLASTICITY_NONE_ID )
outputName = PLASTICITY_NONE_label
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thisNoutput = > null ( )
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thisOutput = > null ( ) ! plastic_none_output
thisSize = > null ( ) ! plastic_none_sizePostResult
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case ( PLASTICITY_J2_ID )
outputName = PLASTICITY_J2_label
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thisNoutput = > plastic_j2_Noutput
thisOutput = > plastic_j2_output
thisSize = > plastic_j2_sizePostResult
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case ( PLASTICITY_PHENOPOWERLAW_ID )
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outputName = PLASTICITY_PHENOPOWERLAW_label
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thisNoutput = > plastic_phenopowerlaw_Noutput
thisOutput = > plastic_phenopowerlaw_output
thisSize = > plastic_phenopowerlaw_sizePostResult
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case ( PLASTICITY_DISLOTWIN_ID )
outputName = PLASTICITY_DISLOTWIN_label
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thisNoutput = > plastic_dislotwin_Noutput
thisOutput = > plastic_dislotwin_output
thisSize = > plastic_dislotwin_sizePostResult
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case ( PLASTICITY_DISLOKMC_ID )
outputName = PLASTICITY_DISLOKMC_label
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thisNoutput = > plastic_dislokmc_Noutput
thisOutput = > plastic_dislokmc_output
thisSize = > plastic_dislokmc_sizePostResult
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case ( PLASTICITY_DISLOUCLA_ID )
outputName = PLASTICITY_DISLOUCLA_label
thisNoutput = > plastic_disloucla_Noutput
thisOutput = > plastic_disloucla_output
thisSize = > plastic_disloucla_sizePostResult
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case ( PLASTICITY_TITANMOD_ID )
outputName = PLASTICITY_TITANMOD_label
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thisNoutput = > plastic_titanmod_Noutput
thisOutput = > plastic_titanmod_output
thisSize = > plastic_titanmod_sizePostResult
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case ( PLASTICITY_NONLOCAL_ID )
outputName = PLASTICITY_NONLOCAL_label
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thisNoutput = > plastic_nonlocal_Noutput
thisOutput = > plastic_nonlocal_output
thisSize = > plastic_nonlocal_sizePostResult
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case default
knownPlasticity = . false .
end select
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write ( FILEUNIT , '(/,a,/)' ) '[' / / trim ( phase_name ( phase ) ) / / ']'
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if ( knownPlasticity ) then
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write ( FILEUNIT , '(a)' ) '(plasticity)' / / char ( 9 ) / / trim ( outputName )
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if ( phase_plasticity ( phase ) / = PLASTICITY_NONE_ID ) then
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do e = 1_pInt , thisNoutput ( instance )
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write ( FILEUNIT , '(a,i4)' ) trim ( thisOutput ( e , instance ) ) / / char ( 9 ) , thisSize ( e , instance )
enddo
endif
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endif
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#ifdef multiphysicsOut
instance = phase_damageInstance ( phase ) ! which instance of a plasticity is present phase
knownDamage = . true .
select case ( phase_damage ( phase ) ) ! split per constititution
case ( LOCAL_DAMAGE_none_ID )
outputName = LOCAL_DAMAGE_NONE_label
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thisNoutput = > null ( )
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thisOutput = > null ( )
thisSize = > null ( )
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case ( LOCAL_DAMAGE_isoBrittle_ID )
outputName = LOCAL_DAMAGE_isoBrittle_LABEL
thisNoutput = > damage_isoBrittle_Noutput
thisOutput = > damage_isoBrittle_output
thisSize = > damage_isoBrittle_sizePostResult
case ( LOCAL_DAMAGE_isoDuctile_ID )
outputName = LOCAL_DAMAGE_isoDuctile_LABEL
thisNoutput = > damage_isoDuctile_Noutput
thisOutput = > damage_isoDuctile_output
thisSize = > damage_isoDuctile_sizePostResult
case ( LOCAL_DAMAGE_anisoBrittle_ID )
outputName = LOCAL_DAMAGE_anisoBrittle_label
thisNoutput = > damage_anisoBrittle_Noutput
thisOutput = > damage_anisoBrittle_output
thisSize = > damage_anisoBrittle_sizePostResult
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case ( LOCAL_DAMAGE_anisoDuctile_ID )
outputName = LOCAL_DAMAGE_anisoDuctile_LABEL
thisNoutput = > damage_anisoDuctile_Noutput
thisOutput = > damage_anisoDuctile_output
thisSize = > damage_anisoDuctile_sizePostResult
case ( LOCAL_DAMAGE_gurson_ID )
outputName = LOCAL_DAMAGE_gurson_label
thisNoutput = > damage_gurson_Noutput
thisOutput = > damage_gurson_output
thisSize = > damage_gurson_sizePostResult
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case ( LOCAL_DAMAGE_phaseField_ID )
outputName = LOCAL_DAMAGE_phaseField_label
thisNoutput = > damage_phaseField_Noutput
thisOutput = > damage_phaseField_output
thisSize = > damage_phaseField_sizePostResult
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case default
knownDamage = . false .
end select
if ( knownDamage ) then
write ( FILEUNIT , '(a)' ) '(damage)' / / char ( 9 ) / / trim ( outputName )
if ( phase_damage ( phase ) / = LOCAL_DAMAGE_none_ID ) then
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do e = 1_pInt , thisNoutput ( instance )
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write ( FILEUNIT , '(a,i4)' ) trim ( thisOutput ( e , instance ) ) / / char ( 9 ) , thisSize ( e , instance )
enddo
endif
endif
instance = phase_thermalInstance ( phase ) ! which instance is present phase
knownThermal = . true .
select case ( phase_thermal ( phase ) ) ! split per constititution
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case ( LOCAL_THERMAL_isothermal_ID )
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outputName = LOCAL_THERMAL_ISOTHERMAL_label
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thisNoutput = > null ( )
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thisOutput = > null ( )
thisSize = > null ( )
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case ( LOCAL_THERMAL_adiabatic_ID )
outputName = LOCAL_THERMAL_ADIABATIC_label
thisNoutput = > thermal_adiabatic_Noutput
thisOutput = > thermal_adiabatic_output
thisSize = > thermal_adiabatic_sizePostResult
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case default
knownThermal = . false .
end select
if ( knownThermal ) then
write ( FILEUNIT , '(a)' ) '(thermal)' / / char ( 9 ) / / trim ( outputName )
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if ( phase_thermal ( phase ) / = LOCAL_THERMAL_isothermal_ID ) then
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do e = 1_pInt , thisNoutput ( instance )
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write ( FILEUNIT , '(a,i4)' ) trim ( thisOutput ( e , instance ) ) / / char ( 9 ) , thisSize ( e , instance )
enddo
endif
endif
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instance = phase_vacancyInstance ( phase ) ! which instance is present phase
knownVacancy = . true .
select case ( phase_vacancy ( phase ) ) ! split per constititution
case ( LOCAL_VACANCY_constant_ID )
outputName = LOCAL_VACANCY_constant_label
thisNoutput = > null ( )
thisOutput = > null ( )
thisSize = > null ( )
case ( LOCAL_VACANCY_generation_ID )
outputName = LOCAL_VACANCY_generation_label
thisNoutput = > vacancy_generation_Noutput
thisOutput = > vacancy_generation_output
thisSize = > vacancy_generation_sizePostResult
case default
knownVacancy = . false .
end select
if ( knownVacancy ) then
write ( FILEUNIT , '(a)' ) '(vacancy)' / / char ( 9 ) / / trim ( outputName )
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if ( phase_vacancy ( phase ) / = LOCAL_VACANCY_constant_ID ) then
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do e = 1_pInt , thisNoutput ( instance )
write ( FILEUNIT , '(a,i4)' ) trim ( thisOutput ( e , instance ) ) / / char ( 9 ) , thisSize ( e , instance )
enddo
endif
endif
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#endif
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enddo
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close ( FILEUNIT )
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constitutive_maxSizeDotState = 0_pInt
constitutive_maxSizePostResults = 0_pInt
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constitutive_damage_maxSizePostResults = 0_pInt
constitutive_damage_maxSizeDotState = 0_pInt
constitutive_thermal_maxSizePostResults = 0_pInt
constitutive_thermal_maxSizeDotState = 0_pInt
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constitutive_vacancy_maxSizePostResults = 0_pInt
constitutive_vacancy_maxSizeDotState = 0_pInt
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PhaseLoop2 : do phase = 1_pInt , material_Nphase
plasticState ( phase ) % partionedState0 = plasticState ( phase ) % State0
plasticState ( phase ) % State = plasticState ( phase ) % State0
constitutive_maxSizeDotState = max ( constitutive_maxSizeDotState , plasticState ( phase ) % sizeDotState )
constitutive_maxSizePostResults = max ( constitutive_maxSizePostResults , plasticState ( phase ) % sizePostResults )
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damageState ( phase ) % partionedState0 = damageState ( phase ) % State0
damageState ( phase ) % State = damageState ( phase ) % State0
constitutive_damage_maxSizeDotState = max ( constitutive_damage_maxSizeDotState , damageState ( phase ) % sizeDotState )
constitutive_damage_maxSizePostResults = max ( constitutive_damage_maxSizePostResults , damageState ( phase ) % sizePostResults )
thermalState ( phase ) % partionedState0 = thermalState ( phase ) % State0
thermalState ( phase ) % State = thermalState ( phase ) % State0
constitutive_thermal_maxSizeDotState = max ( constitutive_thermal_maxSizeDotState , thermalState ( phase ) % sizeDotState )
constitutive_thermal_maxSizePostResults = max ( constitutive_thermal_maxSizePostResults , thermalState ( phase ) % sizePostResults )
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vacancyState ( phase ) % partionedState0 = vacancyState ( phase ) % State0
vacancyState ( phase ) % State = vacancyState ( phase ) % State0
constitutive_vacancy_maxSizeDotState = max ( constitutive_vacancy_maxSizeDotState , vacancyState ( phase ) % sizeDotState )
constitutive_vacancy_maxSizePostResults = max ( constitutive_vacancy_maxSizePostResults , vacancyState ( phase ) % sizePostResults )
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enddo PhaseLoop2
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#ifdef HDF
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call HDF5_mappingConstitutive ( mappingConstitutive )
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do phase = 1_pInt , material_Nphase
instance = phase_plasticityInstance ( phase ) ! which instance of a plasticity is present phase
select case ( phase_plasticity ( phase ) ) ! split per constititution
case ( PLASTICITY_NONE_ID )
case ( PLASTICITY_J2_ID )
end select
enddo
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#endif
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#ifdef TODO
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!--------------------------------------------------------------------------------------------------
! report
constitutive_maxSizeState = maxval ( constitutive_sizeState )
constitutive_maxSizeDotState = maxval ( constitutive_sizeDotState )
if ( iand ( debug_level ( debug_constitutive ) , debug_levelBasic ) / = 0_pInt ) then
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write ( 6 , '(a32,1x,7(i8,1x))' ) 'constitutive_state0: ' , shape ( constitutive_state0 )
write ( 6 , '(a32,1x,7(i8,1x))' ) 'constitutive_partionedState0: ' , shape ( constitutive_partionedState0 )
write ( 6 , '(a32,1x,7(i8,1x))' ) 'constitutive_subState0: ' , shape ( constitutive_subState0 )
write ( 6 , '(a32,1x,7(i8,1x))' ) 'constitutive_state: ' , shape ( constitutive_state )
write ( 6 , '(a32,1x,7(i8,1x))' ) 'constitutive_aTolState: ' , shape ( constitutive_aTolState )
write ( 6 , '(a32,1x,7(i8,1x))' ) 'constitutive_dotState: ' , shape ( constitutive_dotState )
write ( 6 , '(a32,1x,7(i8,1x))' ) 'constitutive_deltaState: ' , shape ( constitutive_deltaState )
write ( 6 , '(a32,1x,7(i8,1x))' ) 'constitutive_sizeState: ' , shape ( constitutive_sizeState )
write ( 6 , '(a32,1x,7(i8,1x))' ) 'constitutive_sizeDotState: ' , shape ( constitutive_sizeDotState )
write ( 6 , '(a32,1x,7(i8,1x),/)' ) 'constitutive_sizePostResults: ' , shape ( constitutive_sizePostResults )
write ( 6 , '(a32,1x,7(i8,1x))' ) 'maxSizeState: ' , constitutive_maxSizeState
write ( 6 , '(a32,1x,7(i8,1x))' ) 'maxSizeDotState: ' , constitutive_maxSizeDotState
write ( 6 , '(a32,1x,7(i8,1x))' ) 'maxSizePostResults: ' , constitutive_maxSizePostResults
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endif
flush ( 6 )
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#endif
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end subroutine constitutive_init
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!--------------------------------------------------------------------------------------------------
!> @brief returns the homogenize elasticity matrix
!--------------------------------------------------------------------------------------------------
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function constitutive_homogenizedC ( ipc , ip , el )
use prec , only : &
pReal
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use material , only : &
phase_plasticity , &
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material_phase , &
PLASTICITY_TITANMOD_ID , &
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PLASTICITY_DISLOTWIN_ID , &
PLASTICITY_DISLOKMC_ID , &
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PLASTICITY_DISLOUCLA_ID , &
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plasticState , &
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mappingConstitutive
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use plastic_titanmod , only : &
plastic_titanmod_homogenizedC
use plastic_dislotwin , only : &
plastic_dislotwin_homogenizedC
use plastic_dislokmc , only : &
plastic_dislokmc_homogenizedC
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use plastic_disloucla , only : &
plastic_disloucla_homogenizedC
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use lattice , only : &
lattice_C66
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implicit none
real ( pReal ) , dimension ( 6 , 6 ) :: constitutive_homogenizedC
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integer ( pInt ) , intent ( in ) :: &
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ipc , & !< grain number
ip , & !< integration point number
el !< element number
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select case ( phase_plasticity ( material_phase ( ipc , ip , el ) ) )
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case ( PLASTICITY_DISLOTWIN_ID )
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constitutive_homogenizedC = plastic_dislotwin_homogenizedC ( ipc , ip , el )
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case ( PLASTICITY_DISLOKMC_ID )
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constitutive_homogenizedC = plastic_dislokmc_homogenizedC ( ipc , ip , el )
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case ( PLASTICITY_DISLOUCLA_ID )
constitutive_homogenizedC = plastic_disloucla_homogenizedC ( ipc , ip , el )
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case ( PLASTICITY_TITANMOD_ID )
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constitutive_homogenizedC = plastic_titanmod_homogenizedC ( ipc , ip , el )
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case default
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constitutive_homogenizedC = lattice_C66 ( 1 : 6 , 1 : 6 , material_phase ( ipc , ip , el ) )
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end select
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end function constitutive_homogenizedC
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!--------------------------------------------------------------------------------------------------
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!> @brief returns the damaged elasticity matrix if relevant
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!--------------------------------------------------------------------------------------------------
function constitutive_damagedC ( ipc , ip , el )
use prec , only : &
pReal
use material , only : &
material_phase , &
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LOCAL_DAMAGE_isoBrittle_ID , &
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LOCAL_DAMAGE_isoDuctile_ID , &
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LOCAL_DAMAGE_phaseField_ID , &
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phase_damage
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use damage_isoBrittle , only : &
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damage_isoBrittle_getDamagedC66
use damage_isoDuctile , only : &
damage_isoDuctile_getDamagedC66
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use damage_phaseField , only : &
damage_phaseField_getDamagedC66
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implicit none
real ( pReal ) , dimension ( 6 , 6 ) :: constitutive_damagedC
integer ( pInt ) , intent ( in ) :: &
ipc , & !< grain number
ip , & !< integration point number
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el
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select case ( phase_damage ( material_phase ( ipc , ip , el ) ) )
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case ( LOCAL_DAMAGE_isoBrittle_ID )
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constitutive_damagedC = damage_isoBrittle_getDamagedC66 ( constitutive_homogenizedC ( ipc , ip , el ) , &
ipc , ip , el )
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case ( LOCAL_DAMAGE_isoDuctile_ID )
constitutive_damagedC = damage_isoDuctile_getDamagedC66 ( constitutive_homogenizedC ( ipc , ip , el ) , &
ipc , ip , el )
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case ( LOCAL_DAMAGE_phaseField_ID )
constitutive_damagedC = damage_phaseField_getDamagedC66 ( constitutive_homogenizedC ( ipc , ip , el ) , &
ipc , ip , el )
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case default
constitutive_damagedC = constitutive_homogenizedC ( ipc , ip , el )
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end select
end function constitutive_damagedC
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!--------------------------------------------------------------------------------------------------
!> @brief calls microstructure function of the different constitutive models
!--------------------------------------------------------------------------------------------------
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subroutine constitutive_microstructure ( Tstar_v , Fe , Fp , subdt , ipc , ip , el )
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use prec , only : &
pReal
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use material , only : &
phase_plasticity , &
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phase_damage , &
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phase_vacancy , &
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material_phase , &
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PLASTICITY_dislotwin_ID , &
PLASTICITY_dislokmc_ID , &
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PLASTICITY_disloucla_ID , &
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PLASTICITY_titanmod_ID , &
PLASTICITY_nonlocal_ID , &
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LOCAL_DAMAGE_isoBrittle_ID , &
LOCAL_DAMAGE_isoDuctile_ID , &
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LOCAL_DAMAGE_anisoBrittle_ID , &
LOCAL_DAMAGE_anisoDuctile_ID , &
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LOCAL_DAMAGE_gurson_ID , &
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LOCAL_DAMAGE_phaseField_ID , &
LOCAL_VACANCY_generation_ID
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use plastic_titanmod , only : &
plastic_titanmod_microstructure
use plastic_nonlocal , only : &
plastic_nonlocal_microstructure
use plastic_dislotwin , only : &
plastic_dislotwin_microstructure
use plastic_dislokmc , only : &
plastic_dislokmc_microstructure
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use plastic_disloucla , only : &
plastic_disloucla_microstructure
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use damage_isoBrittle , only : &
damage_isoBrittle_microstructure
use damage_isoDuctile , only : &
damage_isoDuctile_microstructure
use damage_anisoBrittle , only : &
damage_anisoBrittle_microstructure
use damage_anisoDuctile , only : &
damage_anisoDuctile_microstructure
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use damage_gurson , only : &
damage_gurson_microstructure
use damage_phaseField , only : &
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damage_phaseField_microstructure
use vacancy_generation , only : &
vacancy_generation_microstructure
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implicit none
integer ( pInt ) , intent ( in ) :: &
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ipc , & !< grain number
ip , & !< integration point number
el !< element number
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real ( pReal ) , intent ( in ) , dimension ( 6 ) :: &
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Tstar_v !< 2nd Piola Kirchhoff stress tensor (Mandel)
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real ( pReal ) , intent ( in ) , dimension ( 3 , 3 ) :: &
Fe , & !< elastic deformation gradient
Fp !< plastic deformation gradient
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real ( pReal ) , intent ( in ) :: &
subdt !< timestep
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select case ( phase_plasticity ( material_phase ( ipc , ip , el ) ) )
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case ( PLASTICITY_DISLOTWIN_ID )
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call plastic_dislotwin_microstructure ( constitutive_getTemperature ( ipc , ip , el ) , ipc , ip , el )
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case ( PLASTICITY_DISLOKMC_ID )
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call plastic_dislokmc_microstructure ( constitutive_getTemperature ( ipc , ip , el ) , ipc , ip , el )
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case ( PLASTICITY_DISLOUCLA_ID )
call plastic_disloucla_microstructure ( constitutive_getTemperature ( ipc , ip , el ) , ipc , ip , el )
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case ( PLASTICITY_TITANMOD_ID )
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call plastic_titanmod_microstructure ( constitutive_getTemperature ( ipc , ip , el ) , ipc , ip , el )
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case ( PLASTICITY_NONLOCAL_ID )
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call plastic_nonlocal_microstructure ( Fe , Fp , ip , el )
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end select
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select case ( phase_damage ( material_phase ( ipc , ip , el ) ) )
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case ( LOCAL_DAMAGE_isoBrittle_ID )
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call damage_isoBrittle_microstructure ( constitutive_homogenizedC ( ipc , ip , el ) , Fe , subdt , &
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ipc , ip , el )
case ( LOCAL_DAMAGE_isoDuctile_ID )
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call damage_isoDuctile_microstructure ( subdt , ipc , ip , el )
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case ( LOCAL_DAMAGE_anisoBrittle_ID )
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call damage_anisoBrittle_microstructure ( Tstar_v , subdt , ipc , ip , el )
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case ( LOCAL_DAMAGE_anisoDuctile_ID )
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call damage_anisoDuctile_microstructure ( subdt , ipc , ip , el )
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case ( LOCAL_DAMAGE_gurson_ID )
call damage_gurson_microstructure ( ipc , ip , el )
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case ( LOCAL_DAMAGE_phaseField_ID )
call damage_phaseField_microstructure ( constitutive_homogenizedC ( ipc , ip , el ) , Fe , &
constitutive_getVacancyConcentration ( ipc , ip , el ) , &
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subdt , ipc , ip , el )
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end select
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select case ( phase_vacancy ( material_phase ( ipc , ip , el ) ) )
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case ( LOCAL_VACANCY_generation_ID )
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call vacancy_generation_microstructure ( Tstar_v , &
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constitutive_getTemperature ( ipc , ip , el ) , &
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constitutive_getDamage ( ipc , ip , el ) , &
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subdt , ipc , ip , el )
end select
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end subroutine constitutive_microstructure
openmp parallelization working again (at least for j2 and nonlocal constitutive model).
In order to keep it like that, please follow these simple rules:
DON'T use implicit array subscripts:
example: real, dimension(3,3) :: A,B
A(:,2) = B(:,1) <--- DON'T USE
A(1:3,2) = B(1:3,1) <--- BETTER USE
In many cases the use of explicit array subscripts is inevitable for parallelization. Additionally, it is an easy means to prevent memory leaks.
Enclose all write statements with the following:
!$OMP CRITICAL (write2out)
<your write statement>
!$OMP END CRITICAL (write2out)
Whenever you change something in the code and are not sure if it affects parallelization and leads to nonconforming behavior, please ask me and/or Franz to check this.
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!--------------------------------------------------------------------------------------------------
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!> @brief contains the constitutive equation for calculating the velocity gradient
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!--------------------------------------------------------------------------------------------------
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subroutine constitutive_LpAndItsTangent ( Lp , dLp_dTstar3333 , dLp_dFi3333 , Tstar_v , Fi , ipc , ip , el )
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use prec , only : &
pReal
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use math , only : &
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math_transpose33 , &
math_mul33x33 , &
math_Mandel6to33 , &
math_Mandel33to6 , &
math_Plain99to3333
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use material , only : &
phase_plasticity , &
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phase_plasticityInstance , &
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material_phase , &
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plasticState , &
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mappingConstitutive , &
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PLASTICITY_NONE_ID , &
PLASTICITY_J2_ID , &
PLASTICITY_PHENOPOWERLAW_ID , &
PLASTICITY_DISLOTWIN_ID , &
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PLASTICITY_DISLOKMC_ID , &
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PLASTICITY_DISLOUCLA_ID , &
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PLASTICITY_TITANMOD_ID , &
PLASTICITY_NONLOCAL_ID
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use plastic_j2 , only : &
plastic_j2_LpAndItsTangent
use plastic_phenopowerlaw , only : &
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plastic_phenopowerlaw_LpAndItsTangent
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use plastic_dislotwin , only : &
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plastic_dislotwin_LpAndItsTangent
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use plastic_dislokmc , only : &
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plastic_dislokmc_LpAndItsTangent
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use plastic_disloucla , only : &
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plastic_disloucla_LpAndItsTangent
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use plastic_titanmod , only : &
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plastic_titanmod_LpAndItsTangent
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use plastic_nonlocal , only : &
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plastic_nonlocal_LpAndItsTangent
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implicit none
integer ( pInt ) , intent ( in ) :: &
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ipc , & !< grain number
ip , & !< integration point number
el !< element number
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real ( pReal ) , intent ( in ) , dimension ( 6 ) :: &
Tstar_v !< 2nd Piola-Kirchhoff stress
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real ( pReal ) , intent ( in ) , dimension ( 3 , 3 ) :: &
Fi !< intermediate deformation gradient
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real ( pReal ) , intent ( out ) , dimension ( 3 , 3 ) :: &
Lp !< plastic velocity gradient
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real ( pReal ) , intent ( out ) , dimension ( 3 , 3 , 3 , 3 ) :: &
dLp_dTstar3333 , & !< derivative of Lp with respect to Tstar (4th-order tensor)
dLp_dFi3333 !< derivative of Lp with respect to Fi (4th-order tensor)
real ( pReal ) , dimension ( 6 ) :: &
Mstar_v !< Mandel stress work conjugate with Lp
real ( pReal ) , dimension ( 9 , 9 ) :: &
dLp_dMstar !< derivative of Lp with respect to Mstar (4th-order tensor)
real ( pReal ) , dimension ( 3 , 3 ) :: &
temp_33
integer ( pInt ) :: &
i , j
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Mstar_v = math_Mandel33to6 ( math_mul33x33 ( math_mul33x33 ( math_transpose33 ( Fi ) , Fi ) , &
math_Mandel6to33 ( Tstar_v ) ) )
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select case ( phase_plasticity ( material_phase ( ipc , ip , el ) ) )
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case ( PLASTICITY_NONE_ID )
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Lp = 0.0_pReal
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dLp_dMstar = 0.0_pReal
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case ( PLASTICITY_J2_ID )
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call plastic_j2_LpAndItsTangent ( Lp , dLp_dMstar , Mstar_v , ipc , ip , el )
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case ( PLASTICITY_PHENOPOWERLAW_ID )
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call plastic_phenopowerlaw_LpAndItsTangent ( Lp , dLp_dMstar , Mstar_v , ipc , ip , el )
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case ( PLASTICITY_NONLOCAL_ID )
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call plastic_nonlocal_LpAndItsTangent ( Lp , dLp_dMstar , Mstar_v , &
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constitutive_getTemperature ( ipc , ip , el ) , &
ipc , ip , el )
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case ( PLASTICITY_DISLOTWIN_ID )
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call plastic_dislotwin_LpAndItsTangent ( Lp , dLp_dMstar , Mstar_v , &
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constitutive_getTemperature ( ipc , ip , el ) , &
ipc , ip , el )
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case ( PLASTICITY_DISLOKMC_ID )
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call plastic_dislokmc_LpAndItsTangent ( Lp , dLp_dMstar , Mstar_v , &
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constitutive_getTemperature ( ipc , ip , el ) , &
ipc , ip , el )
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case ( PLASTICITY_DISLOUCLA_ID )
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call plastic_disloucla_LpAndItsTangent ( Lp , dLp_dMstar , Mstar_v , &
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constitutive_getTemperature ( ipc , ip , el ) , &
ipc , ip , el )
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case ( PLASTICITY_TITANMOD_ID )
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call plastic_titanmod_LpAndItsTangent ( Lp , dLp_dMstar , Mstar_v , &
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constitutive_getTemperature ( ipc , ip , el ) , &
ipc , ip , el )
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end select
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dLp_dTstar3333 = math_Plain99to3333 ( dLp_dMstar )
temp_33 = math_mul33x33 ( Fi , math_Mandel6to33 ( Tstar_v ) )
do i = 1_pInt , 3_pInt ; do j = 1_pInt , 3_pInt
dLp_dFi3333 ( i , j , 1 : 3 , 1 : 3 ) = math_mul33x33 ( temp_33 , math_transpose33 ( dLp_dTstar3333 ( i , j , 1 : 3 , 1 : 3 ) ) ) + &
math_mul33x33 ( math_mul33x33 ( Fi , dLp_dTstar3333 ( i , j , 1 : 3 , 1 : 3 ) ) , math_Mandel6to33 ( Tstar_v ) )
enddo ; enddo
temp_33 = math_mul33x33 ( math_transpose33 ( Fi ) , Fi )
do i = 1_pInt , 3_pInt ; do j = 1_pInt , 3_pInt
dLp_dTstar3333 ( i , j , 1 : 3 , 1 : 3 ) = math_mul33x33 ( temp_33 , dLp_dTstar3333 ( i , j , 1 : 3 , 1 : 3 ) )
enddo ; enddo
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end subroutine constitutive_LpAndItsTangent
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!--------------------------------------------------------------------------------------------------
!> @brief contains the constitutive equation for calculating the velocity gradient
!--------------------------------------------------------------------------------------------------
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subroutine constitutive_LiAndItsTangent ( Li , dLi_dTstar3333 , dLi_dFi3333 , Tstar_v , Fi , Lp , ipc , ip , el )
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use prec , only : &
pReal
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use math , only : &
math_I3 , &
math_inv33 , &
math_det33 , &
math_transpose33 , &
math_mul33x33
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use material , only : &
phase_damage , &
phase_thermal , &
material_phase , &
LOCAL_DAMAGE_anisoBrittle_ID , &
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LOCAL_DAMAGE_anisoDuctile_ID , &
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LOCAL_THERMAL_adiabatic_ID
use damage_anisoBrittle , only : &
damage_anisoBrittle_LdAndItsTangent
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use damage_anisoDuctile , only : &
damage_anisoDuctile_LdAndItsTangent
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use thermal_adiabatic , only : &
thermal_adiabatic_LTAndItsTangent
implicit none
integer ( pInt ) , intent ( in ) :: &
ipc , & !< grain number
ip , & !< integration point number
el !< element number
real ( pReal ) , intent ( in ) , dimension ( 6 ) :: &
Tstar_v !< 2nd Piola-Kirchhoff stress
real ( pReal ) , intent ( in ) , dimension ( 3 , 3 ) :: &
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Fi , & !< intermediate deformation gradient
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Lp !< plastic velocity gradient
real ( pReal ) , intent ( out ) , dimension ( 3 , 3 ) :: &
Li !< intermediate velocity gradient
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real ( pReal ) , intent ( out ) , dimension ( 3 , 3 , 3 , 3 ) :: &
dLi_dTstar3333 , & !< derivative of Li with respect to Tstar (4th-order tensor)
dLi_dFi3333
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real ( pReal ) , dimension ( 3 , 3 ) :: &
Li_temp !< intermediate velocity gradient
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real ( pReal ) , dimension ( 3 , 3 , 3 , 3 ) :: &
dLi_dTstar_temp
real ( pReal ) , dimension ( 3 , 3 ) :: &
FiInv , &
temp_33
real ( pReal ) :: &
detFi
integer ( pInt ) :: &
i , j
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Li = 0.0_pReal
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dLi_dTstar3333 = 0.0_pReal
dLi_dFi3333 = 0.0_pReal
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select case ( phase_damage ( material_phase ( ipc , ip , el ) ) )
case ( LOCAL_DAMAGE_anisoBrittle_ID )
call damage_anisoBrittle_LdAndItsTangent ( Li_temp , dLi_dTstar_temp , Tstar_v , ipc , ip , el )
Li = Li + Li_temp
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dLi_dTstar3333 = dLi_dTstar3333 + dLi_dTstar_temp
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case ( LOCAL_DAMAGE_anisoDuctile_ID )
call damage_anisoDuctile_LdAndItsTangent ( Li_temp , dLi_dTstar_temp , Tstar_v , ipc , ip , el )
Li = Li + Li_temp
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dLi_dTstar3333 = dLi_dTstar3333 + dLi_dTstar_temp
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end select
select case ( phase_thermal ( material_phase ( ipc , ip , el ) ) )
case ( LOCAL_THERMAL_adiabatic_ID )
call thermal_adiabatic_LTAndItsTangent ( Li_temp , dLi_dTstar_temp , Tstar_v , Lp , ipc , ip , el )
Li = Li + Li_temp
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dLi_dTstar3333 = dLi_dTstar3333 + dLi_dTstar_temp
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end select
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FiInv = math_inv33 ( Fi )
detFi = math_det33 ( Fi )
Li = math_mul33x33 ( math_mul33x33 ( Fi , Li ) , FiInv ) * detFi !< push forward to intermediate configuration
temp_33 = math_mul33x33 ( FiInv , Li )
do i = 1_pInt , 3_pInt ; do j = 1_pInt , 3_pInt
dLi_dTstar3333 ( 1 : 3 , 1 : 3 , i , j ) = math_mul33x33 ( math_mul33x33 ( Fi , dLi_dTstar3333 ( 1 : 3 , 1 : 3 , i , j ) ) , FiInv ) * detFi
dLi_dFi3333 ( 1 : 3 , 1 : 3 , i , j ) = dLi_dFi3333 ( 1 : 3 , 1 : 3 , i , j ) + Li * FiInv ( j , i )
dLi_dFi3333 ( 1 : 3 , i , 1 : 3 , j ) = dLi_dFi3333 ( 1 : 3 , i , 1 : 3 , j ) + math_I3 * temp_33 ( j , i ) + Li * FiInv ( j , i )
enddo ; enddo
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end subroutine constitutive_LiAndItsTangent
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openmp parallelization working again (at least for j2 and nonlocal constitutive model).
In order to keep it like that, please follow these simple rules:
DON'T use implicit array subscripts:
example: real, dimension(3,3) :: A,B
A(:,2) = B(:,1) <--- DON'T USE
A(1:3,2) = B(1:3,1) <--- BETTER USE
In many cases the use of explicit array subscripts is inevitable for parallelization. Additionally, it is an easy means to prevent memory leaks.
Enclose all write statements with the following:
!$OMP CRITICAL (write2out)
<your write statement>
!$OMP END CRITICAL (write2out)
Whenever you change something in the code and are not sure if it affects parallelization and leads to nonconforming behavior, please ask me and/or Franz to check this.
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!--------------------------------------------------------------------------------------------------
!> @brief returns the 2nd Piola-Kirchhoff stress tensor and its tangent with respect to
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!> the elastic deformation gradient depending on the selected elastic law (so far no case switch
!! because only hooke is implemented
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!--------------------------------------------------------------------------------------------------
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subroutine constitutive_TandItsTangent ( T , dT_dFe , dT_dFi , Fe , Fi , ipc , ip , el )
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use prec , only : &
pReal
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implicit none
integer ( pInt ) , intent ( in ) :: &
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ipc , & !< grain number
ip , & !< integration point number
el !< element number
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real ( pReal ) , intent ( in ) , dimension ( 3 , 3 ) :: &
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Fe , & !< elastic deformation gradient
Fi !< intermediate deformation gradient
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real ( pReal ) , intent ( out ) , dimension ( 3 , 3 ) :: &
T !< 2nd Piola-Kirchhoff stress tensor
real ( pReal ) , intent ( out ) , dimension ( 3 , 3 , 3 , 3 ) :: &
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dT_dFe , & !< derivative of 2nd P-K stress with respect to elastic deformation gradient
dT_dFi !< derivative of 2nd P-K stress with respect to intermediate deformation gradient
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call constitutive_hooke_TandItsTangent ( T , dT_dFe , dT_dFi , Fe , Fi , ipc , ip , el )
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end subroutine constitutive_TandItsTangent
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!--------------------------------------------------------------------------------------------------
!> @brief returns the 2nd Piola-Kirchhoff stress tensor and its tangent with respect to
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!> the elastic deformation gradient using hookes law
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!--------------------------------------------------------------------------------------------------
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subroutine constitutive_hooke_TandItsTangent ( T , dT_dFe , dT_dFi , Fe , Fi , ipc , ip , el )
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use prec , only : &
pReal
use math , only : &
math_mul3x3 , &
math_mul33x33 , &
math_mul3333xx33 , &
math_Mandel66to3333 , &
math_transpose33 , &
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math_trace33 , &
math_I3
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use material , only : &
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mappingConstitutive
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use lattice , only : &
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lattice_referenceTemperature , &
lattice_thermalExpansion33
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implicit none
integer ( pInt ) , intent ( in ) :: &
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ipc , & !< grain number
ip , & !< integration point number
el !< element number
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real ( pReal ) , intent ( in ) , dimension ( 3 , 3 ) :: &
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Fe , & !< elastic deformation gradient
Fi !< intermediate deformation gradient
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real ( pReal ) , intent ( out ) , dimension ( 3 , 3 ) :: &
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T !< 2nd Piola-Kirchhoff stress tensor in lattice configuration
real ( pReal ) , intent ( out ) , dimension ( 3 , 3 , 3 , 3 ) :: &
dT_dFe , & !< derivative of 2nd P-K stress with respect to elastic deformation gradient
dT_dFi !< derivative of 2nd P-K stress with respect to intermediate deformation gradient
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integer ( pInt ) :: i , j
real ( pReal ) , dimension ( 3 , 3 ) :: E
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real ( pReal ) , dimension ( 3 , 3 , 3 , 3 ) :: C
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C = math_Mandel66to3333 ( constitutive_damagedC ( ipc , ip , el ) ) !< elastic stiffness in lattice configuration
E = 0.5_pReal * ( math_mul33x33 ( math_transpose33 ( Fe ) , Fe ) - math_I3 ) !< Green-Lagrange strain in unloaded configuration
T = math_mul3333xx33 ( C , math_mul33x33 ( math_mul33x33 ( math_transpose33 ( Fi ) , E ) , Fi ) ) !< 2PK stress in lattice configuration in work conjugate with GL strain pulled back to lattice configuration
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dT_dFe = 0.0_pReal
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forall ( i = 1_pInt : 3_pInt , j = 1_pInt : 3_pInt )
dT_dFe ( i , j , 1 : 3 , 1 : 3 ) = &
math_mul33x33 ( Fe , math_mul33x33 ( math_mul33x33 ( Fi , C ( i , j , 1 : 3 , 1 : 3 ) ) , math_transpose33 ( Fi ) ) ) !< dT_ij/dFe_kl = C_ijmn * Fi_lm * Fi_on * Fe_ko
dT_dFi ( i , j , 1 : 3 , 1 : 3 ) = 2.0_pReal * math_mul33x33 ( math_mul33x33 ( E , Fi ) , C ( i , j , 1 : 3 , 1 : 3 ) ) !< dT_ij/dFi_kl = C_ijln * E_km * Fe_mn
end forall
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end subroutine constitutive_hooke_TandItsTangent
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!--------------------------------------------------------------------------------------------------
!> @brief contains the constitutive equation for calculating the rate of change of microstructure
!--------------------------------------------------------------------------------------------------
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subroutine constitutive_collectDotState ( Tstar_v , Lp , FeArray , FpArray , subdt , subfracArray , &
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ipc , ip , el )
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use prec , only : &
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pReal , &
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pLongInt
use debug , only : &
debug_cumDotStateCalls , &
debug_cumDotStateTicks , &
debug_level , &
debug_constitutive , &
debug_levelBasic
use mesh , only : &
mesh_NcpElems , &
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mesh_maxNips
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use material , only : &
phase_plasticity , &
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phase_plasticityInstance , &
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phase_damage , &
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phase_vacancy , &
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material_phase , &
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homogenization_maxNgrains , &
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PLASTICITY_none_ID , &
PLASTICITY_j2_ID , &
PLASTICITY_phenopowerlaw_ID , &
PLASTICITY_dislotwin_ID , &
PLASTICITY_dislokmc_ID , &
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PLASTICITY_disloucla_ID , &
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PLASTICITY_titanmod_ID , &
PLASTICITY_nonlocal_ID , &
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LOCAL_DAMAGE_gurson_ID
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use plastic_j2 , only : &
plastic_j2_dotState
use plastic_phenopowerlaw , only : &
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plastic_phenopowerlaw_dotState
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use plastic_dislotwin , only : &
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plastic_dislotwin_dotState
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use plastic_dislokmc , only : &
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plastic_dislokmc_dotState
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use plastic_disloucla , only : &
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plastic_disloucla_dotState
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use plastic_titanmod , only : &
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plastic_titanmod_dotState
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use plastic_nonlocal , only : &
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plastic_nonlocal_dotState
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use damage_gurson , only : &
damage_gurson_dotState
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implicit none
integer ( pInt ) , intent ( in ) :: &
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ipc , & !< grain number
ip , & !< integration point number
el !< element number
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real ( pReal ) , intent ( in ) :: &
subdt !< timestep
real ( pReal ) , intent ( in ) , dimension ( homogenization_maxNgrains , mesh_maxNips , mesh_NcpElems ) :: &
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subfracArray !< subfraction of timestep
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real ( pReal ) , intent ( in ) , dimension ( 3 , 3 , homogenization_maxNgrains , mesh_maxNips , mesh_NcpElems ) :: &
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FeArray , & !< elastic deformation gradient
FpArray !< plastic deformation gradient
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real ( pReal ) , intent ( in ) , dimension ( 6 ) :: &
Tstar_v !< 2nd Piola Kirchhoff stress tensor (Mandel)
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real ( pReal ) , intent ( in ) , dimension ( 3 , 3 ) :: &
Lp !< plastic velocity gradient
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integer ( pLongInt ) :: &
tick , tock , &
tickrate , &
maxticks
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if ( iand ( debug_level ( debug_constitutive ) , debug_levelBasic ) / = 0_pInt ) &
call system_clock ( count = tick , count_rate = tickrate , count_max = maxticks )
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select case ( phase_plasticity ( material_phase ( ipc , ip , el ) ) )
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case ( PLASTICITY_J2_ID )
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call plastic_j2_dotState ( Tstar_v , ipc , ip , el )
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case ( PLASTICITY_PHENOPOWERLAW_ID )
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call plastic_phenopowerlaw_dotState ( Tstar_v , ipc , ip , el )
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case ( PLASTICITY_DISLOTWIN_ID )
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call plastic_dislotwin_dotState ( Tstar_v , constitutive_getTemperature ( ipc , ip , el ) , &
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ipc , ip , el )
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case ( PLASTICITY_DISLOKMC_ID )
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call plastic_dislokmc_dotState ( Tstar_v , constitutive_getTemperature ( ipc , ip , el ) , &
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ipc , ip , el )
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case ( PLASTICITY_DISLOUCLA_ID )
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call plastic_disloucla_dotState ( Tstar_v , constitutive_getTemperature ( ipc , ip , el ) , &
ipc , ip , el )
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case ( PLASTICITY_TITANMOD_ID )
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call plastic_titanmod_dotState ( Tstar_v , constitutive_getTemperature ( ipc , ip , el ) , &
ipc , ip , el )
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case ( PLASTICITY_NONLOCAL_ID )
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call plastic_nonlocal_dotState ( Tstar_v , FeArray , FpArray , constitutive_getTemperature ( ipc , ip , el ) , &
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subdt , subfracArray , ip , el )
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end select
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select case ( phase_damage ( material_phase ( ipc , ip , el ) ) )
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case ( LOCAL_DAMAGE_gurson_ID )
call damage_gurson_dotState ( Tstar_v , Lp , ipc , ip , el )
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end select
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if ( iand ( debug_level ( debug_constitutive ) , debug_levelBasic ) / = 0_pInt ) then
call system_clock ( count = tock , count_rate = tickrate , count_max = maxticks )
!$OMP CRITICAL (debugTimingDotState)
debug_cumDotStateCalls = debug_cumDotStateCalls + 1_pInt
debug_cumDotStateTicks = debug_cumDotStateTicks + tock - tick
!$OMP FLUSH (debug_cumDotStateTicks)
if ( tock < tick ) debug_cumDotStateTicks = debug_cumDotStateTicks + maxticks
!$OMP END CRITICAL (debugTimingDotState)
endif
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end subroutine constitutive_collectDotState
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!--------------------------------------------------------------------------------------------------
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!> @brief for constitutive models having an instantaneous change of state (so far, only nonlocal)
!> will return false if delta state is not needed/supported by the constitutive model
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!--------------------------------------------------------------------------------------------------
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logical function constitutive_collectDeltaState ( Tstar_v , ipc , ip , el )
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use prec , only : &
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pReal , &
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pLongInt
use debug , only : &
debug_cumDeltaStateCalls , &
debug_cumDeltaStateTicks , &
debug_level , &
debug_constitutive , &
debug_levelBasic
use material , only : &
phase_plasticity , &
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material_phase , &
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plasticState , &
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mappingConstitutive , &
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PLASTICITY_NONLOCAL_ID
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use plastic_nonlocal , only : &
plastic_nonlocal_deltaState
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implicit none
integer ( pInt ) , intent ( in ) :: &
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ipc , & !< grain number
ip , & !< integration point number
el !< element number
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real ( pReal ) , intent ( in ) , dimension ( 6 ) :: &
Tstar_v !< 2nd Piola-Kirchhoff stress
integer ( pLongInt ) :: &
tick , tock , &
tickrate , &
maxticks
if ( iand ( debug_level ( debug_constitutive ) , debug_levelBasic ) / = 0_pInt ) &
call system_clock ( count = tick , count_rate = tickrate , count_max = maxticks )
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select case ( phase_plasticity ( material_phase ( ipc , ip , el ) ) )
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case ( PLASTICITY_NONLOCAL_ID )
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constitutive_collectDeltaState = . true .
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call plastic_nonlocal_deltaState ( Tstar_v , ip , el )
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case default
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constitutive_collectDeltaState = . false .
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end select
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if ( iand ( debug_level ( debug_constitutive ) , debug_levelBasic ) / = 0_pInt ) then
call system_clock ( count = tock , count_rate = tickrate , count_max = maxticks )
!$OMP CRITICAL (debugTimingDeltaState)
debug_cumDeltaStateCalls = debug_cumDeltaStateCalls + 1_pInt
debug_cumDeltaStateTicks = debug_cumDeltaStateTicks + tock - tick
!$OMP FLUSH (debug_cumDeltaStateTicks)
if ( tock < tick ) debug_cumDeltaStateTicks = debug_cumDeltaStateTicks + maxticks
!$OMP END CRITICAL (debugTimingDeltaState)
endif
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end function constitutive_collectDeltaState
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!--------------------------------------------------------------------------------------------------
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!> @brief Returns the local(regularised) damage
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!--------------------------------------------------------------------------------------------------
function constitutive_getLocalDamage ( ipc , ip , el )
use prec , only : &
pReal
use material , only : &
material_phase , &
LOCAL_DAMAGE_none_ID , &
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LOCAL_DAMAGE_isoBrittle_ID , &
LOCAL_DAMAGE_isoDuctile_ID , &
LOCAL_DAMAGE_anisoBrittle_ID , &
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LOCAL_DAMAGE_anisoDuctile_ID , &
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LOCAL_DAMAGE_gurson_ID , &
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LOCAL_DAMAGE_phaseField_ID , &
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phase_damage
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use damage_isoBrittle , only : &
damage_isoBrittle_getLocalDamage
use damage_isoDuctile , only : &
damage_isoDuctile_getLocalDamage
use damage_anisoBrittle , only : &
damage_anisoBrittle_getLocalDamage
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use damage_anisoDuctile , only : &
damage_anisoDuctile_getLocalDamage
use damage_gurson , only : &
damage_gurson_getLocalDamage
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use damage_phaseField , only : &
damage_phaseField_getLocalDamage
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implicit none
integer ( pInt ) , intent ( in ) :: &
ipc , & !< grain number
ip , & !< integration point number
el !< element number
real ( pReal ) :: constitutive_getLocalDamage
select case ( phase_damage ( material_phase ( ipc , ip , el ) ) )
case ( LOCAL_DAMAGE_none_ID )
constitutive_getLocalDamage = 1.0_pReal
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case ( LOCAL_DAMAGE_isoBrittle_ID )
constitutive_getLocalDamage = damage_isoBrittle_getLocalDamage ( ipc , ip , el )
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case ( LOCAL_DAMAGE_isoDuctile_ID )
constitutive_getLocalDamage = damage_isoDuctile_getLocalDamage ( ipc , ip , el )
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case ( LOCAL_DAMAGE_anisoBrittle_ID )
constitutive_getLocalDamage = damage_anisoBrittle_getLocalDamage ( ipc , ip , el )
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case ( LOCAL_DAMAGE_anisoDuctile_ID )
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constitutive_getLocalDamage = damage_anisoDuctile_getLocalDamage ( ipc , ip , el )
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case ( LOCAL_DAMAGE_gurson_ID )
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constitutive_getLocalDamage = damage_gurson_getLocalDamage ( ipc , ip , el )
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case ( LOCAL_DAMAGE_phaseField_ID )
constitutive_getLocalDamage = damage_phaseField_getLocalDamage ( ipc , ip , el )
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end select
end function constitutive_getLocalDamage
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!--------------------------------------------------------------------------------------------------
!> @brief Returns the local(unregularised) damage
!--------------------------------------------------------------------------------------------------
subroutine constitutive_putLocalDamage ( ipc , ip , el , localDamage )
use prec , only : &
pReal
use material , only : &
material_phase , &
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LOCAL_DAMAGE_isoBrittle_ID , &
LOCAL_DAMAGE_isoDuctile_ID , &
LOCAL_DAMAGE_anisoBrittle_ID , &
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LOCAL_DAMAGE_anisoDuctile_ID , &
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LOCAL_DAMAGE_gurson_ID , &
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LOCAL_DAMAGE_phaseField_ID , &
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phase_damage
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use damage_isoBrittle , only : &
damage_isoBrittle_putLocalDamage
use damage_isoDuctile , only : &
damage_isoDuctile_putLocalDamage
use damage_anisoBrittle , only : &
damage_anisoBrittle_putLocalDamage
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use damage_anisoDuctile , only : &
damage_anisoDuctile_putLocalDamage
use damage_gurson , only : &
damage_gurson_putLocalDamage
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use damage_phaseField , only : &
damage_phaseField_putLocalDamage
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implicit none
integer ( pInt ) , intent ( in ) :: &
ipc , & !< grain number
ip , & !< integration point number
el !< element number
real ( pReal ) , intent ( in ) :: &
localDamage
select case ( phase_damage ( material_phase ( ipc , ip , el ) ) )
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case ( LOCAL_DAMAGE_isoBrittle_ID )
call damage_isoBrittle_putLocalDamage ( ipc , ip , el , localDamage )
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case ( LOCAL_DAMAGE_isoDuctile_ID )
call damage_isoDuctile_putLocalDamage ( ipc , ip , el , localDamage )
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case ( LOCAL_DAMAGE_anisoBrittle_ID )
call damage_anisoBrittle_putLocalDamage ( ipc , ip , el , localDamage )
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case ( LOCAL_DAMAGE_anisoDuctile_ID )
call damage_anisoDuctile_putLocalDamage ( ipc , ip , el , localDamage )
case ( LOCAL_DAMAGE_gurson_ID )
call damage_gurson_putLocalDamage ( ipc , ip , el , localDamage )
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case ( LOCAL_DAMAGE_phaseField_ID )
call damage_phaseField_putLocalDamage ( ipc , ip , el , localDamage )
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end select
end subroutine constitutive_putLocalDamage
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!--------------------------------------------------------------------------------------------------
!> @brief returns nonlocal (regularised) damage
!--------------------------------------------------------------------------------------------------
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function constitutive_getDamage ( ipc , ip , el )
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use prec , only : &
pReal
use material , only : &
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material_phase , &
LOCAL_DAMAGE_none_ID , &
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LOCAL_DAMAGE_isoBrittle_ID , &
LOCAL_DAMAGE_isoDuctile_ID , &
LOCAL_DAMAGE_anisoBrittle_ID , &
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LOCAL_DAMAGE_anisoDuctile_ID , &
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LOCAL_DAMAGE_gurson_ID , &
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LOCAL_DAMAGE_phaseField_ID , &
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phase_damage
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use damage_isoBrittle , only : &
damage_isoBrittle_getDamage
use damage_isoDuctile , only : &
damage_isoDuctile_getDamage
use damage_anisoBrittle , only : &
damage_anisoBrittle_getDamage
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use damage_anisoDuctile , only : &
damage_anisoDuctile_getDamage
use damage_gurson , only : &
damage_gurson_getDamage
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use damage_phaseField , only : &
damage_phaseField_getDamage
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implicit none
integer ( pInt ) , intent ( in ) :: &
ipc , & !< grain number
ip , & !< integration point number
el !< element number
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real ( pReal ) :: constitutive_getDamage
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select case ( phase_damage ( material_phase ( ipc , ip , el ) ) )
case ( LOCAL_DAMAGE_none_ID )
constitutive_getDamage = 1.0_pReal
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case ( LOCAL_DAMAGE_isoBrittle_ID )
constitutive_getDamage = damage_isoBrittle_getDamage ( ipc , ip , el )
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case ( LOCAL_DAMAGE_isoDuctile_ID )
constitutive_getDamage = damage_isoDuctile_getDamage ( ipc , ip , el )
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case ( LOCAL_DAMAGE_anisoBrittle_ID )
constitutive_getDamage = damage_anisoBrittle_getDamage ( ipc , ip , el )
case ( LOCAL_DAMAGE_anisoDuctile_ID )
constitutive_getDamage = damage_anisoDuctile_getDamage ( ipc , ip , el )
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case ( LOCAL_DAMAGE_gurson_ID )
constitutive_getDamage = damage_gurson_getDamage ( ipc , ip , el )
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case ( LOCAL_DAMAGE_phaseField_ID )
constitutive_getDamage = damage_phaseField_getDamage ( ipc , ip , el )
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end select
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end function constitutive_getDamage
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!--------------------------------------------------------------------------------------------------
!> @brief returns damage diffusion tensor
!--------------------------------------------------------------------------------------------------
function constitutive_getDamageDiffusion33 ( ipc , ip , el )
use prec , only : &
pReal
use lattice , only : &
lattice_DamageDiffusion33
use material , only : &
material_phase , &
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phase_damage , &
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LOCAL_DAMAGE_isoBrittle_ID , &
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LOCAL_DAMAGE_anisoBrittle_ID , &
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LOCAL_DAMAGE_phaseField_ID
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use damage_isoBrittle , only : &
damage_isoBrittle_getDamageDiffusion33
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use damage_anisoBrittle , only : &
damage_anisoBrittle_getDamageDiffusion33
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use damage_phaseField , only : &
damage_phaseField_getDamageDiffusion33
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implicit none
integer ( pInt ) , intent ( in ) :: &
ipc , & !< grain number
ip , & !< integration point number
el !< element number
real ( pReal ) , dimension ( 3 , 3 ) :: &
constitutive_getDamageDiffusion33
select case ( phase_damage ( material_phase ( ipc , ip , el ) ) )
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case ( LOCAL_DAMAGE_isoBrittle_ID )
constitutive_getDamageDiffusion33 = damage_isoBrittle_getDamageDiffusion33 ( ipc , ip , el )
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case ( LOCAL_DAMAGE_anisoBrittle_ID )
constitutive_getDamageDiffusion33 = damage_anisoBrittle_getDamageDiffusion33 ( ipc , ip , el )
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case ( LOCAL_DAMAGE_phaseField_ID )
constitutive_getDamageDiffusion33 = damage_phaseField_getDamageDiffusion33 ( ipc , ip , el )
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case default
constitutive_getDamageDiffusion33 = lattice_DamageDiffusion33 ( 1 : 3 , 1 : 3 , material_phase ( ipc , ip , el ) )
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end select
end function constitutive_getDamageDiffusion33
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!--------------------------------------------------------------------------------------------------
!> @brief returns local (unregularised) temperature
!--------------------------------------------------------------------------------------------------
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function constitutive_getAdiabaticTemperature ( ipc , ip , el )
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use prec , only : &
pReal
use material , only : &
material_phase , &
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LOCAL_THERMAL_isothermal_ID , &
LOCAL_THERMAL_adiabatic_ID , &
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phase_thermal , &
phase_thermalInstance
use thermal_isothermal , only : &
thermal_isothermal_temperature
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use thermal_adiabatic , only : &
thermal_adiabatic_getTemperature
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implicit none
integer ( pInt ) , intent ( in ) :: &
ipc , & !< grain number
ip , & !< integration point number
el !< element number
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real ( pReal ) :: constitutive_getAdiabaticTemperature
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select case ( phase_thermal ( material_phase ( ipc , ip , el ) ) )
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case ( LOCAL_THERMAL_isothermal_ID )
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constitutive_getAdiabaticTemperature = &
thermal_isothermal_temperature ( phase_thermalInstance ( material_phase ( ipc , ip , el ) ) )
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case ( LOCAL_THERMAL_adiabatic_ID )
constitutive_getAdiabaticTemperature = thermal_adiabatic_getTemperature ( ipc , ip , el )
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end select
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end function constitutive_getAdiabaticTemperature
2014-09-05 22:01:27 +05:30
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!--------------------------------------------------------------------------------------------------
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!> @brief assigns the local/nonlocal value of temperature to local thermal state
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!--------------------------------------------------------------------------------------------------
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subroutine constitutive_putAdiabaticTemperature ( ipc , ip , el , localTemperature )
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use prec , only : &
pReal
use material , only : &
material_phase , &
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LOCAL_THERMAL_adiabatic_ID , &
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phase_thermal
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use thermal_adiabatic , only : &
thermal_adiabatic_putTemperature
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implicit none
integer ( pInt ) , intent ( in ) :: &
ipc , & !< grain number
ip , & !< integration point number
el !< element number
real ( pReal ) , intent ( in ) :: &
localTemperature
select case ( phase_thermal ( material_phase ( ipc , ip , el ) ) )
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case ( LOCAL_THERMAL_adiabatic_ID )
call thermal_adiabatic_putTemperature ( ipc , ip , el , localTemperature )
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end select
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end subroutine constitutive_putAdiabaticTemperature
2014-09-22 23:45:19 +05:30
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!--------------------------------------------------------------------------------------------------
!> @brief returns nonlocal (regularised) temperature
!--------------------------------------------------------------------------------------------------
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function constitutive_getTemperature ( ipc , ip , el )
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use prec , only : &
pReal
use material , only : &
mappingHomogenization , &
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material_phase , &
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fieldThermal , &
field_thermal_type , &
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FIELD_THERMAL_local_ID , &
FIELD_THERMAL_nonlocal_ID , &
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material_homog
implicit none
integer ( pInt ) , intent ( in ) :: &
ipc , & !< grain number
ip , & !< integration point number
el !< element number
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real ( pReal ) :: constitutive_getTemperature
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select case ( field_thermal_type ( material_homog ( ip , el ) ) )
case ( FIELD_THERMAL_local_ID )
constitutive_getTemperature = constitutive_getAdiabaticTemperature ( ipc , ip , el )
case ( FIELD_THERMAL_nonlocal_ID )
constitutive_getTemperature = fieldThermal ( material_homog ( ip , el ) ) % &
field ( 1 , mappingHomogenization ( 1 , ip , el ) ) ! Taylor type
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end select
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end function constitutive_getTemperature
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!--------------------------------------------------------------------------------------------------
!> @brief returns heat generation rate
!--------------------------------------------------------------------------------------------------
function constitutive_getHeatGeneration ( Tstar_v , Lp , ipc , ip , el )
use prec , only : &
pReal
use material , only : &
material_phase , &
LOCAL_THERMAL_isothermal_ID , &
LOCAL_THERMAL_adiabatic_ID , &
phase_thermal
use thermal_adiabatic , only : &
thermal_adiabatic_getHeatGeneration
implicit none
integer ( pInt ) , intent ( in ) :: &
ipc , & !< grain number
ip , & !< integration point number
el !< element number
real ( pReal ) , intent ( in ) , dimension ( 6 ) :: &
Tstar_v !< 2nd Piola-Kirchhoff stress
real ( pReal ) , intent ( in ) , dimension ( 3 , 3 ) :: &
Lp !< plastic velocity gradient
real ( pReal ) :: constitutive_getHeatGeneration
select case ( phase_thermal ( material_phase ( ipc , ip , el ) ) )
case ( LOCAL_THERMAL_isothermal_ID )
constitutive_getHeatGeneration = 0.0_pReal
case ( LOCAL_THERMAL_adiabatic_ID )
constitutive_getHeatGeneration = thermal_adiabatic_getHeatGeneration ( Tstar_v , Lp )
end select
end function constitutive_getHeatGeneration
2014-10-11 02:25:09 +05:30
!--------------------------------------------------------------------------------------------------
!> @brief returns local vacancy concentration
!--------------------------------------------------------------------------------------------------
function constitutive_getLocalVacancyConcentration ( ipc , ip , el )
use prec , only : &
pReal
use material , only : &
material_phase , &
LOCAL_VACANCY_constant_ID , &
LOCAL_VACANCY_generation_ID , &
phase_vacancy
use vacancy_generation , only : &
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vacancy_generation_getLocalConcentration
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use lattice , only : &
lattice_equilibriumVacancyConcentration
implicit none
integer ( pInt ) , intent ( in ) :: &
ipc , & !< grain number
ip , & !< integration point number
el !< element number
real ( pReal ) :: constitutive_getLocalVacancyConcentration
select case ( phase_vacancy ( material_phase ( ipc , ip , el ) ) )
case ( LOCAL_VACANCY_constant_ID )
constitutive_getLocalVacancyConcentration = &
lattice_equilibriumVacancyConcentration ( material_phase ( ipc , ip , el ) )
case ( LOCAL_VACANCY_generation_ID )
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constitutive_getLocalVacancyConcentration = vacancy_generation_getLocalConcentration ( ipc , ip , el )
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end select
end function constitutive_getLocalVacancyConcentration
!--------------------------------------------------------------------------------------------------
!> @brief Puts local vacancy concentration
!--------------------------------------------------------------------------------------------------
subroutine constitutive_putLocalVacancyConcentration ( ipc , ip , el , localVacancyConcentration )
use prec , only : &
pReal
use material , only : &
material_phase , &
LOCAL_VACANCY_generation_ID , &
phase_vacancy
use vacancy_generation , only : &
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vacancy_generation_putLocalConcentration
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implicit none
integer ( pInt ) , intent ( in ) :: &
ipc , & !< grain number
ip , & !< integration point number
el !< element number
real ( pReal ) , intent ( in ) :: &
localVacancyConcentration
select case ( phase_vacancy ( material_phase ( ipc , ip , el ) ) )
case ( LOCAL_VACANCY_generation_ID )
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call vacancy_generation_putLocalConcentration ( ipc , ip , el , localVacancyConcentration )
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end select
end subroutine constitutive_putLocalVacancyConcentration
!--------------------------------------------------------------------------------------------------
!> @brief returns nonlocal vacancy concentration
!--------------------------------------------------------------------------------------------------
function constitutive_getVacancyConcentration ( ipc , ip , el )
use prec , only : &
pReal
use material , only : &
material_phase , &
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LOCAL_VACANCY_constant_ID , &
LOCAL_VACANCY_generation_ID , &
phase_vacancy
use vacancy_generation , only : &
vacancy_generation_getConcentration
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use lattice , only : &
lattice_equilibriumVacancyConcentration
implicit none
integer ( pInt ) , intent ( in ) :: &
ipc , & !< grain number
ip , & !< integration point number
el !< element number
real ( pReal ) :: constitutive_getVacancyConcentration
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select case ( phase_vacancy ( material_phase ( ipc , ip , el ) ) )
case ( LOCAL_VACANCY_constant_ID )
constitutive_getVacancyConcentration = &
lattice_equilibriumVacancyConcentration ( material_phase ( ipc , ip , el ) )
case ( LOCAL_VACANCY_generation_ID )
constitutive_getVacancyConcentration = vacancy_generation_getConcentration ( ipc , ip , el )
end select
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end function constitutive_getVacancyConcentration
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!--------------------------------------------------------------------------------------------------
!> @brief returns vacancy diffusion tensor
!--------------------------------------------------------------------------------------------------
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function constitutive_getVacancyDiffusion33 ( ipc , ip , el )
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use prec , only : &
pReal
use lattice , only : &
lattice_VacancyDiffusion33
use material , only : &
material_phase , &
LOCAL_VACANCY_generation_ID , &
phase_vacancy
use vacancy_generation , only : &
vacancy_generation_getVacancyDiffusion33
implicit none
integer ( pInt ) , intent ( in ) :: &
ipc , & !< grain number
ip , & !< integration point number
el !< element number
real ( pReal ) , dimension ( 3 , 3 ) :: &
constitutive_getVacancyDiffusion33
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select case ( phase_vacancy ( material_phase ( ipc , ip , el ) ) )
case ( LOCAL_VACANCY_generation_ID )
constitutive_getVacancyDiffusion33 = &
vacancy_generation_getVacancyDiffusion33 ( ipc , ip , el )
end select
end function constitutive_getVacancyDiffusion33
!--------------------------------------------------------------------------------------------------
!> @brief returns vacancy diffusion tensor
!--------------------------------------------------------------------------------------------------
function constitutive_getVacancyMobility33 ( ipc , ip , el )
use prec , only : &
pReal
use material , only : &
material_phase , &
LOCAL_VACANCY_generation_ID , &
phase_vacancy
use vacancy_generation , only : &
vacancy_generation_getVacancyMobility33
implicit none
integer ( pInt ) , intent ( in ) :: &
ipc , & !< grain number
ip , & !< integration point number
el !< element number
real ( pReal ) , dimension ( 3 , 3 ) :: &
constitutive_getVacancyMobility33
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select case ( phase_vacancy ( material_phase ( ipc , ip , el ) ) )
case ( LOCAL_VACANCY_generation_ID )
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constitutive_getVacancyMobility33 = &
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vacancy_generation_getVacancyMobility33 ( constitutive_getTemperature ( ipc , ip , el ) , &
ipc , ip , el )
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end select
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end function constitutive_getVacancyMobility33
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!--------------------------------------------------------------------------------------------------
!> @brief returns vacancy chemical potential driving force
!--------------------------------------------------------------------------------------------------
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real ( pReal ) function constitutive_getVacancyEnergy ( ipc , ip , el )
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use prec , only : &
pReal
use material , only : &
material_phase , &
LOCAL_VACANCY_generation_ID , &
phase_vacancy
use vacancy_generation , only : &
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vacancy_generation_getVacancyEnergy
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implicit none
integer ( pInt ) , intent ( in ) :: &
ipc , & !< grain number
ip , & !< integration point number
el !< element number
select case ( phase_vacancy ( material_phase ( ipc , ip , el ) ) )
case ( LOCAL_VACANCY_generation_ID )
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constitutive_getVacancyEnergy = &
vacancy_generation_getVacancyEnergy ( ipc , ip , el )
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end select
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end function constitutive_getVacancyEnergy
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!--------------------------------------------------------------------------------------------------
!> @brief returns array of constitutive results
!--------------------------------------------------------------------------------------------------
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function constitutive_postResults ( Tstar_v , FeArray , ipc , ip , el )
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use prec , only : &
pReal
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use mesh , only : &
mesh_NcpElems , &
mesh_maxNips
use material , only : &
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plasticState , &
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damageState , &
thermalState , &
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vacancyState , &
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phase_plasticity , &
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phase_damage , &
phase_thermal , &
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phase_vacancy , &
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material_phase , &
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homogenization_maxNgrains , &
PLASTICITY_NONE_ID , &
PLASTICITY_J2_ID , &
PLASTICITY_PHENOPOWERLAW_ID , &
PLASTICITY_DISLOTWIN_ID , &
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PLASTICITY_DISLOKMC_ID , &
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PLASTICITY_DISLOUCLA_ID , &
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PLASTICITY_TITANMOD_ID , &
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PLASTICITY_NONLOCAL_ID , &
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LOCAL_DAMAGE_isoBrittle_ID , &
LOCAL_DAMAGE_isoDuctile_ID , &
LOCAL_DAMAGE_anisoBrittle_ID , &
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LOCAL_DAMAGE_anisoDuctile_ID , &
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LOCAL_DAMAGE_gurson_ID , &
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LOCAL_DAMAGE_phaseField_ID , &
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LOCAL_THERMAL_ADIABATIC_ID , &
LOCAL_VACANCY_generation_ID
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use plastic_j2 , only : &
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#ifdef HDF
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plastic_j2_postResults2 , &
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#endif
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plastic_j2_postResults
use plastic_phenopowerlaw , only : &
plastic_phenopowerlaw_postResults
use plastic_dislotwin , only : &
plastic_dislotwin_postResults
use plastic_dislokmc , only : &
plastic_dislokmc_postResults
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use plastic_disloucla , only : &
plastic_disloucla_postResults
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use plastic_titanmod , only : &
plastic_titanmod_postResults
use plastic_nonlocal , only : &
plastic_nonlocal_postResults
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#ifdef multiphysicsOut
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use damage_isoBrittle , only : &
damage_isoBrittle_postResults
use damage_isoDuctile , only : &
damage_isoDuctile_postResults
use damage_anisoBrittle , only : &
damage_anisoBrittle_postResults
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use damage_anisoDuctile , only : &
damage_anisoDuctile_postResults
use damage_gurson , only : &
damage_gurson_postResults
use damage_phaseField , only : &
damage_phaseField_postResults
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use thermal_adiabatic , only : &
thermal_adiabatic_postResults
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use vacancy_generation , only : &
vacancy_generation_postResults
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#endif
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implicit none
integer ( pInt ) , intent ( in ) :: &
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ipc , & !< grain number
ip , & !< integration point number
el !< element number
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#ifdef multiphysicsOut
real ( pReal ) , dimension ( plasticState ( material_phase ( ipc , ip , el ) ) % sizePostResults + &
damageState ( material_phase ( ipc , ip , el ) ) % sizePostResults + &
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thermalState ( material_phase ( ipc , ip , el ) ) % sizePostResults + &
vacancyState ( material_phase ( ipc , ip , el ) ) % sizePostResults ) :: &
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constitutive_postResults
#else
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real ( pReal ) , dimension ( plasticState ( material_phase ( ipc , ip , el ) ) % sizePostResults ) :: &
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constitutive_postResults
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#endif
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real ( pReal ) , intent ( in ) , dimension ( 3 , 3 , homogenization_maxNgrains , mesh_maxNips , mesh_NcpElems ) :: &
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FeArray !< elastic deformation gradient
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real ( pReal ) , intent ( in ) , dimension ( 6 ) :: &
Tstar_v !< 2nd Piola Kirchhoff stress tensor (Mandel)
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integer ( pInt ) :: &
startPos , endPos
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constitutive_postResults = 0.0_pReal
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startPos = 1_pInt
endPos = plasticState ( material_phase ( ipc , ip , el ) ) % sizePostResults
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select case ( phase_plasticity ( material_phase ( ipc , ip , el ) ) )
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case ( PLASTICITY_TITANMOD_ID )
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constitutive_postResults ( startPos : endPos ) = plastic_titanmod_postResults ( ipc , ip , el )
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case ( PLASTICITY_J2_ID )
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constitutive_postResults ( startPos : endPos ) = plastic_j2_postResults ( Tstar_v , ipc , ip , el )
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case ( PLASTICITY_PHENOPOWERLAW_ID )
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constitutive_postResults ( startPos : endPos ) = &
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plastic_phenopowerlaw_postResults ( Tstar_v , ipc , ip , el )
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case ( PLASTICITY_DISLOTWIN_ID )
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constitutive_postResults ( startPos : endPos ) = &
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plastic_dislotwin_postResults ( Tstar_v , constitutive_getTemperature ( ipc , ip , el ) , ipc , ip , el )
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case ( PLASTICITY_DISLOKMC_ID )
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constitutive_postResults ( startPos : endPos ) = &
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plastic_dislokmc_postResults ( Tstar_v , constitutive_getTemperature ( ipc , ip , el ) , ipc , ip , el )
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case ( PLASTICITY_DISLOUCLA_ID )
constitutive_postResults ( startPos : endPos ) = &
plastic_disloucla_postResults ( Tstar_v , constitutive_getTemperature ( ipc , ip , el ) , ipc , ip , el )
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case ( PLASTICITY_NONLOCAL_ID )
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constitutive_postResults ( startPos : endPos ) = &
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plastic_nonlocal_postResults ( Tstar_v , FeArray , ip , el )
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end select
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#ifdef multiphysicsOut
startPos = endPos + 1_pInt
endPos = endPos + damageState ( material_phase ( ipc , ip , el ) ) % sizePostResults
select case ( phase_damage ( material_phase ( ipc , ip , el ) ) )
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case ( LOCAL_DAMAGE_isoBrittle_ID )
constitutive_postResults ( startPos : endPos ) = damage_isoBrittle_postResults ( ipc , ip , el )
case ( LOCAL_DAMAGE_isoDuctile_ID )
constitutive_postResults ( startPos : endPos ) = damage_isoDuctile_postResults ( ipc , ip , el )
case ( LOCAL_DAMAGE_anisoBrittle_ID )
constitutive_postResults ( startPos : endPos ) = damage_anisoBrittle_postResults ( ipc , ip , el )
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case ( LOCAL_DAMAGE_anisoDuctile_ID )
constitutive_postResults ( startPos : endPos ) = damage_anisoDuctile_postResults ( ipc , ip , el )
case ( LOCAL_DAMAGE_gurson_ID )
constitutive_postResults ( startPos : endPos ) = damage_gurson_postResults ( ipc , ip , el )
case ( LOCAL_DAMAGE_phaseField_ID )
constitutive_postResults ( startPos : endPos ) = damage_phaseField_postResults ( ipc , ip , el )
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end select
startPos = endPos + 1_pInt
endPos = endPos + thermalState ( material_phase ( ipc , ip , el ) ) % sizePostResults
select case ( phase_thermal ( material_phase ( ipc , ip , el ) ) )
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case ( LOCAL_THERMAL_ADIABATIC_ID )
constitutive_postResults ( startPos : endPos ) = thermal_adiabatic_postResults ( ipc , ip , el )
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end select
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startPos = endPos + 1_pInt
endPos = endPos + vacancyState ( material_phase ( ipc , ip , el ) ) % sizePostResults
select case ( phase_vacancy ( material_phase ( ipc , ip , el ) ) )
case ( LOCAL_VACANCY_generation_ID )
constitutive_postResults ( startPos : endPos ) = vacancy_generation_postResults ( ipc , ip , el )
end select
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#endif
openmp parallelization working again (at least for j2 and nonlocal constitutive model).
In order to keep it like that, please follow these simple rules:
DON'T use implicit array subscripts:
example: real, dimension(3,3) :: A,B
A(:,2) = B(:,1) <--- DON'T USE
A(1:3,2) = B(1:3,1) <--- BETTER USE
In many cases the use of explicit array subscripts is inevitable for parallelization. Additionally, it is an easy means to prevent memory leaks.
Enclose all write statements with the following:
!$OMP CRITICAL (write2out)
<your write statement>
!$OMP END CRITICAL (write2out)
Whenever you change something in the code and are not sure if it affects parallelization and leads to nonconforming behavior, please ask me and/or Franz to check this.
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end function constitutive_postResults
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end module constitutive