ordered by dimension and set private where possible
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@ -40,32 +40,20 @@ module lattice
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real(pReal), allocatable, dimension(:,:,:,:), protected, public :: &
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lattice_Sslip_v, & !< Mandel notation of lattice_Sslip
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lattice_Scleavage_v !< Mandel notation of lattice_Scleavege
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real(pReal), allocatable, dimension(:,:,:), protected, public :: &
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lattice_sn, & !< normal direction of slip system
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lattice_sd, & !< slip direction of slip system
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lattice_st !< sd x sn
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! rotation and Schmid matrices, normal, shear direction and d x n of twin systems
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real(pReal), allocatable, dimension(:,:,:,:), protected, public :: &
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lattice_Scleavage_v, & !< Mandel notation of lattice_Scleavege
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lattice_Qtrans, & !< Total rotation: Q = R*B
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lattice_Strans, & !< Eigendeformation tensor for phase transformation
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lattice_Stwin, &
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lattice_Qtwin
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real(pReal), allocatable, dimension(:,:,:), protected, public :: &
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lattice_sn, & !< normal direction of slip system
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lattice_st, & !< sd x sn
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lattice_sd, & !< slip direction of slip system
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lattice_Stwin_v, &
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lattice_tn, &
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lattice_td, &
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lattice_tt
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real(pReal), allocatable, dimension(:,:,:), protected, public :: &
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lattice_Strans_v, & !< Eigendeformation tensor in vector form
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lattice_projectionTrans !< Matrix for projection of slip to fault-band (twin) systems for strain-induced martensite nucleation
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real(pReal), allocatable, dimension(:,:,:,:), protected, public :: &
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lattice_Qtrans, & !< Total rotation: Q = R*B
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lattice_Strans !< Eigendeformation tensor for phase transformation
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real(pReal), allocatable, dimension(:,:), protected, public :: &
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lattice_shearTwin, & !< characteristic twin shear
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lattice_shearTrans !< characteristic transformation shear
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@ -73,6 +61,11 @@ module lattice
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integer(pInt), allocatable, dimension(:), protected, public :: &
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lattice_NnonSchmid !< total # of non-Schmid contributions for each structure
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real(pReal), allocatable, dimension(:,:,:), private :: &
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lattice_tn, &
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lattice_td, &
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lattice_tt
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!--------------------------------------------------------------------------------------------------
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! face centered cubic
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integer(pInt), dimension(LATTICE_maxNslipFamily), parameter, public :: &
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@ -1137,9 +1130,7 @@ module lattice
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integer(kind(LATTICE_undefined_ID)), dimension(:), allocatable, public, protected :: &
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lattice_structure, trans_lattice_structure
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integer(pInt), dimension(2), parameter, private :: &
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integer(pInt), dimension(2), parameter, private :: &
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lattice_NsymOperations = [24_pInt,12_pInt]
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real(pReal), dimension(4,36), parameter, private :: &
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@ -1264,16 +1255,10 @@ subroutine lattice_init
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allocate(lattice_Sslip_v(6,1+2*lattice_maxNnonSchmid,lattice_maxNslip,Nphases),source=0.0_pReal)
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allocate(lattice_Scleavage(3,3,3,lattice_maxNslip,Nphases),source=0.0_pReal)
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allocate(lattice_Scleavage_v(6,3,lattice_maxNslip,Nphases),source=0.0_pReal)
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allocate(lattice_sd(3,lattice_maxNslip,Nphases),source=0.0_pReal)
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allocate(lattice_st(3,lattice_maxNslip,Nphases),source=0.0_pReal)
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allocate(lattice_sn(3,lattice_maxNslip,Nphases),source=0.0_pReal)
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allocate(lattice_Qtwin(3,3,lattice_maxNtwin,Nphases),source=0.0_pReal)
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allocate(lattice_Qtwin(3,3,lattice_maxNtwin,Nphases),source=0.0_pReal)
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allocate(lattice_Stwin(3,3,lattice_maxNtwin,Nphases),source=0.0_pReal)
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allocate(lattice_Stwin_v(6,lattice_maxNtwin,Nphases),source=0.0_pReal)
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allocate(lattice_td(3,lattice_maxNtwin,Nphases),source=0.0_pReal)
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allocate(lattice_tt(3,lattice_maxNtwin,Nphases),source=0.0_pReal)
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allocate(lattice_tn(3,lattice_maxNtwin,Nphases),source=0.0_pReal)
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allocate(lattice_shearTwin(lattice_maxNtwin,Nphases),source=0.0_pReal)
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allocate(lattice_shearTrans(lattice_maxNtrans,Nphases),source=0.0_pReal)
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@ -1301,6 +1286,14 @@ subroutine lattice_init
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allocate(a_fcc(Nphases),source=0.0_pReal)
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allocate(a_bcc(Nphases),source=0.0_pReal)
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allocate(lattice_td(3,lattice_maxNtwin,Nphases),source=0.0_pReal)
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allocate(lattice_tt(3,lattice_maxNtwin,Nphases),source=0.0_pReal)
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allocate(lattice_tn(3,lattice_maxNtwin,Nphases),source=0.0_pReal)
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allocate(lattice_sd(3,lattice_maxNslip,Nphases),source=0.0_pReal)
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allocate(lattice_st(3,lattice_maxNslip,Nphases),source=0.0_pReal)
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allocate(lattice_sn(3,lattice_maxNslip,Nphases),source=0.0_pReal)
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do p = 1, size(config_phase)
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tag = config_phase(p)%getString('lattice_structure')
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select case(trim(tag))
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