consistent naming
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@ -458,7 +458,7 @@ function homogenization_K_phi(ce)
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do co = 1, homogenization_Nconstituents(ho)
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homogenization_K_phi = homogenization_K_phi + &
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crystallite_push33ToRef(co,ce,lattice_D(1:3,1:3,material_phaseID(co,ce)))
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crystallite_push33ToRef(co,ce,lattice_K_phi(1:3,1:3,material_phaseID(co,ce)))
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enddo
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homogenization_K_phi = &
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@ -114,7 +114,7 @@ module function homogenization_mu_phi(ce) result(mu)
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integer, intent(in) :: ce
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real(pReal) :: mu
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mu = lattice_M(material_phaseID(1,ce))
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mu = lattice_mu_phi(material_phaseID(1,ce))
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end function homogenization_mu_phi
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@ -117,10 +117,9 @@ module function homogenization_K_T(ce) result(K)
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integer :: &
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co
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K = 0.0_pReal
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do co = 1, homogenization_Nconstituents(material_homogenizationID(ce))
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K = K + crystallite_push33ToRef(co,ce,lattice_K(:,:,material_phaseID(co,ce)))
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K = crystallite_push33ToRef(co,1,lattice_K_T(:,:,material_phaseID(1,ce)))
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do co = 2, homogenization_Nconstituents(material_homogenizationID(ce))
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K = K + crystallite_push33ToRef(co,ce,lattice_K_T(:,:,material_phaseID(co,ce)))
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enddo
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K = K / real(homogenization_Nconstituents(material_homogenizationID(ce)),pReal)
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@ -394,13 +394,13 @@ module lattice
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! SHOULD NOT BE PART OF LATTICE BEGIN
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real(pReal), dimension(:), allocatable, public, protected :: &
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lattice_mu, lattice_nu, &
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lattice_M, &
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lattice_mu_phi, &
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lattice_rho, &
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lattice_c_p
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real(pReal), dimension(:,:,:), allocatable, public, protected :: &
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lattice_C66, &
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lattice_K, &
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lattice_D
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lattice_K_T, &
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lattice_K_phi
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integer(kind(lattice_UNDEFINED_ID)), dimension(:), allocatable, public, protected :: &
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lattice_structure
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! SHOULD NOT BE PART OF LATTICE END
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@ -470,10 +470,10 @@ subroutine lattice_init
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allocate(lattice_structure(Nphases),source = lattice_UNDEFINED_ID)
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allocate(lattice_C66(6,6,Nphases), source=0.0_pReal)
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allocate(lattice_K (3,3,Nphases), source=0.0_pReal)
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allocate(lattice_D (3,3,Nphases), source=0.0_pReal)
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allocate(lattice_K_T (3,3,Nphases), source=0.0_pReal)
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allocate(lattice_K_phi (3,3,Nphases), source=0.0_pReal)
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allocate(lattice_M,&
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allocate(lattice_mu_phi,&
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lattice_rho,lattice_c_p, &
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lattice_mu, lattice_nu,&
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source=[(0.0_pReal,i=1,Nphases)])
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@ -527,10 +527,10 @@ subroutine lattice_init
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if (phase%contains('thermal')) then
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thermal => phase%get('thermal')
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lattice_K(1,1,ph) = thermal%get_asFloat('K_11',defaultVal=0.0_pReal)
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lattice_K(2,2,ph) = thermal%get_asFloat('K_22',defaultVal=0.0_pReal)
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lattice_K(3,3,ph) = thermal%get_asFloat('K_33',defaultVal=0.0_pReal)
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lattice_K(1:3,1:3,ph) = lattice_applyLatticeSymmetry33(lattice_K(1:3,1:3,ph), &
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lattice_K_T(1,1,ph) = thermal%get_asFloat('K_11',defaultVal=0.0_pReal)
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lattice_K_T(2,2,ph) = thermal%get_asFloat('K_22',defaultVal=0.0_pReal)
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lattice_K_T(3,3,ph) = thermal%get_asFloat('K_33',defaultVal=0.0_pReal)
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lattice_K_T(1:3,1:3,ph) = lattice_applyLatticeSymmetry33(lattice_K_T(1:3,1:3,ph), &
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phase%get_asString('lattice'))
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lattice_c_p(ph) = thermal%get_asFloat('c_p', defaultVal=0.0_pReal)
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endif
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@ -539,13 +539,13 @@ subroutine lattice_init
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if (phase%contains('damage')) then
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damage => phase%get('damage')
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damage => damage%get(1)
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lattice_D(1,1,ph) = damage%get_asFloat('D_11',defaultVal=0.0_pReal)
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lattice_D(2,2,ph) = damage%get_asFloat('D_22',defaultVal=0.0_pReal)
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lattice_D(3,3,ph) = damage%get_asFloat('D_33',defaultVal=0.0_pReal)
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lattice_D(1:3,1:3,ph) = lattice_applyLatticeSymmetry33(lattice_D(1:3,1:3,ph), &
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lattice_K_phi(1,1,ph) = damage%get_asFloat('D_11',defaultVal=0.0_pReal)
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lattice_K_phi(2,2,ph) = damage%get_asFloat('D_22',defaultVal=0.0_pReal)
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lattice_K_phi(3,3,ph) = damage%get_asFloat('D_33',defaultVal=0.0_pReal)
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lattice_K_phi(1:3,1:3,ph) = lattice_applyLatticeSymmetry33(lattice_K_phi(1:3,1:3,ph), &
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phase%get_asString('lattice'))
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lattice_M(ph) = damage%get_asFloat('M',defaultVal=0.0_pReal)
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lattice_mu_phi(ph) = damage%get_asFloat('M',defaultVal=0.0_pReal)
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endif
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! SHOULD NOT BE PART OF LATTICE END
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