2015-04-21 20:46:13 +05:30
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!--------------------------------------------------------------------------------------------------
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2014-11-06 00:41:09 +05:30
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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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!> @author David Cereceda, Lawrence Livermore National Laboratory
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!> @author Martin Diehl, Max-Planck-Institut für Eisenforschung GmbH
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2019-01-06 04:03:18 +05:30
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!> @brief crystal plasticity model for bcc metals, especially Tungsten
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2014-11-06 00:41:09 +05:30
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!--------------------------------------------------------------------------------------------------
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2021-01-27 01:22:48 +05:30
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submodule(phase:plastic) dislotungsten
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2020-02-14 13:30:14 +05:30
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2019-12-03 02:21:25 +05:30
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real(pReal), parameter :: &
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2019-03-22 15:25:17 +05:30
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kB = 1.38e-23_pReal !< Boltzmann constant in J/Kelvin
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2020-02-14 13:30:14 +05:30
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2019-12-03 02:21:25 +05:30
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type :: tParameters
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2019-03-22 15:25:17 +05:30
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real(pReal) :: &
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2020-03-16 16:23:36 +05:30
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D = 1.0_pReal, & !< grain size
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mu = 1.0_pReal, & !< equivalent shear modulus
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D_0 = 1.0_pReal, & !< prefactor for self-diffusion coefficient
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Q_cl = 1.0_pReal !< activation energy for dislocation climb
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2020-02-14 13:30:14 +05:30
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real(pReal), allocatable, dimension(:) :: &
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2021-04-26 13:56:50 +05:30
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b_sl, & !< magnitude of Burgers vector [m]
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2021-07-24 01:34:39 +05:30
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d_caron, & !< distance of spontaneous annhihilation
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2019-03-22 15:25:17 +05:30
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i_sl, & !< Adj. parameter for distance between 2 forest dislocations
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2020-09-22 18:05:05 +05:30
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f_at, & !< factor to calculate atomic volume
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2020-09-23 04:25:19 +05:30
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tau_Peierls, & !< Peierls stress
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2019-03-22 15:25:17 +05:30
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!* mobility law parameters
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2020-09-22 18:05:05 +05:30
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Q_s, & !< activation energy for glide [J]
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v_0, & !< dislocation velocity prefactor [m/s]
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2019-03-22 15:25:17 +05:30
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p, & !< p-exponent in glide velocity
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q, & !< q-exponent in glide velocity
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B, & !< friction coefficient
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2020-09-22 18:05:05 +05:30
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h, & !< height of the kink pair
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2019-03-22 15:25:17 +05:30
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w, & !< width of the kink pair
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omega !< attempt frequency for kink pair nucleation
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2020-02-14 13:30:14 +05:30
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real(pReal), allocatable, dimension(:,:) :: &
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2019-03-22 15:25:17 +05:30
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h_sl_sl, & !< slip resistance from slip activity
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2020-03-16 16:23:36 +05:30
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forestProjection
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2020-02-14 13:30:14 +05:30
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real(pReal), allocatable, dimension(:,:,:) :: &
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2020-03-16 18:03:14 +05:30
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P_sl, &
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2021-07-21 19:59:57 +05:30
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P_nS_pos, &
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P_nS_neg
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2019-03-22 15:25:17 +05:30
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integer :: &
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sum_N_sl !< total number of active slip system
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2020-02-14 13:30:14 +05:30
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character(len=pStringLen), allocatable, dimension(:) :: &
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output
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2019-03-22 15:25:17 +05:30
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logical :: &
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dipoleFormation !< flag indicating consideration of dipole formation
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2021-07-27 00:08:43 +05:30
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character(len=:), allocatable, dimension(:) :: &
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systems_sl
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end type tParameters !< container type for internal constitutive parameters
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2020-02-14 13:30:14 +05:30
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2021-07-27 00:08:43 +05:30
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type :: tDislotungstenState
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2019-03-22 15:25:17 +05:30
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real(pReal), dimension(:,:), pointer :: &
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rho_mob, &
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rho_dip, &
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gamma_sl
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2021-07-27 00:08:43 +05:30
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end type tDislotungstenState
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2020-02-14 13:30:14 +05:30
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2021-07-27 02:26:40 +05:30
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type :: tDislotungstenDependentState
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2019-03-22 15:25:17 +05:30
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real(pReal), dimension(:,:), allocatable :: &
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Lambda_sl, &
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2021-07-24 01:26:34 +05:30
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tau_pass
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2021-07-27 02:26:40 +05:30
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end type tDislotungstenDependentState
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2018-11-29 12:44:20 +05:30
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2019-01-13 21:33:49 +05:30
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!--------------------------------------------------------------------------------------------------
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! containers for parameters and state
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2019-12-03 02:21:25 +05:30
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type(tParameters), allocatable, dimension(:) :: param
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2020-08-15 19:32:10 +05:30
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type(tDisloTungstenState), allocatable, dimension(:) :: &
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2019-03-22 15:25:17 +05:30
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dotState, &
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state
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2021-07-27 02:26:40 +05:30
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type(tDisloTungstenDependentState), allocatable, dimension(:) :: dependentState
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2018-11-28 21:42:06 +05:30
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2014-11-06 00:41:09 +05:30
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contains
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2019-01-07 12:34:02 +05:30
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2014-11-06 00:41:09 +05:30
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!--------------------------------------------------------------------------------------------------
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2020-02-14 13:30:14 +05:30
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!> @brief Perform module initialization.
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2014-11-06 00:41:09 +05:30
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!> @details reads in material parameters, allocates arrays, and does sanity checks
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!--------------------------------------------------------------------------------------------------
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2020-11-29 16:28:39 +05:30
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module function plastic_dislotungsten_init() result(myPlasticity)
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2020-02-14 13:30:14 +05:30
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2020-08-15 19:32:10 +05:30
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logical, dimension(:), allocatable :: myPlasticity
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2019-03-22 15:25:17 +05:30
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integer :: &
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2021-08-11 03:17:13 +05:30
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ph, &
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2021-03-05 01:46:36 +05:30
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Nmembers, &
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2019-03-22 15:25:17 +05:30
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sizeState, sizeDotState, &
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startIndex, endIndex
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2020-03-16 19:32:40 +05:30
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integer, dimension(:), allocatable :: &
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2020-03-16 03:37:23 +05:30
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N_sl
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2020-03-16 19:32:40 +05:30
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real(pReal),dimension(:), allocatable :: &
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2020-03-16 16:23:36 +05:30
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rho_mob_0, & !< initial dislocation density
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rho_dip_0, & !< initial dipole density
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a !< non-Schmid coefficients
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2019-03-22 15:25:17 +05:30
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character(len=pStringLen) :: &
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extmsg = ''
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2020-08-15 19:32:10 +05:30
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class(tNode), pointer :: &
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phases, &
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phase, &
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2020-11-03 03:16:46 +05:30
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mech, &
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2020-08-15 19:32:10 +05:30
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pl
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2020-02-14 13:30:14 +05:30
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2021-02-14 11:36:14 +05:30
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2020-11-29 16:28:39 +05:30
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myPlasticity = plastic_active('dislotungsten')
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2021-02-14 11:36:14 +05:30
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if(count(myPlasticity) == 0) return
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2021-01-26 12:24:24 +05:30
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2021-02-13 23:27:41 +05:30
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print'(/,a)', ' <<<+- phase:mechanical:plastic:dislotungsten init -+>>>'
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2021-02-14 11:36:14 +05:30
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print'(a,i0)', ' # phases: ',count(myPlasticity); flush(IO_STDOUT)
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2021-02-13 17:37:35 +05:30
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2021-03-18 20:06:40 +05:30
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print*, 'D. Cereceda et al., International Journal of Plasticity 78:242–256, 2016'
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2021-03-26 01:33:46 +05:30
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print*, 'https://doi.org/10.1016/j.ijplas.2015.09.002'
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2020-02-14 13:30:14 +05:30
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2020-09-13 14:09:17 +05:30
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phases => config_material%get('phase')
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2021-02-14 11:36:14 +05:30
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allocate(param(phases%length))
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allocate(state(phases%length))
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allocate(dotState(phases%length))
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allocate(dependentState(phases%length))
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2021-02-16 20:36:09 +05:30
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do ph = 1, phases%length
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if(.not. myPlasticity(ph)) cycle
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associate(prm => param(ph), dot => dotState(ph), stt => state(ph), dst => dependentState(ph))
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phase => phases%get(ph)
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2021-03-25 23:52:59 +05:30
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mech => phase%get('mechanical')
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pl => mech%get('plastic')
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2020-08-15 19:32:10 +05:30
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#if defined (__GFORTRAN__)
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prm%output = output_as1dString(pl)
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2020-08-15 19:32:10 +05:30
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#else
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prm%output = pl%get_as1dString('output',defaultVal=emptyStringArray)
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2020-08-15 19:32:10 +05:30
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#endif
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2020-02-14 13:30:14 +05:30
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2021-07-21 19:53:21 +05:30
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prm%mu = elastic_mu(ph)
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2019-01-06 04:03:18 +05:30
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2018-11-28 00:30:45 +05:30
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!--------------------------------------------------------------------------------------------------
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! slip related parameters
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2021-03-11 22:30:07 +05:30
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N_sl = pl%get_as1dInt('N_sl',defaultVal=emptyIntArray)
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2020-03-16 19:32:40 +05:30
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prm%sum_N_sl = sum(abs(N_sl))
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2019-03-22 15:25:17 +05:30
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slipActive: if (prm%sum_N_sl > 0) then
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2021-07-27 00:08:43 +05:30
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prm%systems_sl = lattice_labels_slip(N_sl,phase_lattice(ph))
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2021-07-21 19:16:38 +05:30
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prm%P_sl = lattice_SchmidMatrix_slip(N_sl,phase_lattice(ph),phase_cOverA(ph))
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2020-02-14 13:30:14 +05:30
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2021-07-21 19:16:38 +05:30
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if (phase_lattice(ph) == 'cI') then
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2021-03-11 22:30:07 +05:30
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a = pl%get_as1dFloat('a_nonSchmid',defaultVal = emptyRealArray)
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2021-07-21 19:59:57 +05:30
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prm%P_nS_pos = lattice_nonSchmidMatrix(N_sl,a,+1)
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prm%P_nS_neg = lattice_nonSchmidMatrix(N_sl,a,-1)
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2019-03-22 15:25:17 +05:30
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else
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2021-07-21 19:59:57 +05:30
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prm%P_nS_pos = prm%P_sl
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prm%P_nS_neg = prm%P_sl
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2019-03-22 15:25:17 +05:30
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endif
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2020-02-14 13:30:14 +05:30
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2021-06-19 18:43:27 +05:30
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prm%h_sl_sl = lattice_interaction_SlipBySlip(N_sl,pl%get_as1dFloat('h_sl-sl'), &
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2021-07-21 19:16:38 +05:30
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phase_lattice(ph))
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prm%forestProjection = lattice_forestProjection_edge(N_sl,phase_lattice(ph),&
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phase_cOverA(ph))
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2020-03-16 16:23:36 +05:30
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prm%forestProjection = transpose(prm%forestProjection)
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2020-02-14 13:30:14 +05:30
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2021-03-11 22:30:07 +05:30
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rho_mob_0 = pl%get_as1dFloat('rho_mob_0', requiredSize=size(N_sl))
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rho_dip_0 = pl%get_as1dFloat('rho_dip_0', requiredSize=size(N_sl))
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prm%v_0 = pl%get_as1dFloat('v_0', requiredSize=size(N_sl))
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prm%b_sl = pl%get_as1dFloat('b_sl', requiredSize=size(N_sl))
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prm%Q_s = pl%get_as1dFloat('Q_s', requiredSize=size(N_sl))
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2020-03-16 03:37:23 +05:30
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2021-03-11 22:30:07 +05:30
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prm%i_sl = pl%get_as1dFloat('i_sl', requiredSize=size(N_sl))
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prm%tau_Peierls = pl%get_as1dFloat('tau_Peierls', requiredSize=size(N_sl))
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2021-07-23 10:52:52 +05:30
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prm%p = pl%get_as1dFloat('p_sl', requiredSize=size(N_sl))
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prm%q = pl%get_as1dFloat('q_sl', requiredSize=size(N_sl))
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2021-03-11 22:30:07 +05:30
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prm%h = pl%get_as1dFloat('h', requiredSize=size(N_sl))
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prm%w = pl%get_as1dFloat('w', requiredSize=size(N_sl))
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prm%omega = pl%get_as1dFloat('omega', requiredSize=size(N_sl))
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prm%B = pl%get_as1dFloat('B', requiredSize=size(N_sl))
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2020-08-15 19:32:10 +05:30
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2021-07-23 10:52:52 +05:30
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prm%D = pl%get_asFloat('D')
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prm%D_0 = pl%get_asFloat('D_0')
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prm%Q_cl = pl%get_asFloat('Q_cl')
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prm%f_at = pl%get_asFloat('f_at') * prm%b_sl**3.0_pReal
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2020-09-14 00:30:34 +05:30
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2020-11-29 16:28:39 +05:30
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prm%dipoleformation = .not. pl%get_asBool('no_dipole_formation', defaultVal = .false.)
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2020-02-14 13:30:14 +05:30
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2019-03-22 15:25:17 +05:30
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! expand: family => system
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2021-07-23 10:52:52 +05:30
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rho_mob_0 = math_expand(rho_mob_0, N_sl)
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rho_dip_0 = math_expand(rho_dip_0, N_sl)
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prm%q = math_expand(prm%q, N_sl)
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prm%p = math_expand(prm%p, N_sl)
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prm%Q_s = math_expand(prm%Q_s, N_sl)
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prm%b_sl = math_expand(prm%b_sl, N_sl)
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prm%h = math_expand(prm%h, N_sl)
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prm%w = math_expand(prm%w, N_sl)
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prm%omega = math_expand(prm%omega, N_sl)
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prm%tau_Peierls = math_expand(prm%tau_Peierls, N_sl)
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prm%v_0 = math_expand(prm%v_0, N_sl)
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prm%B = math_expand(prm%B, N_sl)
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prm%i_sl = math_expand(prm%i_sl, N_sl)
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prm%f_at = math_expand(prm%f_at, N_sl)
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2021-07-24 01:34:39 +05:30
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prm%d_caron = pl%get_asFloat('D_a') * prm%b_sl
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2020-02-14 13:30:14 +05:30
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2019-03-22 15:25:17 +05:30
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! sanity checks
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2020-03-16 16:23:36 +05:30
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if ( prm%D_0 <= 0.0_pReal) extmsg = trim(extmsg)//' D_0'
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if ( prm%Q_cl <= 0.0_pReal) extmsg = trim(extmsg)//' Q_cl'
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2020-08-15 19:32:10 +05:30
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if (any(rho_mob_0 < 0.0_pReal)) extmsg = trim(extmsg)//' rho_mob_0'
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if (any(rho_dip_0 < 0.0_pReal)) extmsg = trim(extmsg)//' rho_dip_0'
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2020-09-22 18:05:05 +05:30
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if (any(prm%v_0 < 0.0_pReal)) extmsg = trim(extmsg)//' v_0'
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2020-03-16 16:23:36 +05:30
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if (any(prm%b_sl <= 0.0_pReal)) extmsg = trim(extmsg)//' b_sl'
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2020-09-22 18:05:05 +05:30
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if (any(prm%Q_s <= 0.0_pReal)) extmsg = trim(extmsg)//' Q_s'
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2020-09-23 04:25:19 +05:30
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if (any(prm%tau_Peierls < 0.0_pReal)) extmsg = trim(extmsg)//' tau_Peierls'
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2021-07-24 01:34:39 +05:30
|
|
|
|
if (any(prm%B < 0.0_pReal)) extmsg = trim(extmsg)//' B'
|
|
|
|
|
if (any(prm%d_caron < 0.0_pReal)) extmsg = trim(extmsg)//' d_caron(D_a,b_sl)'
|
2020-09-22 18:05:05 +05:30
|
|
|
|
if (any(prm%f_at <= 0.0_pReal)) extmsg = trim(extmsg)//' f_at or b_sl'
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2019-03-22 15:25:17 +05:30
|
|
|
|
else slipActive
|
2020-03-16 16:23:36 +05:30
|
|
|
|
rho_mob_0= emptyRealArray; rho_dip_0 = emptyRealArray
|
2021-07-24 01:34:39 +05:30
|
|
|
|
allocate(prm%b_sl,prm%d_caron,prm%i_sl,prm%f_at,prm%tau_Peierls, &
|
2020-09-22 18:05:05 +05:30
|
|
|
|
prm%Q_s,prm%v_0,prm%p,prm%q,prm%B,prm%h,prm%w,prm%omega, &
|
2020-03-16 16:23:36 +05:30
|
|
|
|
source = emptyRealArray)
|
|
|
|
|
allocate(prm%forestProjection(0,0))
|
|
|
|
|
allocate(prm%h_sl_sl (0,0))
|
2019-03-22 15:25:17 +05:30
|
|
|
|
endif slipActive
|
2018-11-28 10:29:03 +05:30
|
|
|
|
|
2014-11-06 00:41:09 +05:30
|
|
|
|
!--------------------------------------------------------------------------------------------------
|
|
|
|
|
! allocate state arrays
|
2021-04-06 15:08:44 +05:30
|
|
|
|
Nmembers = count(material_phaseID == ph)
|
2019-03-22 15:25:17 +05:30
|
|
|
|
sizeDotState = size(['rho_mob ','rho_dip ','gamma_sl']) * prm%sum_N_sl
|
|
|
|
|
sizeState = sizeDotState
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2021-03-05 01:46:36 +05:30
|
|
|
|
call phase_allocateState(plasticState(ph),Nmembers,sizeState,sizeDotState,0)
|
2018-12-05 03:00:07 +05:30
|
|
|
|
|
2019-01-06 04:03:18 +05:30
|
|
|
|
!--------------------------------------------------------------------------------------------------
|
2020-03-16 03:37:23 +05:30
|
|
|
|
! state aliases and initialization
|
2019-03-22 15:25:17 +05:30
|
|
|
|
startIndex = 1
|
|
|
|
|
endIndex = prm%sum_N_sl
|
2021-02-16 20:36:09 +05:30
|
|
|
|
stt%rho_mob => plasticState(ph)%state(startIndex:endIndex,:)
|
2021-03-05 01:46:36 +05:30
|
|
|
|
stt%rho_mob = spread(rho_mob_0,2,Nmembers)
|
2021-02-16 20:36:09 +05:30
|
|
|
|
dot%rho_mob => plasticState(ph)%dotState(startIndex:endIndex,:)
|
|
|
|
|
plasticState(ph)%atol(startIndex:endIndex) = pl%get_asFloat('atol_rho',defaultVal=1.0_pReal)
|
|
|
|
|
if (any(plasticState(ph)%atol(startIndex:endIndex) < 0.0_pReal)) extmsg = trim(extmsg)//' atol_rho'
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2019-03-22 15:25:17 +05:30
|
|
|
|
startIndex = endIndex + 1
|
|
|
|
|
endIndex = endIndex + prm%sum_N_sl
|
2021-02-16 20:36:09 +05:30
|
|
|
|
stt%rho_dip => plasticState(ph)%state(startIndex:endIndex,:)
|
2021-03-05 01:46:36 +05:30
|
|
|
|
stt%rho_dip = spread(rho_dip_0,2,Nmembers)
|
2021-02-16 20:36:09 +05:30
|
|
|
|
dot%rho_dip => plasticState(ph)%dotState(startIndex:endIndex,:)
|
|
|
|
|
plasticState(ph)%atol(startIndex:endIndex) = pl%get_asFloat('atol_rho',defaultVal=1.0_pReal)
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2019-03-22 15:25:17 +05:30
|
|
|
|
startIndex = endIndex + 1
|
|
|
|
|
endIndex = endIndex + prm%sum_N_sl
|
2021-02-16 20:36:09 +05:30
|
|
|
|
stt%gamma_sl => plasticState(ph)%state(startIndex:endIndex,:)
|
|
|
|
|
dot%gamma_sl => plasticState(ph)%dotState(startIndex:endIndex,:)
|
2021-06-25 10:27:08 +05:30
|
|
|
|
plasticState(ph)%atol(startIndex:endIndex) = pl%get_asFloat('atol_gamma',defaultVal=1.0e-6_pReal)
|
|
|
|
|
if(any(plasticState(ph)%atol(startIndex:endIndex) < 0.0_pReal)) extmsg = trim(extmsg)//' atol_gamma'
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2021-07-24 01:26:34 +05:30
|
|
|
|
allocate(dst%Lambda_sl(prm%sum_N_sl,Nmembers), source=0.0_pReal)
|
|
|
|
|
allocate(dst%tau_pass(prm%sum_N_sl,Nmembers), source=0.0_pReal)
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2019-03-22 15:25:17 +05:30
|
|
|
|
end associate
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2020-03-15 00:33:57 +05:30
|
|
|
|
!--------------------------------------------------------------------------------------------------
|
|
|
|
|
! exit if any parameter is out of range
|
2020-11-29 16:28:39 +05:30
|
|
|
|
if (extmsg /= '') call IO_error(211,ext_msg=trim(extmsg)//'(dislotungsten)')
|
2020-03-15 00:33:57 +05:30
|
|
|
|
|
2019-03-22 15:25:17 +05:30
|
|
|
|
enddo
|
2018-12-04 04:36:46 +05:30
|
|
|
|
|
2020-11-29 16:28:39 +05:30
|
|
|
|
end function plastic_dislotungsten_init
|
2014-11-06 00:41:09 +05:30
|
|
|
|
|
|
|
|
|
|
|
|
|
|
!--------------------------------------------------------------------------------------------------
|
2020-02-14 13:30:14 +05:30
|
|
|
|
!> @brief Calculate plastic velocity gradient and its tangent.
|
2014-11-06 00:41:09 +05:30
|
|
|
|
!--------------------------------------------------------------------------------------------------
|
2021-01-26 12:03:04 +05:30
|
|
|
|
pure module subroutine dislotungsten_LpAndItsTangent(Lp,dLp_dMp, &
|
2021-04-25 11:36:52 +05:30
|
|
|
|
Mp,T,ph,en)
|
2019-03-22 15:25:17 +05:30
|
|
|
|
real(pReal), dimension(3,3), intent(out) :: &
|
|
|
|
|
Lp !< plastic velocity gradient
|
|
|
|
|
real(pReal), dimension(3,3,3,3), intent(out) :: &
|
|
|
|
|
dLp_dMp !< derivative of Lp with respect to the Mandel stress
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2019-03-22 15:25:17 +05:30
|
|
|
|
real(pReal), dimension(3,3), intent(in) :: &
|
|
|
|
|
Mp !< Mandel stress
|
|
|
|
|
real(pReal), intent(in) :: &
|
|
|
|
|
T !< temperature
|
|
|
|
|
integer, intent(in) :: &
|
2021-01-27 03:11:41 +05:30
|
|
|
|
ph, &
|
2021-04-25 11:36:52 +05:30
|
|
|
|
en
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2019-03-22 15:25:17 +05:30
|
|
|
|
integer :: &
|
|
|
|
|
i,k,l,m,n
|
2021-02-14 11:36:14 +05:30
|
|
|
|
real(pReal), dimension(param(ph)%sum_N_sl) :: &
|
2019-03-22 15:25:17 +05:30
|
|
|
|
dot_gamma_pos,dot_gamma_neg, &
|
|
|
|
|
ddot_gamma_dtau_pos,ddot_gamma_dtau_neg
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2019-03-22 15:25:17 +05:30
|
|
|
|
Lp = 0.0_pReal
|
|
|
|
|
dLp_dMp = 0.0_pReal
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2021-02-14 11:36:14 +05:30
|
|
|
|
associate(prm => param(ph))
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2021-04-25 11:36:52 +05:30
|
|
|
|
call kinetics(Mp,T,ph,en,dot_gamma_pos,dot_gamma_neg,ddot_gamma_dtau_pos,ddot_gamma_dtau_neg)
|
2019-03-22 15:25:17 +05:30
|
|
|
|
do i = 1, prm%sum_N_sl
|
2020-03-16 18:03:14 +05:30
|
|
|
|
Lp = Lp + (dot_gamma_pos(i)+dot_gamma_neg(i))*prm%P_sl(1:3,1:3,i)
|
2019-03-22 15:25:17 +05:30
|
|
|
|
forall (k=1:3,l=1:3,m=1:3,n=1:3) &
|
|
|
|
|
dLp_dMp(k,l,m,n) = dLp_dMp(k,l,m,n) &
|
2021-07-21 19:59:57 +05:30
|
|
|
|
+ ddot_gamma_dtau_pos(i) * prm%P_sl(k,l,i) * prm%P_nS_pos(m,n,i) &
|
|
|
|
|
+ ddot_gamma_dtau_neg(i) * prm%P_sl(k,l,i) * prm%P_nS_neg(m,n,i)
|
2019-03-22 15:25:17 +05:30
|
|
|
|
enddo
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2019-03-22 15:25:17 +05:30
|
|
|
|
end associate
|
2018-11-29 03:08:14 +05:30
|
|
|
|
|
2021-01-26 12:03:04 +05:30
|
|
|
|
end subroutine dislotungsten_LpAndItsTangent
|
2014-11-06 00:41:09 +05:30
|
|
|
|
|
|
|
|
|
|
|
|
|
|
!--------------------------------------------------------------------------------------------------
|
2020-02-14 13:30:14 +05:30
|
|
|
|
!> @brief Calculate the rate of change of microstructure.
|
2014-11-06 00:41:09 +05:30
|
|
|
|
!--------------------------------------------------------------------------------------------------
|
2021-04-25 11:36:52 +05:30
|
|
|
|
module subroutine dislotungsten_dotState(Mp,T,ph,en)
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2019-03-22 15:25:17 +05:30
|
|
|
|
real(pReal), dimension(3,3), intent(in) :: &
|
2020-03-16 04:42:18 +05:30
|
|
|
|
Mp !< Mandel stress
|
2019-03-22 15:25:17 +05:30
|
|
|
|
real(pReal), intent(in) :: &
|
2020-03-16 04:42:18 +05:30
|
|
|
|
T !< temperature
|
2019-03-22 15:25:17 +05:30
|
|
|
|
integer, intent(in) :: &
|
2021-01-27 03:11:41 +05:30
|
|
|
|
ph, &
|
2021-04-25 11:36:52 +05:30
|
|
|
|
en
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2021-02-14 11:36:14 +05:30
|
|
|
|
real(pReal), dimension(param(ph)%sum_N_sl) :: &
|
2021-07-21 20:04:33 +05:30
|
|
|
|
dot_gamma_pos, dot_gamma_neg,&
|
2019-03-22 15:25:17 +05:30
|
|
|
|
tau_pos,&
|
|
|
|
|
tau_neg, &
|
2019-03-22 15:36:08 +05:30
|
|
|
|
v_cl, &
|
|
|
|
|
dot_rho_dip_formation, &
|
|
|
|
|
dot_rho_dip_climb, &
|
2021-07-24 01:34:39 +05:30
|
|
|
|
d_hat
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2021-07-24 01:34:39 +05:30
|
|
|
|
associate(prm => param(ph), stt => state(ph), dot => dotState(ph), dst => dependentState(ph))
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2021-04-25 11:36:52 +05:30
|
|
|
|
call kinetics(Mp,T,ph,en,&
|
2021-07-21 20:04:33 +05:30
|
|
|
|
dot_gamma_pos,dot_gamma_neg, &
|
2019-03-22 15:25:17 +05:30
|
|
|
|
tau_pos_out = tau_pos,tau_neg_out = tau_neg)
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2021-07-24 01:55:06 +05:30
|
|
|
|
dot%gamma_sl(:,en) = abs(dot_gamma_pos+dot_gamma_neg)
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2021-07-24 01:55:06 +05:30
|
|
|
|
where(dEq0(tau_pos)) ! ToDo: use avg of +/-
|
2019-03-22 15:36:08 +05:30
|
|
|
|
dot_rho_dip_formation = 0.0_pReal
|
|
|
|
|
dot_rho_dip_climb = 0.0_pReal
|
2019-03-22 15:25:17 +05:30
|
|
|
|
else where
|
2021-07-24 01:55:06 +05:30
|
|
|
|
d_hat = math_clip(3.0_pReal*prm%mu*prm%b_sl/(16.0_pReal*PI*abs(tau_pos)), & ! ToDo: use avg of +/-
|
2021-07-24 01:34:39 +05:30
|
|
|
|
prm%d_caron, & ! lower limit
|
|
|
|
|
dst%Lambda_sl(:,en)) ! upper limit
|
2021-07-24 01:55:06 +05:30
|
|
|
|
dot_rho_dip_formation = merge(2.0_pReal*(d_hat-prm%d_caron)*stt%rho_mob(:,en)*dot%gamma_sl(:,en)/prm%b_sl, &
|
2019-03-22 15:36:08 +05:30
|
|
|
|
0.0_pReal, &
|
|
|
|
|
prm%dipoleformation)
|
2021-07-24 01:34:39 +05:30
|
|
|
|
v_cl = (3.0_pReal*prm%mu*prm%D_0*exp(-prm%Q_cl/(kB*T))*prm%f_at/(2.0_pReal*PI*kB*T)) &
|
|
|
|
|
* (1.0_pReal/(d_hat+prm%d_caron))
|
|
|
|
|
dot_rho_dip_climb = (4.0_pReal*v_cl*stt%rho_dip(:,en))/(d_hat-prm%d_caron) ! ToDo: Discuss with Franz: Stress dependency?
|
2019-03-22 15:25:17 +05:30
|
|
|
|
end where
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2021-07-24 01:55:06 +05:30
|
|
|
|
dot%rho_mob(:,en) = dot%gamma_sl(:,en)/(prm%b_sl*dst%Lambda_sl(:,en)) & ! multiplication
|
2019-03-22 15:36:08 +05:30
|
|
|
|
- dot_rho_dip_formation &
|
2021-07-24 01:55:06 +05:30
|
|
|
|
- (2.0_pReal*prm%d_caron)/prm%b_sl*stt%rho_mob(:,en)*dot%gamma_sl(:,en) ! Spontaneous annihilation of 2 edges
|
2021-04-25 11:36:52 +05:30
|
|
|
|
dot%rho_dip(:,en) = dot_rho_dip_formation &
|
2021-07-24 01:55:06 +05:30
|
|
|
|
- (2.0_pReal*prm%d_caron)/prm%b_sl*stt%rho_dip(:,en)*dot%gamma_sl(:,en) & ! Spontaneous annihilation of an edge with a dipole
|
2019-03-22 15:36:08 +05:30
|
|
|
|
- dot_rho_dip_climb
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2019-03-22 15:25:17 +05:30
|
|
|
|
end associate
|
2018-12-05 03:00:07 +05:30
|
|
|
|
|
2021-01-26 16:47:00 +05:30
|
|
|
|
end subroutine dislotungsten_dotState
|
2014-11-06 00:41:09 +05:30
|
|
|
|
|
2018-12-05 03:00:07 +05:30
|
|
|
|
|
2019-01-07 12:06:11 +05:30
|
|
|
|
!--------------------------------------------------------------------------------------------------
|
2020-02-14 13:30:14 +05:30
|
|
|
|
!> @brief Calculate derived quantities from state.
|
2019-01-07 12:06:11 +05:30
|
|
|
|
!--------------------------------------------------------------------------------------------------
|
2021-04-25 11:36:52 +05:30
|
|
|
|
module subroutine dislotungsten_dependentState(ph,en)
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2019-03-22 15:25:17 +05:30
|
|
|
|
integer, intent(in) :: &
|
2021-02-14 11:36:14 +05:30
|
|
|
|
ph, &
|
2021-04-25 11:36:52 +05:30
|
|
|
|
en
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2021-02-14 11:36:14 +05:30
|
|
|
|
real(pReal), dimension(param(ph)%sum_N_sl) :: &
|
2019-03-22 15:25:17 +05:30
|
|
|
|
dislocationSpacing
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2021-07-23 03:39:51 +05:30
|
|
|
|
|
2021-07-24 01:55:06 +05:30
|
|
|
|
associate(prm => param(ph), stt => state(ph), dst => dependentState(ph))
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2021-07-23 03:39:51 +05:30
|
|
|
|
dislocationSpacing = sqrt(matmul(prm%forestProjection,stt%rho_mob(:,en)+stt%rho_dip(:,en)))
|
2021-07-24 01:26:34 +05:30
|
|
|
|
dst%tau_pass(:,en) = prm%mu*prm%b_sl &
|
|
|
|
|
* sqrt(matmul(prm%h_sl_sl,stt%rho_mob(:,en)+stt%rho_dip(:,en)))
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2021-07-23 03:39:51 +05:30
|
|
|
|
dst%Lambda_sl(:,en) = prm%D/(1.0_pReal+prm%D*dislocationSpacing/prm%i_sl)
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2019-03-22 15:25:17 +05:30
|
|
|
|
end associate
|
2019-01-07 12:06:11 +05:30
|
|
|
|
|
2021-01-26 16:47:00 +05:30
|
|
|
|
end subroutine dislotungsten_dependentState
|
2019-01-07 12:06:11 +05:30
|
|
|
|
|
|
|
|
|
|
2019-03-10 01:13:31 +05:30
|
|
|
|
!--------------------------------------------------------------------------------------------------
|
2020-02-14 13:30:14 +05:30
|
|
|
|
!> @brief Write results to HDF5 output file.
|
2019-03-10 01:13:31 +05:30
|
|
|
|
!--------------------------------------------------------------------------------------------------
|
2021-02-14 11:36:14 +05:30
|
|
|
|
module subroutine plastic_dislotungsten_results(ph,group)
|
2019-03-10 01:13:31 +05:30
|
|
|
|
|
2021-02-14 11:36:14 +05:30
|
|
|
|
integer, intent(in) :: ph
|
2019-04-04 11:22:36 +05:30
|
|
|
|
character(len=*), intent(in) :: group
|
2020-02-14 13:30:14 +05:30
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2021-07-27 00:08:43 +05:30
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integer :: ou
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2019-03-10 01:13:31 +05:30
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2021-02-14 11:36:14 +05:30
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associate(prm => param(ph), stt => state(ph), dst => dependentState(ph))
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2021-07-27 00:08:43 +05:30
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2021-07-27 18:35:27 +05:30
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do ou = 1,size(prm%output)
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2021-07-27 00:08:43 +05:30
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select case(trim(prm%output(ou)))
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case('rho_mob')
|
2021-08-08 01:32:44 +05:30
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call results_writeDataset(stt%rho_mob,group,trim(prm%output(ou)), &
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'mobile dislocation density','1/m²',prm%systems_sl)
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2021-07-27 00:08:43 +05:30
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case('rho_dip')
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2021-08-08 01:32:44 +05:30
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call results_writeDataset(stt%rho_dip,group,trim(prm%output(ou)), &
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'dislocation dipole density','1/m²',prm%systems_sl)
|
2021-07-27 00:08:43 +05:30
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case('gamma_sl')
|
2021-08-08 01:32:44 +05:30
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call results_writeDataset(stt%gamma_sl,group,trim(prm%output(ou)), &
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'plastic shear','1',prm%systems_sl)
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2021-07-27 00:08:43 +05:30
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case('Lambda_sl')
|
2021-08-08 01:32:44 +05:30
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call results_writeDataset(dst%Lambda_sl,group,trim(prm%output(ou)), &
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'mean free path for slip','m',prm%systems_sl)
|
2021-07-27 00:08:43 +05:30
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case('tau_pass')
|
2021-08-08 01:32:44 +05:30
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call results_writeDataset(dst%tau_pass,group,trim(prm%output(ou)), &
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'threshold stress for slip','Pa',prm%systems_sl)
|
2021-07-27 00:08:43 +05:30
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end select
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2021-07-27 18:35:27 +05:30
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enddo
|
2021-07-27 00:08:43 +05:30
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|
2019-03-10 01:13:31 +05:30
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end associate
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|
2020-11-29 16:28:39 +05:30
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|
end subroutine plastic_dislotungsten_results
|
2019-03-10 01:13:31 +05:30
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|
2019-01-07 11:54:02 +05:30
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!--------------------------------------------------------------------------------------------------
|
2020-02-14 13:30:14 +05:30
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|
!> @brief Calculate shear rates on slip systems, their derivatives with respect to resolved
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! stress, and the resolved stress.
|
2019-01-07 11:54:02 +05:30
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!> @details Derivatives and resolved stress are calculated only optionally.
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! NOTE: Against the common convention, the result (i.e. intent(out)) variables are the last to
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|
! have the optional arguments at the end
|
2018-11-27 22:55:06 +05:30
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!--------------------------------------------------------------------------------------------------
|
2021-04-25 11:36:52 +05:30
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|
pure subroutine kinetics(Mp,T,ph,en, &
|
2019-03-22 15:19:24 +05:30
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dot_gamma_pos,dot_gamma_neg,ddot_gamma_dtau_pos,ddot_gamma_dtau_neg,tau_pos_out,tau_neg_out)
|
2020-02-14 13:30:14 +05:30
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|
2019-03-22 15:25:17 +05:30
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real(pReal), dimension(3,3), intent(in) :: &
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Mp !< Mandel stress
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real(pReal), intent(in) :: &
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|
T !< temperature
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|
integer, intent(in) :: &
|
2021-02-14 11:36:14 +05:30
|
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ph, &
|
2021-04-25 11:36:52 +05:30
|
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|
en
|
2020-02-14 13:30:14 +05:30
|
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|
2021-02-14 11:36:14 +05:30
|
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|
|
real(pReal), intent(out), dimension(param(ph)%sum_N_sl) :: &
|
2019-03-22 15:25:17 +05:30
|
|
|
|
dot_gamma_pos, &
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|
dot_gamma_neg
|
2021-02-14 11:36:14 +05:30
|
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|
real(pReal), intent(out), optional, dimension(param(ph)%sum_N_sl) :: &
|
2019-03-22 15:25:17 +05:30
|
|
|
|
ddot_gamma_dtau_pos, &
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|
ddot_gamma_dtau_neg, &
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|
tau_pos_out, &
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|
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|
|
tau_neg_out
|
2021-02-14 11:36:14 +05:30
|
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|
real(pReal), dimension(param(ph)%sum_N_sl) :: &
|
2019-03-22 15:25:17 +05:30
|
|
|
|
StressRatio, &
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|
|
|
|
StressRatio_p,StressRatio_pminus1, &
|
|
|
|
|
dvel, vel, &
|
|
|
|
|
tau_pos,tau_neg, &
|
2021-07-24 01:26:34 +05:30
|
|
|
|
t_n, t_k, dtk,dtn
|
2019-03-22 15:25:17 +05:30
|
|
|
|
integer :: j
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2021-02-14 11:36:14 +05:30
|
|
|
|
associate(prm => param(ph), stt => state(ph), dst => dependentState(ph))
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2019-03-22 15:25:17 +05:30
|
|
|
|
do j = 1, prm%sum_N_sl
|
2021-07-21 19:59:57 +05:30
|
|
|
|
tau_pos(j) = math_tensordot(Mp,prm%P_nS_pos(1:3,1:3,j))
|
|
|
|
|
tau_neg(j) = math_tensordot(Mp,prm%P_nS_neg(1:3,1:3,j))
|
2019-03-22 15:25:17 +05:30
|
|
|
|
enddo
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
|
|
|
|
|
2019-03-22 15:25:17 +05:30
|
|
|
|
if (present(tau_pos_out)) tau_pos_out = tau_pos
|
|
|
|
|
if (present(tau_neg_out)) tau_neg_out = tau_neg
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2020-09-22 18:05:05 +05:30
|
|
|
|
associate(BoltzmannRatio => prm%Q_s/(kB*T), &
|
2021-04-25 11:36:52 +05:30
|
|
|
|
dot_gamma_0 => stt%rho_mob(:,en)*prm%b_sl*prm%v_0, &
|
|
|
|
|
effectiveLength => dst%Lambda_sl(:,en) - prm%w)
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2021-07-24 01:26:34 +05:30
|
|
|
|
significantPositiveTau: where(abs(tau_pos)-dst%tau_pass(:,en) > tol_math_check)
|
|
|
|
|
StressRatio = (abs(tau_pos)-dst%tau_pass(:,en))/prm%tau_Peierls
|
2019-03-22 15:25:17 +05:30
|
|
|
|
StressRatio_p = StressRatio** prm%p
|
|
|
|
|
StressRatio_pminus1 = StressRatio**(prm%p-1.0_pReal)
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2021-07-24 01:26:34 +05:30
|
|
|
|
t_n = prm%b_sl/(exp(-BoltzmannRatio*(1-StressRatio_p) ** prm%q)*prm%omega*effectiveLength)
|
2019-09-26 00:51:57 +05:30
|
|
|
|
t_k = effectiveLength * prm%B /(2.0_pReal*prm%b_sl*tau_pos)
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2020-09-22 18:05:05 +05:30
|
|
|
|
vel = prm%h/(t_n + t_k)
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2019-03-22 15:25:17 +05:30
|
|
|
|
dot_gamma_pos = dot_gamma_0 * sign(vel,tau_pos) * 0.5_pReal
|
|
|
|
|
else where significantPositiveTau
|
|
|
|
|
dot_gamma_pos = 0.0_pReal
|
|
|
|
|
end where significantPositiveTau
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2019-03-22 15:25:17 +05:30
|
|
|
|
if (present(ddot_gamma_dtau_pos)) then
|
2021-07-24 01:26:34 +05:30
|
|
|
|
significantPositiveTau2: where(abs(tau_pos)-dst%tau_pass(:,en) > tol_math_check)
|
2019-09-26 00:51:57 +05:30
|
|
|
|
dtn = -1.0_pReal * t_n * BoltzmannRatio * prm%p * prm%q * (1.0_pReal-StressRatio_p)**(prm%q - 1.0_pReal) &
|
2020-09-23 04:25:19 +05:30
|
|
|
|
* (StressRatio)**(prm%p - 1.0_pReal) / prm%tau_Peierls
|
2019-09-26 00:51:57 +05:30
|
|
|
|
dtk = -1.0_pReal * t_k / tau_pos
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2020-09-22 18:05:05 +05:30
|
|
|
|
dvel = -1.0_pReal * prm%h * (dtk + dtn) / (t_n + t_k)**2.0_pReal
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2019-09-26 00:51:57 +05:30
|
|
|
|
ddot_gamma_dtau_pos = dot_gamma_0 * dvel* 0.5_pReal
|
|
|
|
|
else where significantPositiveTau2
|
|
|
|
|
ddot_gamma_dtau_pos = 0.0_pReal
|
|
|
|
|
end where significantPositiveTau2
|
2019-03-22 15:25:17 +05:30
|
|
|
|
endif
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2021-07-24 01:26:34 +05:30
|
|
|
|
significantNegativeTau: where(abs(tau_neg)-dst%tau_pass(:,en) > tol_math_check)
|
|
|
|
|
StressRatio = (abs(tau_neg)-dst%tau_pass(:,en))/prm%tau_Peierls
|
2019-03-22 15:25:17 +05:30
|
|
|
|
StressRatio_p = StressRatio** prm%p
|
|
|
|
|
StressRatio_pminus1 = StressRatio**(prm%p-1.0_pReal)
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2021-07-24 01:26:34 +05:30
|
|
|
|
t_n = prm%b_sl/(exp(-BoltzmannRatio*(1-StressRatio_p) ** prm%q)*prm%omega*effectiveLength)
|
2019-09-26 00:51:57 +05:30
|
|
|
|
t_k = effectiveLength * prm%B /(2.0_pReal*prm%b_sl*tau_pos)
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2020-09-22 18:05:05 +05:30
|
|
|
|
vel = prm%h/(t_n + t_k)
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2019-03-22 15:25:17 +05:30
|
|
|
|
dot_gamma_neg = dot_gamma_0 * sign(vel,tau_neg) * 0.5_pReal
|
|
|
|
|
else where significantNegativeTau
|
|
|
|
|
dot_gamma_neg = 0.0_pReal
|
|
|
|
|
end where significantNegativeTau
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2019-03-22 15:25:17 +05:30
|
|
|
|
if (present(ddot_gamma_dtau_neg)) then
|
2021-07-24 01:26:34 +05:30
|
|
|
|
significantNegativeTau2: where(abs(tau_neg)-dst%tau_pass(:,en) > tol_math_check)
|
2019-09-26 00:51:57 +05:30
|
|
|
|
dtn = -1.0_pReal * t_n * BoltzmannRatio * prm%p * prm%q * (1.0_pReal-StressRatio_p)**(prm%q - 1.0_pReal) &
|
2020-09-23 04:25:19 +05:30
|
|
|
|
* (StressRatio)**(prm%p - 1.0_pReal) / prm%tau_Peierls
|
2019-09-26 00:51:57 +05:30
|
|
|
|
dtk = -1.0_pReal * t_k / tau_neg
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2020-09-22 18:05:05 +05:30
|
|
|
|
dvel = -1.0_pReal * prm%h * (dtk + dtn) / (t_n + t_k)**2.0_pReal
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2019-09-26 00:51:57 +05:30
|
|
|
|
ddot_gamma_dtau_neg = dot_gamma_0 * dvel * 0.5_pReal
|
|
|
|
|
else where significantNegativeTau2
|
|
|
|
|
ddot_gamma_dtau_neg = 0.0_pReal
|
|
|
|
|
end where significantNegativeTau2
|
2019-03-22 15:25:17 +05:30
|
|
|
|
end if
|
2020-02-14 13:30:14 +05:30
|
|
|
|
|
2019-03-22 15:25:17 +05:30
|
|
|
|
end associate
|
|
|
|
|
end associate
|
2018-12-05 02:03:32 +05:30
|
|
|
|
|
2018-11-27 22:55:06 +05:30
|
|
|
|
end subroutine kinetics
|
2014-11-06 00:41:09 +05:30
|
|
|
|
|
2021-01-26 05:41:32 +05:30
|
|
|
|
end submodule dislotungsten
|