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@ -59,7 +59,7 @@ module plastic_dislotwin
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q_sb, & !< q-exponent in shear band velocity
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CEdgeDipMinDistance, & !<
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i_tw, & !<
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tau_0, & !<strength due to elements in solid solution
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tau_0, & !< strength due to elements in solid solution
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L_tw, & !< Length of twin nuclei in Burgers vectors
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L_tr, & !< Length of trans nuclei in Burgers vectors
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xc_twin, & !< critical distance for formation of twin nucleus
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@ -276,7 +276,6 @@ subroutine plastic_dislotwin_init
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prm%CEdgeDipMinDistance = config%getFloat('cedgedipmindistance')
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prm%D0 = config%getFloat('d0')
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prm%Qsd = config%getFloat('qsd')
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prm%omega = config%getFloat('omega',defaultVal=1000.0_pReal)
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prm%atomicVolume = config%getFloat('catomicvolume') * prm%b_sl**3.0_pReal
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prm%ExtendedDislocations = config%getInt('extend_dislocations',defaultVal = 0)
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if (prm%ExtendedDislocations == 1) then
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@ -285,11 +284,11 @@ subroutine plastic_dislotwin_init
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endif
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! multiplication factor according to slip system
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if (lattice_structure(p) == LATTICE_FCC_ID .or. lattice_structure(p) == LATTICE_HEX_ID ) then
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prm%omega = prm%omega * 12.0_pReal
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else
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prm%omega = prm%omega * 8.0_pReal
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endif
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prm%omega = config%getFloat('omega', defaultVal = 1000.0_pReal) &
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* merge(12.0_pReal, &
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8.0_pReal, &
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lattice_structure(p) == LATTICE_FCC_ID .or. lattice_structure(p) == LATTICE_HEX_ID)
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! expand: family => system
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prm%rho_mob_0 = math_expand(prm%rho_mob_0, prm%N_sl)
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@ -804,10 +803,9 @@ subroutine plastic_dislotwin_dotState(Mp,T,instance,of)
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dot_rho_dip_formation(i) = 0.0_pReal
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endif
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if (dEq0(rho_dip_distance-rho_dip_distance_min(i))) then
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if (dEq0(rho_dip_distance-rho_dip_distance_min(i))) then !ToDo: use or here for climb switch (second if else not needed)
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dot_rho_dip_climb(i) = 0.0_pReal
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else
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! sigma_cl = norm2(matmul(Mp,prm%n0_sl(1:3,i))) ! ToDo: MD: correct?
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sigma_cl = DOT_PRODUCT(prm%n0_sl(1:3,i),matmul(Mp,prm%n0_sl(1:3,i)))
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if (prm%ExtendedDislocations /= 0) then
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Gamma = prm%SFE_0K + prm%dSFE_dT * T
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@ -815,9 +813,9 @@ subroutine plastic_dislotwin_dotState(Mp,T,instance,of)
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else
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b_d = 1.0_pReal
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endif
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v_cl = 2.0_pReal*prm%omega*b_d**2.0_pReal*exp(-prm%Qsd/(kB*T)) &
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* (exp(abs(sigma_cl)*prm%b_sl(i)**3.0_pReal/(kB*T)) - 1.0_pReal)
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dot_rho_dip_climb(i) = 4.0_pReal*v_cl*stt%rho_dip(i,of) &
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/ (rho_dip_distance-rho_dip_distance_min(i))
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endif
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