modular config with references
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PRIVATE
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PRIVATE
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Subproject commit 1361c4a9f090a76dfcec5bd6dd4eb5e3b4b78cb2
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Subproject commit d892259f0f15785b2393dee6fe015f8ba2b09809
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@ -20,12 +20,6 @@ TWIP_Steel_FeMnC:
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D_a: 1.0 # minimum dipole distance / b
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D_a: 1.0 # minimum dipole distance / b
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Q_cl: 4.5e-19 # Activation energy for climb / J
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Q_cl: 4.5e-19 # Activation energy for climb / J
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h_sl-sl: [0.122, 0.122, 0.625, 0.07, 0.137, 0.137, 0.122] # Interaction coefficients (Kubin et al. 2008)
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h_sl-sl: [0.122, 0.122, 0.625, 0.07, 0.137, 0.137, 0.122] # Interaction coefficients (Kubin et al. 2008)
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# shear band parameters
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xi_sb: 180.0e+6
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Q_sb: 3.7e-19
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p_sb: 1.0
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q_sb: 1.0
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v_sb: 0.0 # set to 0, to turn it off
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# twinning parameters
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# twinning parameters
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N_tw: [12]
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N_tw: [12]
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b_tw: [1.47e-10] # Burgers vector length of twin system / b
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b_tw: [1.47e-10] # Burgers vector length of twin system / b
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@ -1,21 +0,0 @@
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Tungsten:
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lattice: cI
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mechanical:
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elastic: {type: Hooke, C_11: 523.0e+9, C_12: 202.0e+9, C_44: 161.0e+9} # Marinica et al. Journal of Physics: Condensed Matter(2013)
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plastic:
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type: dislotwin
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D: 2.0e-5 # Average grain size / m
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N_sl: [12]
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b_sl: [2.72e-10] # Burgers vector length of slip families / m
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rho_mob_0: [1.0e+12]
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rho_dip_0: [1.0]
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v_0: [1.0e+4] # Initial glide velocity / m/s
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Q_s: [2.725e-19] # Activation energy for dislocation glide / J
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p_sl: [0.78] # p-exponent in glide velocity
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q_sl: [1.58] # q-exponent in glide velocity
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tau_0: [1.5e+8] # solid solution strength / Pa
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i_sl: [10.0] # Adj. parameter controlling dislocation mean free path
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D_0: 4.0e-5 # Vacancy diffusion prefactor / m^2/s
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D_a: 1.0 # minimum dipole distance / b
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Q_cl: 4.5e-19 # Activation energy for climb / J
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h_sl-sl: [1, 1.4, 1, 1.4, 1.4, 1.4, 1.4]
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@ -1,11 +1,3 @@
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# Tromans 2011, Elastic Anisotropy of HCP Metal Crystals and Polycrystals
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Magnesium:
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lattice: hP
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c/a: 1.62350
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mechanical:
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output: [F, P, F_e, F_p, L_p, O]
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elastic: {C_11: 59.3e+9, C_12: 25.7e+9, C_13: 21.4e+9, C_33: 61.5e+9, C_44: 16.4e+9, type: Hooke}
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plastic:
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N_sl: [3, 3, 0, 6, 0, 6]
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N_sl: [3, 3, 0, 6, 0, 6]
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N_tw: [6, 0, 0, 6]
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N_tw: [6, 0, 0, 6]
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h_0_tw-tw: 50.0e+6
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h_0_tw-tw: 50.0e+6
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@ -1,13 +1,6 @@
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# M. Levy, Handbook of Elastic Properties of Solids, Liquids, and Gases (2001)
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# M. Levy, Handbook of Elastic Properties of Solids, Liquids, and Gases (2001)
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# C. Zambaldi, "Orientation informed nanoindentation of a-titanium: Indentation pileup in hexagonal metals deforming by prismatic slip", J. Mater. Res., Vol. 27, No. 1, Jan 14, 2012
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# C. Zambaldi, "Orientation informed nanoindentation of a-titanium: Indentation pileup in hexagonal metals deforming by prismatic slip", J. Mater. Res., Vol. 27, No. 1, Jan 14, 2012
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# Better use values from L. Wang, Z. Zheng, H. Phukan, P. Kenesei, J.-S. Park, J. Lind, R.M. Suter, T.R. Bieler, Direct measurement of critical resolved shear stress of prismatic and basal slip in polycrystalline Ti using high energy X-ray diffraction microscopy, Acta Mater 2017
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# Better use values from L. Wang, Z. Zheng, H. Phukan, P. Kenesei, J.-S. Park, J. Lind, R.M. Suter, T.R. Bieler, Direct measurement of critical resolved shear stress of prismatic and basal slip in polycrystalline Ti using high energy X-ray diffraction microscopy, Acta Mater 2017
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cpTi:
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lattice: hP
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c/a: 1.587
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mechanical:
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output: [F, P, F_e, F_p, L_p, O]
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elastic: {C_11: 160.0e+9, C_12: 90.0e+9, C_13: 66.0e+9, C_33: 181.7e+9, C_44: 46.5e+9, type: Hooke}
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plastic:
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N_sl: [3, 3, 0, 6, 12]
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N_sl: [3, 3, 0, 6, 12]
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a_sl: 2.0
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a_sl: 2.0
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dot_gamma_0_sl: 0.001
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dot_gamma_0_sl: 0.001
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@ -0,0 +1,7 @@
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references:
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- D. Tromans,
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International Journal of Recent Research and Applied Studies 6(4), 462-483, 2011,
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www.arpapress.com/Volumes/Vol6Issue4/IJRRAS_6_4_14.pdf
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lattice: hP
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c/a: 1.62350
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rho: 1740.0
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@ -0,0 +1,10 @@
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type: Hooke
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references:
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- D. Tromans,
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International Journal of Recent Research and Applied Studies 6(4), 462-483, 2011,
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www.arpapress.com/Volumes/Vol6Issue4/IJRRAS_6_4_14.pdf
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C_11: 59.3e+9
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C_33: 61.5e+9
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C_44: 16.4e+9
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C_12: 25.7e+9
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C_13: 21.4e+9
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