polishing example configurations
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# Tasan et.al. 2015 Acta Materalia
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# Tasan et.al. 2015 International Journal of Plasticity
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# Diehl et.al. 2015 Meccanica
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Ferrite:
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lattice: cI
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mechanical:
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elastic: {C_11: 233.3e9, C_12: 135.5e9, C_44: 118.0e9, type: Hooke}
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plastic:
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N_sl: [12, 12]
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a_sl: 2.0
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dot_gamma_0_sl: 0.001
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h_0_sl-sl: 1000.0e6
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h_sl-sl: [1, 1.4, 1, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4]
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n_sl: 20
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type: phenopowerlaw
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xi_0_sl: [95.e6, 96.e6]
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xi_inf_sl: [222.e6, 412.7e6]
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@ -2,7 +2,8 @@ type: Hooke
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references:
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references:
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- J.P. Hirth and J. Lothe,
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- J.P. Hirth and J. Lothe,
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Theory of Dislocations, 1982,
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Theory of Dislocations, 1982,
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John Wiley & Sons
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John Wiley & Sons,
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page 837
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C_11: 186e9
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C_11: 186e9
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C_12: 157e9
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C_12: 157e9
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C_44: 42e9
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C_44: 42e9
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@ -2,7 +2,8 @@ type: Hooke
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references:
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references:
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- J.P. Hirth and J. Lothe,
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- J.P. Hirth and J. Lothe,
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Theory of Dislocations, 1982,
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Theory of Dislocations, 1982,
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John Wiley & Sons
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John Wiley & Sons,
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page 837
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C_11: 242e9
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C_11: 242e9
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C_12: 146.5e9
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C_12: 146.5e9
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C_44: 11.2e9
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C_44: 112e9
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@ -2,7 +2,8 @@ type: Hooke
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references:
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references:
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- J.P. Hirth and J. Lothe,
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- J.P. Hirth and J. Lothe,
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Theory of Dislocations, 1982,
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Theory of Dislocations, 1982,
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John Wiley & Sons
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John Wiley & Sons,
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page 837
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C_11: 246.5e9
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C_11: 246.5e9
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C_12: 147.3e9
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C_12: 147.3e9
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C_44: 124.7e9
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C_44: 124.7e9
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@ -6,10 +6,10 @@ references:
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fitted from Fig. 5
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fitted from Fig. 5
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output: [xi_sl, gamma_sl]
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output: [xi_sl, gamma_sl]
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N_sl: [12]
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N_sl: [12]
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h_sl-sl: [1, 1, 1.4, 1.4, 1.4, 1.4, 1.4]
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n_sl: 20
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n_sl: 20
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a_sl: 3.1
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a_sl: 3.1
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h_0_sl-sl: 1.7e8
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h_0_sl-sl: 1.7e8
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xi_0_sl: [5.0e6]
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xi_0_sl: [5.0e6]
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xi_inf_sl: [37.5e6]
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xi_inf_sl: [37.5e6]
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h_sl-sl: [1, 1, 1.4, 1.4, 1.4, 1.4, 1.4]
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dot_gamma_0_sl: 4.5e-3
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dot_gamma_0_sl: 4.5e-3
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@ -9,9 +9,9 @@ references:
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output: [xi_sl, gamma_sl]
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output: [xi_sl, gamma_sl]
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N_sl: [12]
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N_sl: [12]
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n_sl: 83.3
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n_sl: 83.3
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dot_gamma_0_sl: 0.001
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h_0_sl-sl: 75.0e6
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h_sl-sl: [1, 1, 1.4, 1.4, 1.4, 1.4, 1.4]
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a_sl: 1.0
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a_sl: 1.0
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h_0_sl-sl: 75.0e6
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xi_0_sl: [26.25e6]
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xi_0_sl: [26.25e6]
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xi_inf_sl: [53.0e6]
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xi_inf_sl: [53.0e6]
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h_sl-sl: [1, 1, 1.4, 1.4, 1.4, 1.4, 1.4]
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dot_gamma_0_sl: 0.001
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fitted from Fig. 3b
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fitted from Fig. 3b
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output: [xi_sl, gamma_sl]
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output: [xi_sl, gamma_sl]
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N_sl: [12]
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N_sl: [12]
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h_sl-sl: [1, 1, 1.4, 1.4, 1.4, 1.4, 1.4]
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n_sl: 20
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n_sl: 20
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a_sl: 1.0
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a_sl: 1.0
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h_0_sl-sl: 2.4e8
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h_0_sl-sl: 2.4e8
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xi_0_sl: [1.5e6]
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xi_0_sl: [1.5e6]
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xi_inf_sl: [112.5e6]
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xi_inf_sl: [112.5e6]
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h_sl-sl: [1, 1, 1.4, 1.4, 1.4, 1.4, 1.4]
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dot_gamma_0_sl: 3e-3
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dot_gamma_0_sl: 3e-3
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@ -0,0 +1,14 @@
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type: phenopowerlaw
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references:
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- C.C. Tasan et al.,
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Acta Materialia, 81, 386-400, 2014,
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10.1016/j.actamat.2014.07.071
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output: [xi_sl, gamma_sl]
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N_sl: [12, 12]
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n_sl: 20
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a_sl: 2.25
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h_0_sl-sl: 1.0e9
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xi_0_sl: [95.e6, 96.e6]
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xi_inf_sl: [222.e6, 412.e6]
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h_sl-sl: [1, 1.4, 1, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4, 1.4]
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dot_gamma_0_sl: 0.001
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