NEML2 1.4.0
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ElasticStrainRate.cxx
1// Copyright 2023, UChicago Argonne, LLC
2// All Rights Reserved
3// Software Name: NEML2 -- the New Engineering material Model Library, version 2
4// By: Argonne National Laboratory
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24
25#include "neml2/models/solid_mechanics/crystal_plasticity/ElasticStrainRate.h"
26
27#include "neml2/tensors/tensors.h"
28#include "neml2/misc/math.h"
29
30namespace neml2
31{
32register_NEML2_object(ElasticStrainRate);
33
36{
38
39 options.doc() = "Calculates the elastic strain rate as \\f$\\dot{\\varepsilon} = d - d^p - "
40 "\\varepsilon w + w \\varepsilon \\f$ "
41 "where \\f$ d \\f$ is the deformation rate, \\f$ d^p \\f$ is the plastic "
42 "deformation rate, \\f$ w \\f$ is the vorticity, and \\f$ \\varepsilon \\f$ is "
43 "the elastic strain.";
44
45 options.set<VariableName>("elastic_strain_rate") = VariableName("state", "elastic_strain_rate");
46 options.set("elastic_strain_rate").doc() = "Name of the elastic strain rate";
47
48 options.set<VariableName>("elastic_strain") = VariableName("state", "elastic_strain");
49 options.set("elastic_strain").doc() = "Name of the elastic strain";
50
51 options.set<VariableName>("deformation_rate") = VariableName("forces", "deformation_rate");
52 options.set("deformation_rate").doc() = "Name of the deformation rate";
53
54 options.set<VariableName>("vorticity") = VariableName("forces", "vorticity");
55 options.set("vorticity").doc() = "Name of the vorticity";
56
57 options.set<VariableName>("plastic_deformation_rate") =
58 VariableName("state", "internal", "plastic_deformation_rate");
59 options.set("plastic_deformation_rate").doc() = "Name of the plastic deformation rate";
60
61 return options;
62}
63
65 : Model(options),
66 _e_dot(declare_output_variable<SR2>("elastic_strain_rate")),
67 _e(declare_input_variable<SR2>("elastic_strain")),
68 _d(declare_input_variable<SR2>("deformation_rate")),
69 _w(declare_input_variable<WR2>("vorticity")),
70 _dp(declare_input_variable<SR2>("plastic_deformation_rate"))
71{
72}
73
74void
76{
77 neml_assert_dbg(!d2out_din2, "Second derivative not implemented.");
78
79 if (out)
81
82 if (dout_din)
83 {
84 const auto I = SSR4::identity_sym(options());
86 _e_dot.d(_d) = I;
88 _e_dot.d(_dp) = -I;
89 }
90}
91} // namespace neml2
The wrapper (decorator) for cross-referencing unresolved values at parse time.
Definition CrossRef.h:52
Calculate the elastic strain rate from crystal model kinematics.
Definition ElasticStrainRate.h:33
const Variable< WR2 > & _w
Current vorticity.
Definition ElasticStrainRate.h:54
const Variable< SR2 > & _d
Current deformation rate.
Definition ElasticStrainRate.h:51
static OptionSet expected_options()
Definition ElasticStrainRate.cxx:35
const Variable< SR2 > & _dp
Plastic deformation rate.
Definition ElasticStrainRate.h:57
ElasticStrainRate(const OptionSet &options)
Construct from OptionSet.
Definition ElasticStrainRate.cxx:64
const Variable< SR2 > & _e
Current strain.
Definition ElasticStrainRate.h:48
void set_value(bool out, bool dout_din, bool d2out_din2) override
Set elastic strain rate and derivatives.
Definition ElasticStrainRate.cxx:75
Variable< SR2 > & _e_dot
Elastic strain rate.
Definition ElasticStrainRate.h:45
The accessor containing all the information needed to access an item in a LabeledAxis.
Definition LabeledAxisAccessor.h:44
The base class for all constitutive models.
Definition Model.h:53
const torch::TensorOptions & options() const
This model's tensor options.
Definition Model.h:116
static OptionSet expected_options()
Definition Model.cxx:33
A custom map-like data structure. The keys are strings, and the values can be nonhomogeneously typed.
Definition OptionSet.h:59
The (logical) symmetric second order tensor.
Definition SR2.h:46
static SSR4 identity_sym(const torch::TensorOptions &options=default_tensor_options())
Create the symmetric identity tensor .
Definition SSR4.cxx:58
A skew rank 2, represented as an axial vector.
Definition WR2.h:43
SWR4 d_skew_and_sym_to_sym_d_skew(const SR2 &e)
Derivative of w_ik e_kj - e_ik w_kj wrt. w.
Definition math.cxx:279
SSR4 d_skew_and_sym_to_sym_d_sym(const WR2 &w)
Derivative of w_ik e_kj - e_ik w_kj wrt. e.
Definition math.cxx:270
SR2 skew_and_sym_to_sym(const SR2 &e, const WR2 &w)
Product w_ik e_kj - e_ik w_kj with e SR2 and w WR2.
Definition math.cxx:260
Definition CrossRef.cxx:32
void neml_assert_dbg(bool assertion, Args &&... args)
Definition error.h:85
LabeledAxisAccessor VariableName
Definition Variable.h:35