https://mooseframework.inl.gov
Public Types | Public Member Functions | Static Public Member Functions | Public Attributes | Static Public Attributes | Protected Member Functions | Static Protected Member Functions | Protected Attributes | Static Protected Attributes | List of all members
SolidMechanicsPlasticIsotropicSD Class Reference

IsotropicSD plasticity model from Yoon (2013) the name of the paper is "Asymmetric yield function based on the stress invariants for pressure sensitive metals" published 4th December 2013. More...

#include <SolidMechanicsPlasticIsotropicSD.h>

Inheritance diagram for SolidMechanicsPlasticIsotropicSD:
[legend]

Public Types

typedef DataFileName DataFileParameterType
 

Public Member Functions

 SolidMechanicsPlasticIsotropicSD (const InputParameters &parameters)
 
virtual std::string modelName () const override
 
virtual bool useCustomReturnMap () const override
 Returns false. You will want to override this in your derived class if you write a custom returnMap function. More...
 
virtual bool useCustomCTO () const override
 Returns false. You will want to override this in your derived class if you write a custom consistent tangent operator function. More...
 
virtual bool returnMap (const RankTwoTensor &trial_stress, Real intnl_old, const RankFourTensor &E_ijkl, Real ep_plastic_tolerance, RankTwoTensor &returned_stress, Real &returned_intnl, std::vector< Real > &dpm, RankTwoTensor &delta_dp, std::vector< Real > &yf, bool &trial_stress_inadmissible) const override
 Performs a custom return-map. More...
 
virtual RankFourTensor consistentTangentOperator (const RankTwoTensor &trial_stress, Real intnl_old, const RankTwoTensor &stress, Real intnl, const RankFourTensor &E_ijkl, const std::vector< Real > &cumulative_pm) const override
 Calculates a custom consistent tangent operator. More...
 
void initialize ()
 
void execute ()
 
void finalize ()
 
virtual unsigned int numberSurfaces () const
 The number of yield surfaces for this plasticity model. More...
 
virtual void yieldFunctionV (const RankTwoTensor &stress, Real intnl, std::vector< Real > &f) const
 Calculates the yield functions. More...
 
virtual void dyieldFunction_dstressV (const RankTwoTensor &stress, Real intnl, std::vector< RankTwoTensor > &df_dstress) const
 The derivative of yield functions with respect to stress. More...
 
virtual void dyieldFunction_dintnlV (const RankTwoTensor &stress, Real intnl, std::vector< Real > &df_dintnl) const
 The derivative of yield functions with respect to the internal parameter. More...
 
virtual void flowPotentialV (const RankTwoTensor &stress, Real intnl, std::vector< RankTwoTensor > &r) const
 The flow potentials. More...
 
virtual void dflowPotential_dstressV (const RankTwoTensor &stress, Real intnl, std::vector< RankFourTensor > &dr_dstress) const
 The derivative of the flow potential with respect to stress. More...
 
virtual void dflowPotential_dintnlV (const RankTwoTensor &stress, Real intnl, std::vector< RankTwoTensor > &dr_dintnl) const
 The derivative of the flow potential with respect to the internal parameter. More...
 
virtual void hardPotentialV (const RankTwoTensor &stress, Real intnl, std::vector< Real > &h) const
 The hardening potential. More...
 
virtual void dhardPotential_dstressV (const RankTwoTensor &stress, Real intnl, std::vector< RankTwoTensor > &dh_dstress) const
 The derivative of the hardening potential with respect to stress. More...
 
virtual void dhardPotential_dintnlV (const RankTwoTensor &stress, Real intnl, std::vector< Real > &dh_dintnl) const
 The derivative of the hardening potential with respect to the internal parameter. More...
 
virtual void activeConstraints (const std::vector< Real > &f, const RankTwoTensor &stress, Real intnl, const RankFourTensor &Eijkl, std::vector< bool > &act, RankTwoTensor &returned_stress) const
 The active yield surfaces, given a vector of yield functions. More...
 
bool KuhnTuckerSingleSurface (Real yf, Real dpm, Real dpm_tol) const
 Returns true if the Kuhn-Tucker conditions for the single surface are satisfied. More...
 
SubProblemgetSubProblem () const
 
bool shouldDuplicateInitialExecution () const
 
virtual Real spatialValue (const Point &) const
 
virtual const std::vector< Point > spatialPoints () const
 
void gatherSum (T &value)
 
void gatherMax (T &value)
 
void gatherMin (T &value)
 
void gatherProxyValueMax (T1 &proxy, T2 &value)
 
void gatherProxyValueMin (T1 &proxy, T2 &value)
 
void setPrimaryThreadCopy (UserObject *primary)
 
UserObjectprimaryThreadCopy ()
 
std::set< UserObjectName > getDependObjects () const
 
virtual bool needThreadedCopy () const
 
const std::set< std::string > & getRequestedItems () override
 
const std::set< std::string > & getSuppliedItems () override
 
unsigned int systemNumber () const
 
virtual bool enabled () const
 
std::shared_ptr< MooseObjectgetSharedPtr ()
 
std::shared_ptr< const MooseObjectgetSharedPtr () const
 
MooseAppgetMooseApp () const
 
const std::string & type () const
 
virtual const std::string & name () const
 
std::string typeAndName () const
 
std::string errorPrefix (const std::string &error_type) const
 
void callMooseError (std::string msg, const bool with_prefix) const
 
MooseObjectParameterName uniqueParameterName (const std::string &parameter_name) const
 
const InputParametersparameters () const
 
MooseObjectName uniqueName () const
 
const T & getParam (const std::string &name) const
 
std::vector< std::pair< T1, T2 > > getParam (const std::string &param1, const std::string &param2) const
 
const T * queryParam (const std::string &name) const
 
const T & getRenamedParam (const std::string &old_name, const std::string &new_name) const
 
getCheckedPointerParam (const std::string &name, const std::string &error_string="") const
 
bool isParamValid (const std::string &name) const
 
bool isParamSetByUser (const std::string &nm) const
 
void paramError (const std::string &param, Args... args) const
 
void paramWarning (const std::string &param, Args... args) const
 
void paramInfo (const std::string &param, Args... args) const
 
void connectControllableParams (const std::string &parameter, const std::string &object_type, const std::string &object_name, const std::string &object_parameter) const
 
void mooseError (Args &&... args) const
 
void mooseErrorNonPrefixed (Args &&... args) const
 
void mooseDocumentedError (const std::string &repo_name, const unsigned int issue_num, Args &&... args) const
 
void mooseWarning (Args &&... args) const
 
void mooseWarningNonPrefixed (Args &&... args) const
 
void mooseDeprecated (Args &&... args) const
 
void mooseInfo (Args &&... args) const
 
std::string getDataFileName (const std::string &param) const
 
std::string getDataFileNameByName (const std::string &relative_path) const
 
std::string getDataFilePath (const std::string &relative_path) const
 
virtual void initialSetup ()
 
virtual void timestepSetup ()
 
virtual void jacobianSetup ()
 
virtual void residualSetup ()
 
virtual void customSetup (const ExecFlagType &)
 
const ExecFlagEnumgetExecuteOnEnum () const
 
UserObjectName getUserObjectName (const std::string &param_name) const
 
const T & getUserObject (const std::string &param_name, bool is_dependency=true) const
 
const T & getUserObjectByName (const UserObjectName &object_name, bool is_dependency=true) const
 
const UserObjectgetUserObjectBase (const std::string &param_name, bool is_dependency=true) const
 
const UserObjectgetUserObjectBaseByName (const UserObjectName &object_name, bool is_dependency=true) const
 
const std::vector< MooseVariableScalar *> & getCoupledMooseScalarVars ()
 
const std::set< TagID > & getScalarVariableCoupleableVectorTags () const
 
const std::set< TagID > & getScalarVariableCoupleableMatrixTags () const
 
const GenericMaterialProperty< T, is_ad > & getGenericMaterialProperty (const std::string &name, MaterialData &material_data, const unsigned int state=0)
 
const GenericMaterialProperty< T, is_ad > & getGenericMaterialProperty (const std::string &name, const unsigned int state=0)
 
const GenericMaterialProperty< T, is_ad > & getGenericMaterialProperty (const std::string &name, const unsigned int state=0)
 
const MaterialProperty< T > & getMaterialProperty (const std::string &name, MaterialData &material_data, const unsigned int state=0)
 
const MaterialProperty< T > & getMaterialProperty (const std::string &name, const unsigned int state=0)
 
const MaterialProperty< T > & getMaterialProperty (const std::string &name, const unsigned int state=0)
 
const ADMaterialProperty< T > & getADMaterialProperty (const std::string &name, MaterialData &material_data)
 
const ADMaterialProperty< T > & getADMaterialProperty (const std::string &name)
 
const ADMaterialProperty< T > & getADMaterialProperty (const std::string &name)
 
const MaterialProperty< T > & getMaterialPropertyOld (const std::string &name, MaterialData &material_data)
 
const MaterialProperty< T > & getMaterialPropertyOld (const std::string &name)
 
const MaterialProperty< T > & getMaterialPropertyOld (const std::string &name)
 
const MaterialProperty< T > & getMaterialPropertyOlder (const std::string &name, MaterialData &material_data)
 
const MaterialProperty< T > & getMaterialPropertyOlder (const std::string &name)
 
const MaterialProperty< T > & getMaterialPropertyOlder (const std::string &name)
 
const GenericMaterialProperty< T, is_ad > & getGenericMaterialPropertyByName (const MaterialPropertyName &name, MaterialData &material_data, const unsigned int state)
 
const GenericMaterialProperty< T, is_ad > & getGenericMaterialPropertyByName (const MaterialPropertyName &name, const unsigned int state=0)
 
const GenericMaterialProperty< T, is_ad > & getGenericMaterialPropertyByName (const MaterialPropertyName &name, const unsigned int state=0)
 
const MaterialProperty< T > & getMaterialPropertyByName (const MaterialPropertyName &name, MaterialData &material_data, const unsigned int state=0)
 
const MaterialProperty< T > & getMaterialPropertyByName (const MaterialPropertyName &name, const unsigned int state=0)
 
const MaterialProperty< T > & getMaterialPropertyByName (const MaterialPropertyName &name, const unsigned int state=0)
 
const ADMaterialProperty< T > & getADMaterialPropertyByName (const MaterialPropertyName &name, MaterialData &material_data)
 
const ADMaterialProperty< T > & getADMaterialPropertyByName (const MaterialPropertyName &name)
 
const ADMaterialProperty< T > & getADMaterialPropertyByName (const MaterialPropertyName &name)
 
const MaterialProperty< T > & getMaterialPropertyOldByName (const MaterialPropertyName &name, MaterialData &material_data)
 
const MaterialProperty< T > & getMaterialPropertyOldByName (const MaterialPropertyName &name)
 
const MaterialProperty< T > & getMaterialPropertyOldByName (const MaterialPropertyName &name)
 
const MaterialProperty< T > & getMaterialPropertyOlderByName (const MaterialPropertyName &name, MaterialData &material_data)
 
const MaterialProperty< T > & getMaterialPropertyOlderByName (const MaterialPropertyName &name)
 
const MaterialProperty< T > & getMaterialPropertyOlderByName (const MaterialPropertyName &name)
 
std::pair< const MaterialProperty< T > *, std::set< SubdomainID > > getBlockMaterialProperty (const MaterialPropertyName &name)
 
const GenericMaterialProperty< T, is_ad > & getGenericZeroMaterialProperty (const std::string &name)
 
const GenericMaterialProperty< T, is_ad > & getGenericZeroMaterialProperty ()
 
const GenericMaterialProperty< T, is_ad > & getGenericZeroMaterialPropertyByName (const std::string &prop_name)
 
const MaterialProperty< T > & getZeroMaterialProperty (Ts... args)
 
std::set< SubdomainIDgetMaterialPropertyBlocks (const std::string &name)
 
std::vector< SubdomainName > getMaterialPropertyBlockNames (const std::string &name)
 
std::set< BoundaryIDgetMaterialPropertyBoundaryIDs (const std::string &name)
 
std::vector< BoundaryName > getMaterialPropertyBoundaryNames (const std::string &name)
 
void checkBlockAndBoundaryCompatibility (std::shared_ptr< MaterialBase > discrete)
 
std::unordered_map< SubdomainID, std::vector< MaterialBase *> > buildRequiredMaterials (bool allow_stateful=true)
 
void statefulPropertiesAllowed (bool)
 
bool getMaterialPropertyCalled () const
 
virtual const std::unordered_set< unsigned int > & getMatPropDependencies () const
 
virtual void resolveOptionalProperties ()
 
const GenericMaterialProperty< T, is_ad > & getPossiblyConstantGenericMaterialPropertyByName (const MaterialPropertyName &prop_name, MaterialData &material_data, const unsigned int state)
 
bool isImplicit ()
 
Moose::StateArg determineState () const
 
virtual void threadJoin (const UserObject &) override
 
virtual void threadJoin (const UserObject &) override
 
virtual void subdomainSetup () override
 
virtual void subdomainSetup () override
 
bool hasUserObject (const std::string &param_name) const
 
bool hasUserObject (const std::string &param_name) const
 
bool hasUserObject (const std::string &param_name) const
 
bool hasUserObject (const std::string &param_name) const
 
bool hasUserObjectByName (const UserObjectName &object_name) const
 
bool hasUserObjectByName (const UserObjectName &object_name) const
 
bool hasUserObjectByName (const UserObjectName &object_name) const
 
bool hasUserObjectByName (const UserObjectName &object_name) const
 
const GenericOptionalMaterialProperty< T, is_ad > & getGenericOptionalMaterialProperty (const std::string &name, const unsigned int state=0)
 
const GenericOptionalMaterialProperty< T, is_ad > & getGenericOptionalMaterialProperty (const std::string &name, const unsigned int state=0)
 
const OptionalMaterialProperty< T > & getOptionalMaterialProperty (const std::string &name, const unsigned int state=0)
 
const OptionalMaterialProperty< T > & getOptionalMaterialProperty (const std::string &name, const unsigned int state=0)
 
const OptionalADMaterialProperty< T > & getOptionalADMaterialProperty (const std::string &name)
 
const OptionalADMaterialProperty< T > & getOptionalADMaterialProperty (const std::string &name)
 
const OptionalMaterialProperty< T > & getOptionalMaterialPropertyOld (const std::string &name)
 
const OptionalMaterialProperty< T > & getOptionalMaterialPropertyOld (const std::string &name)
 
const OptionalMaterialProperty< T > & getOptionalMaterialPropertyOlder (const std::string &name)
 
const OptionalMaterialProperty< T > & getOptionalMaterialPropertyOlder (const std::string &name)
 
MaterialBasegetMaterial (const std::string &name)
 
MaterialBasegetMaterial (const std::string &name)
 
MaterialBasegetMaterialByName (const std::string &name, bool no_warn=false)
 
MaterialBasegetMaterialByName (const std::string &name, bool no_warn=false)
 
bool hasMaterialProperty (const std::string &name)
 
bool hasMaterialProperty (const std::string &name)
 
bool hasMaterialPropertyByName (const std::string &name)
 
bool hasMaterialPropertyByName (const std::string &name)
 
bool hasADMaterialProperty (const std::string &name)
 
bool hasADMaterialProperty (const std::string &name)
 
bool hasADMaterialPropertyByName (const std::string &name)
 
bool hasADMaterialPropertyByName (const std::string &name)
 
bool hasGenericMaterialProperty (const std::string &name)
 
bool hasGenericMaterialProperty (const std::string &name)
 
bool hasGenericMaterialPropertyByName (const std::string &name)
 
bool hasGenericMaterialPropertyByName (const std::string &name)
 
const FunctiongetFunction (const std::string &name) const
 
const FunctiongetFunctionByName (const FunctionName &name) const
 
bool hasFunction (const std::string &param_name) const
 
bool hasFunctionByName (const FunctionName &name) const
 
bool isDefaultPostprocessorValue (const std::string &param_name, const unsigned int index=0) const
 
bool hasPostprocessor (const std::string &param_name, const unsigned int index=0) const
 
bool hasPostprocessorByName (const PostprocessorName &name) const
 
std::size_t coupledPostprocessors (const std::string &param_name) const
 
const PostprocessorName & getPostprocessorName (const std::string &param_name, const unsigned int index=0) const
 
const VectorPostprocessorValuegetVectorPostprocessorValue (const std::string &param_name, const std::string &vector_name) const
 
const VectorPostprocessorValuegetVectorPostprocessorValue (const std::string &param_name, const std::string &vector_name, bool needs_broadcast) const
 
const VectorPostprocessorValuegetVectorPostprocessorValueByName (const VectorPostprocessorName &name, const std::string &vector_name) const
 
const VectorPostprocessorValuegetVectorPostprocessorValueByName (const VectorPostprocessorName &name, const std::string &vector_name, bool needs_broadcast) const
 
const VectorPostprocessorValuegetVectorPostprocessorValueOld (const std::string &param_name, const std::string &vector_name) const
 
const VectorPostprocessorValuegetVectorPostprocessorValueOld (const std::string &param_name, const std::string &vector_name, bool needs_broadcast) const
 
const VectorPostprocessorValuegetVectorPostprocessorValueOldByName (const VectorPostprocessorName &name, const std::string &vector_name) const
 
const VectorPostprocessorValuegetVectorPostprocessorValueOldByName (const VectorPostprocessorName &name, const std::string &vector_name, bool needs_broadcast) const
 
const ScatterVectorPostprocessorValuegetScatterVectorPostprocessorValue (const std::string &param_name, const std::string &vector_name) const
 
const ScatterVectorPostprocessorValuegetScatterVectorPostprocessorValueByName (const VectorPostprocessorName &name, const std::string &vector_name) const
 
const ScatterVectorPostprocessorValuegetScatterVectorPostprocessorValueOld (const std::string &param_name, const std::string &vector_name) const
 
const ScatterVectorPostprocessorValuegetScatterVectorPostprocessorValueOldByName (const VectorPostprocessorName &name, const std::string &vector_name) const
 
bool hasVectorPostprocessor (const std::string &param_name, const std::string &vector_name) const
 
bool hasVectorPostprocessor (const std::string &param_name) const
 
bool hasVectorPostprocessorByName (const VectorPostprocessorName &name, const std::string &vector_name) const
 
bool hasVectorPostprocessorByName (const VectorPostprocessorName &name) const
 
const VectorPostprocessorName & getVectorPostprocessorName (const std::string &param_name) const
 
T & getSampler (const std::string &name)
 
SamplergetSampler (const std::string &name)
 
T & getSamplerByName (const SamplerName &name)
 
SamplergetSamplerByName (const SamplerName &name)
 
virtual void meshChanged ()
 
virtual void meshDisplaced ()
 
PerfGraphperfGraph ()
 
const PostprocessorValuegetPostprocessorValue (const std::string &param_name, const unsigned int index=0) const
 
const PostprocessorValuegetPostprocessorValue (const std::string &param_name, const unsigned int index=0) const
 
const PostprocessorValuegetPostprocessorValueOld (const std::string &param_name, const unsigned int index=0) const
 
const PostprocessorValuegetPostprocessorValueOld (const std::string &param_name, const unsigned int index=0) const
 
const PostprocessorValuegetPostprocessorValueOlder (const std::string &param_name, const unsigned int index=0) const
 
const PostprocessorValuegetPostprocessorValueOlder (const std::string &param_name, const unsigned int index=0) const
 
virtual const PostprocessorValuegetPostprocessorValueByName (const PostprocessorName &name) const
 
virtual const PostprocessorValuegetPostprocessorValueByName (const PostprocessorName &name) const
 
const PostprocessorValuegetPostprocessorValueOldByName (const PostprocessorName &name) const
 
const PostprocessorValuegetPostprocessorValueOldByName (const PostprocessorName &name) const
 
const PostprocessorValuegetPostprocessorValueOlderByName (const PostprocessorName &name) const
 
const PostprocessorValuegetPostprocessorValueOlderByName (const PostprocessorName &name) const
 
bool isVectorPostprocessorDistributed (const std::string &param_name) const
 
bool isVectorPostprocessorDistributed (const std::string &param_name) const
 
bool isVectorPostprocessorDistributedByName (const VectorPostprocessorName &name) const
 
bool isVectorPostprocessorDistributedByName (const VectorPostprocessorName &name) const
 
const DistributiongetDistribution (const std::string &name) const
 
const T & getDistribution (const std::string &name) const
 
const DistributiongetDistribution (const std::string &name) const
 
const T & getDistribution (const std::string &name) const
 
const DistributiongetDistributionByName (const DistributionName &name) const
 
const T & getDistributionByName (const std::string &name) const
 
const DistributiongetDistributionByName (const DistributionName &name) const
 
const T & getDistributionByName (const std::string &name) const
 
const Parallel::Communicator & comm () const
 
processor_id_type n_processors () const
 
processor_id_type processor_id () const
 

Static Public Member Functions

static InputParameters validParams ()
 
static void sort (typename std::vector< T > &vector)
 
static void sortDFS (typename std::vector< T > &vector)
 
static void cyclicDependencyError (CyclicDependencyException< T2 > &e, const std::string &header)
 

Public Attributes

const Real _f_tol
 Tolerance on yield function. More...
 
const Real _ic_tol
 Tolerance on internal constraint. More...
 
const ConsoleStream _console
 

Static Public Attributes

static constexpr PropertyValue::id_type default_property_id
 
static constexpr PropertyValue::id_type zero_property_id
 
static constexpr auto SYSTEM
 
static constexpr auto NAME
 

Protected Member Functions

Real dphi_dj2 (const Real j2, const Real j3) const
 derivative of phi with respect to J2, phi is b*I1 + (J2^{3/2} - c*J3)^{1/3} More...
 
Real dphi_dj3 (const Real j2, const Real j3) const
 derivative of phi with respect to J3 More...
 
Real dfj2_dj2 (const Real j2, const Real j3) const
 derivative of dphi_dJ2 with respect to J2 More...
 
Real dfj2_dj3 (const Real j2, const Real j3) const
 derivative of dphi_dJ2 with respect to J3 More...
 
Real dfj3_dj2 (const Real j2, const Real j3) const
 derivative of dphi_dJ3 with respect to J2 More...
 
Real dfj3_dj3 (const Real j2, const Real j3) const
 derivative of dphi_dJ3 with respect to J3 More...
 
RankTwoTensor dI_sigma () const
 derivative of the trace with respect to sigma rank two tensor More...
 
RankTwoTensor dj2_dSkl (const RankTwoTensor &stress) const
 derivative of the second invariant with respect to the stress deviatoric tensor More...
 
Real yieldFunction (const RankTwoTensor &stress, Real intnl) const override
 Yield_function = a[b*I1 + (J2^{3/2} - c*J3)^{1/3}] - yield_strength. More...
 
RankTwoTensor dyieldFunction_dstress (const RankTwoTensor &stress, Real intnl) const override
 Tensor derivative of the yield_function with respect to the stress tensor. More...
 
RankFourTensor dflowPotential_dstress (const RankTwoTensor &stress, Real intnl) const override
 Tensor derivative of the tensor derivative of the yield_function with respect to the stress tensor. More...
 
RankTwoTensor flowPotential (const RankTwoTensor &stress, Real intnl) const override
 Receives the flag for associative or non-associative and calculates the flow potential accordingly. More...
 
Real dyieldFunction_dintnl (const RankTwoTensor &stress, Real intnl) const override
 The derivative of yield function with respect to the internal parameter. More...
 
RankTwoTensor dflowPotential_dintnl (const RankTwoTensor &stress, Real intnl) const override
 The derivative of the flow potential with respect to the internal parameter. More...
 
virtual Real yieldStrength (Real intnl) const
 YieldStrength. More...
 
virtual Real dyieldStrength (Real intnl) const
 d(yieldStrength)/d(intnl) More...
 
virtual Real hardPotential (const RankTwoTensor &stress, Real intnl) const
 The hardening potential. More...
 
virtual RankTwoTensor dhardPotential_dstress (const RankTwoTensor &stress, Real intnl) const
 The derivative of the hardening potential with respect to stress. More...
 
virtual Real dhardPotential_dintnl (const RankTwoTensor &stress, Real intnl) const
 The derivative of the hardening potential with respect to the internal parameter. More...
 
virtual void addPostprocessorDependencyHelper (const PostprocessorName &name) const override
 
virtual void addVectorPostprocessorDependencyHelper (const VectorPostprocessorName &name) const override
 
virtual void addUserObjectDependencyHelper (const UserObject &uo) const override
 
void addReporterDependencyHelper (const ReporterName &reporter_name) override
 
const ReporterNamegetReporterName (const std::string &param_name) const
 
T & declareRestartableData (const std::string &data_name, Args &&... args)
 
ManagedValue< T > declareManagedRestartableDataWithContext (const std::string &data_name, void *context, Args &&... args)
 
const T & getRestartableData (const std::string &data_name) const
 
T & declareRestartableDataWithContext (const std::string &data_name, void *context, Args &&... args)
 
T & declareRecoverableData (const std::string &data_name, Args &&... args)
 
T & declareRestartableDataWithObjectName (const std::string &data_name, const std::string &object_name, Args &&... args)
 
T & declareRestartableDataWithObjectNameWithContext (const std::string &data_name, const std::string &object_name, void *context, Args &&... args)
 
std::string restartableName (const std::string &data_name) const
 
const T & getMeshProperty (const std::string &data_name, const std::string &prefix)
 
const T & getMeshProperty (const std::string &data_name)
 
bool hasMeshProperty (const std::string &data_name, const std::string &prefix) const
 
bool hasMeshProperty (const std::string &data_name, const std::string &prefix) const
 
bool hasMeshProperty (const std::string &data_name) const
 
bool hasMeshProperty (const std::string &data_name) const
 
std::string meshPropertyName (const std::string &data_name) const
 
PerfID registerTimedSection (const std::string &section_name, const unsigned int level) const
 
PerfID registerTimedSection (const std::string &section_name, const unsigned int level, const std::string &live_message, const bool print_dots=true) const
 
std::string timedSectionName (const std::string &section_name) const
 
bool isCoupledScalar (const std::string &var_name, unsigned int i=0) const
 
unsigned int coupledScalarComponents (const std::string &var_name) const
 
unsigned int coupledScalar (const std::string &var_name, unsigned int comp=0) const
 
libMesh::Order coupledScalarOrder (const std::string &var_name, unsigned int comp=0) const
 
const VariableValuecoupledScalarValue (const std::string &var_name, unsigned int comp=0) const
 
const ADVariableValueadCoupledScalarValue (const std::string &var_name, unsigned int comp=0) const
 
const GenericVariableValue< is_ad > & coupledGenericScalarValue (const std::string &var_name, unsigned int comp=0) const
 
const GenericVariableValue< false > & coupledGenericScalarValue (const std::string &var_name, const unsigned int comp) const
 
const GenericVariableValue< true > & coupledGenericScalarValue (const std::string &var_name, const unsigned int comp) const
 
const VariableValuecoupledVectorTagScalarValue (const std::string &var_name, TagID tag, unsigned int comp=0) const
 
const VariableValuecoupledMatrixTagScalarValue (const std::string &var_name, TagID tag, unsigned int comp=0) const
 
const VariableValuecoupledScalarValueOld (const std::string &var_name, unsigned int comp=0) const
 
const VariableValuecoupledScalarValueOlder (const std::string &var_name, unsigned int comp=0) const
 
const VariableValuecoupledScalarDot (const std::string &var_name, unsigned int comp=0) const
 
const ADVariableValueadCoupledScalarDot (const std::string &var_name, unsigned int comp=0) const
 
const VariableValuecoupledScalarDotDot (const std::string &var_name, unsigned int comp=0) const
 
const VariableValuecoupledScalarDotOld (const std::string &var_name, unsigned int comp=0) const
 
const VariableValuecoupledScalarDotDotOld (const std::string &var_name, unsigned int comp=0) const
 
const VariableValuecoupledScalarDotDu (const std::string &var_name, unsigned int comp=0) const
 
const VariableValuecoupledScalarDotDotDu (const std::string &var_name, unsigned int comp=0) const
 
const MooseVariableScalargetScalarVar (const std::string &var_name, unsigned int comp) const
 
virtual void checkMaterialProperty (const std::string &name, const unsigned int state)
 
void markMatPropRequested (const std::string &)
 
MaterialPropertyName getMaterialPropertyName (const std::string &name) const
 
void checkExecutionStage ()
 
const T & getReporterValue (const std::string &param_name, const std::size_t time_index=0)
 
const T & getReporterValue (const std::string &param_name, ReporterMode mode, const std::size_t time_index=0)
 
const T & getReporterValue (const std::string &param_name, const std::size_t time_index=0)
 
const T & getReporterValue (const std::string &param_name, ReporterMode mode, const std::size_t time_index=0)
 
const T & getReporterValueByName (const ReporterName &reporter_name, const std::size_t time_index=0)
 
const T & getReporterValueByName (const ReporterName &reporter_name, ReporterMode mode, const std::size_t time_index=0)
 
const T & getReporterValueByName (const ReporterName &reporter_name, const std::size_t time_index=0)
 
const T & getReporterValueByName (const ReporterName &reporter_name, ReporterMode mode, const std::size_t time_index=0)
 
bool hasReporterValue (const std::string &param_name) const
 
bool hasReporterValue (const std::string &param_name) const
 
bool hasReporterValue (const std::string &param_name) const
 
bool hasReporterValue (const std::string &param_name) const
 
bool hasReporterValueByName (const ReporterName &reporter_name) const
 
bool hasReporterValueByName (const ReporterName &reporter_name) const
 
bool hasReporterValueByName (const ReporterName &reporter_name) const
 
bool hasReporterValueByName (const ReporterName &reporter_name) const
 
const GenericMaterialProperty< T, is_ad > * defaultGenericMaterialProperty (const std::string &name)
 
const GenericMaterialProperty< T, is_ad > * defaultGenericMaterialProperty (const std::string &name)
 
const MaterialProperty< T > * defaultMaterialProperty (const std::string &name)
 
const MaterialProperty< T > * defaultMaterialProperty (const std::string &name)
 
const ADMaterialProperty< T > * defaultADMaterialProperty (const std::string &name)
 
const ADMaterialProperty< T > * defaultADMaterialProperty (const std::string &name)
 

Static Protected Member Functions

static std::string meshPropertyName (const std::string &data_name, const std::string &prefix)
 

Protected Attributes

const Real _b
 A constant to model the influence of pressure. More...
 
Real _c
 A constant to model the influence of strength differential effect. More...
 
const bool _associative
 Flag for flow-rule, true if not specified. More...
 
RankFourTensor _h
 Comes from transforming the stress tensor to the deviatoric stress tensor. More...
 
Real _a
 A constant used in the constructor that depends on _b and _c. More...
 
SubProblem_subproblem
 
FEProblemBase_fe_problem
 
SystemBase_sys
 
const THREAD_ID _tid
 
Assembly_assembly
 
const Moose::CoordinateSystemType_coord_sys
 
const bool _duplicate_initial_execution
 
std::set< std::string > _depend_uo
 
const bool & _enabled
 
MooseApp_app
 
const std::string _type
 
const std::string _name
 
const InputParameters_pars
 
Factory_factory
 
ActionFactory_action_factory
 
const ExecFlagEnum_execute_enum
 
const ExecFlagType_current_execute_flag
 
MooseApp_restartable_app
 
const std::string _restartable_system_name
 
const THREAD_ID _restartable_tid
 
const bool _restartable_read_only
 
FEProblemBase_mci_feproblem
 
FEProblemBase_mdi_feproblem
 
MooseApp_pg_moose_app
 
const std::string _prefix
 
FEProblemBase_sc_fe_problem
 
const THREAD_ID _sc_tid
 
const Real_real_zero
 
const VariableValue_scalar_zero
 
const Point & _point_zero
 
const InputParameters_mi_params
 
const std::string _mi_name
 
const MooseObjectName _mi_moose_object_name
 
FEProblemBase_mi_feproblem
 
SubProblem_mi_subproblem
 
const THREAD_ID _mi_tid
 
const Moose::MaterialDataType _material_data_type
 
MaterialData_material_data
 
bool _stateful_allowed
 
bool _get_material_property_called
 
std::vector< std::unique_ptr< PropertyValue > > _default_properties
 
std::unordered_set< unsigned int_material_property_dependencies
 
const MaterialPropertyName _get_suffix
 
const bool _use_interpolated_state
 
const InputParameters_ti_params
 
FEProblemBase_ti_feproblem
 
bool _is_implicit
 
Real_t
 
const Real_t_old
 
int_t_step
 
Real_dt
 
Real_dt_old
 
bool _is_transient
 
const Parallel::Communicator & _communicator
 

Static Protected Attributes

static const std::string _interpolated_old
 
static const std::string _interpolated_older
 

Detailed Description

IsotropicSD plasticity model from Yoon (2013) the name of the paper is "Asymmetric yield function based on the stress invariants for pressure sensitive metals" published 4th December 2013.

This model accounts for sensitivity in pressure and for the strength differential effect Yield_function = \( a[b*I_{1} + (J2^{3/2} - c*J3)^{1/3}]\) - yield_strength The last three functions are the main functions that call all other functions in this module for the Newton-Raphson method.

Definition at line 26 of file SolidMechanicsPlasticIsotropicSD.h.

Constructor & Destructor Documentation

◆ SolidMechanicsPlasticIsotropicSD()

SolidMechanicsPlasticIsotropicSD::SolidMechanicsPlasticIsotropicSD ( const InputParameters parameters)

Definition at line 31 of file SolidMechanicsPlasticIsotropicSD.C.

34  _b(getParam<Real>("b")),
35  _c(getParam<Real>("c")),
36  _associative(getParam<bool>("associative"))
37 {
38  _a = 1.0 / (_b + std::pow(1.0 / std::sqrt(27.0) - _c / 27.0, 1.0 / 3.0));
39  for (unsigned i = 0; i < 3; ++i)
40  for (unsigned j = 0; j < 3; ++j)
41  for (unsigned k = 0; k < 3; ++k)
42  for (unsigned l = 0; l < 3; ++l)
43  _h(i, j, k, l) = ((i == k) * (j == l) - 1.0 / 3.0 * (i == j) * (k == l));
44 }
const bool _associative
Flag for flow-rule, true if not specified.
const Real _b
A constant to model the influence of pressure.
Real _c
A constant to model the influence of strength differential effect.
SolidMechanicsPlasticJ2(const InputParameters &parameters)
const InputParameters & parameters() const
static const std::complex< double > j(0, 1)
Complex number "j" (also known as "i")
Real _a
A constant used in the constructor that depends on _b and _c.
MooseUnits pow(const MooseUnits &, int)
static const std::string k
Definition: NS.h:130
RankFourTensor _h
Comes from transforming the stress tensor to the deviatoric stress tensor.

Member Function Documentation

◆ activeConstraints()

void SolidMechanicsPlasticModel::activeConstraints ( const std::vector< Real > &  f,
const RankTwoTensor stress,
Real  intnl,
const RankFourTensor Eijkl,
std::vector< bool > &  act,
RankTwoTensor returned_stress 
) const
virtualinherited

The active yield surfaces, given a vector of yield functions.

This is used by FiniteStrainMultiPlasticity to determine the initial set of active constraints at the trial (stress, intnl) configuration. It is up to you (the coder) to determine how accurate you want the returned_stress to be. Currently it is only used by FiniteStrainMultiPlasticity to estimate a good starting value for the Newton-Rahson procedure, so currently it may not need to be super perfect.

Parameters
fvalues of the yield functions
stressstress tensor
intnlinternal parameter
Eijklelasticity tensor (stress = Eijkl*strain)
[out]actact[i] = true if the i_th yield function is active
[out]returned_stressApproximate value of the returned stress

Reimplemented in SolidMechanicsPlasticMohrCoulombMulti, SolidMechanicsPlasticTensileMulti, SolidMechanicsPlasticMeanCapTC, SolidMechanicsPlasticWeakPlaneShear, and SolidMechanicsPlasticWeakPlaneTensile.

Definition at line 186 of file SolidMechanicsPlasticModel.C.

192 {
193  mooseAssert(f.size() == numberSurfaces(),
194  "f incorrectly sized at " << f.size() << " in activeConstraints");
195  act.resize(numberSurfaces());
196  for (unsigned surface = 0; surface < numberSurfaces(); ++surface)
197  act[surface] = (f[surface] > _f_tol);
198 }
Real f(Real x)
Test function for Brents method.
virtual unsigned int numberSurfaces() const
The number of yield surfaces for this plasticity model.
const Real _f_tol
Tolerance on yield function.

◆ consistentTangentOperator()

RankFourTensor SolidMechanicsPlasticJ2::consistentTangentOperator ( const RankTwoTensor trial_stress,
Real  intnl_old,
const RankTwoTensor stress,
Real  intnl,
const RankFourTensor E_ijkl,
const std::vector< Real > &  cumulative_pm 
) const
overridevirtualinherited

Calculates a custom consistent tangent operator.

You may choose to over-ride this in your derived SolidMechanicsPlasticXXXX class.

(Note, if you over-ride returnMap, you will probably want to override consistentTangentOpertor too, otherwise it will default to E_ijkl.)

Parameters
stress_oldtrial stress before returning
intnl_oldinternal parameter before returning
stresscurrent returned stress state
intnlinternal parameter
E_ijklelasticity tensor
cumulative_pmthe cumulative plastic multipliers
Returns
the consistent tangent operator: E_ijkl if not over-ridden

Reimplemented from SolidMechanicsPlasticModel.

Definition at line 195 of file SolidMechanicsPlasticJ2.C.

201 {
202  if (!_use_custom_cto)
204  trial_stress, intnl_old, stress, intnl, E_ijkl, cumulative_pm);
205 
206  Real mu = E_ijkl(0, 1, 0, 1);
207 
208  Real h = 3 * mu + dyieldStrength(intnl);
209  RankTwoTensor sij = stress.deviatoric();
210  Real sII = stress.secondInvariant();
211  Real equivalent_stress = std::sqrt(3.0 * sII);
212  Real zeta = cumulative_pm[0] / (1.0 + 3.0 * mu * cumulative_pm[0] / equivalent_stress);
213 
214  return E_ijkl - 3.0 * mu * mu / sII / h * sij.outerProduct(sij) -
215  4.0 * mu * mu * zeta * dflowPotential_dstress(stress, intnl);
216 }
RankFourTensorTempl< Real > outerProduct(const RankTwoTensorTempl< Real > &b) const
virtual RankFourTensor consistentTangentOperator(const RankTwoTensor &trial_stress, Real intnl_old, const RankTwoTensor &stress, Real intnl, const RankFourTensor &E_ijkl, const std::vector< Real > &cumulative_pm) const
Calculates a custom consistent tangent operator.
virtual Real dyieldStrength(Real intnl) const
d(yieldStrength)/d(intnl)
RankTwoTensorTempl< Real > deviatoric() const
virtual RankFourTensor dflowPotential_dstress(const RankTwoTensor &stress, Real intnl) const override
The derivative of the flow potential with respect to stress.
static const std::string mu
Definition: NS.h:123
const bool _use_custom_cto
Whether to use the custom consistent tangent operator calculation.
DIE A HORRIBLE DEATH HERE typedef LIBMESH_DEFAULT_SCALAR_TYPE Real

◆ dfj2_dj2()

Real SolidMechanicsPlasticIsotropicSD::dfj2_dj2 ( const Real  j2,
const Real  j3 
) const
protected

derivative of dphi_dJ2 with respect to J2

Definition at line 59 of file SolidMechanicsPlasticIsotropicSD.C.

Referenced by SolidMechanicsPlasticOrthotropic::dflowPotential_dstress(), and dflowPotential_dstress().

60 {
61  return std::pow(j2, -1.0 / 2.0) / (4 * std::pow(std::pow(j2, 3.0 / 2.0) - _c * j3, 2.0 / 3.0)) -
62  j2 / (2 * std::pow(std::pow(j2, 3.0 / 2.0) - _c * j3, 5.0 / 3.0));
63 }
Real _c
A constant to model the influence of strength differential effect.
MooseUnits pow(const MooseUnits &, int)

◆ dfj2_dj3()

Real SolidMechanicsPlasticIsotropicSD::dfj2_dj3 ( const Real  j2,
const Real  j3 
) const
protected

derivative of dphi_dJ2 with respect to J3

Definition at line 66 of file SolidMechanicsPlasticIsotropicSD.C.

Referenced by SolidMechanicsPlasticOrthotropic::dflowPotential_dstress(), and dflowPotential_dstress().

67 {
68  return _c * std::pow(j2, 1.0 / 2.0) /
69  (3 * std::pow(std::pow(j2, 3.0 / 2.0) - _c * j3, 5.0 / 3.0));
70 }
Real _c
A constant to model the influence of strength differential effect.
MooseUnits pow(const MooseUnits &, int)

◆ dfj3_dj2()

Real SolidMechanicsPlasticIsotropicSD::dfj3_dj2 ( const Real  j2,
const Real  j3 
) const
protected

derivative of dphi_dJ3 with respect to J2

Definition at line 73 of file SolidMechanicsPlasticIsotropicSD.C.

Referenced by SolidMechanicsPlasticOrthotropic::dflowPotential_dstress(), and dflowPotential_dstress().

74 {
75  return _c * std::pow(j2, 1.0 / 2.0) /
76  (3 * std::pow(std::pow(j2, 3.0 / 2.0) - _c * j3, 5.0 / 3.0));
77 }
Real _c
A constant to model the influence of strength differential effect.
MooseUnits pow(const MooseUnits &, int)

◆ dfj3_dj3()

Real SolidMechanicsPlasticIsotropicSD::dfj3_dj3 ( const Real  j2,
const Real  j3 
) const
protected

derivative of dphi_dJ3 with respect to J3

Definition at line 80 of file SolidMechanicsPlasticIsotropicSD.C.

Referenced by SolidMechanicsPlasticOrthotropic::dflowPotential_dstress(), and dflowPotential_dstress().

81 {
82  return -_c * _c * 2.0 / (9 * std::pow(std::pow(j2, 3.0 / 2.0) - _c * j3, 5.0 / 3.0));
83 }
Real _c
A constant to model the influence of strength differential effect.
MooseUnits pow(const MooseUnits &, int)

◆ dflowPotential_dintnl()

RankTwoTensor SolidMechanicsPlasticJ2::dflowPotential_dintnl ( const RankTwoTensor stress,
Real  intnl 
) const
overrideprotectedvirtualinherited

The derivative of the flow potential with respect to the internal parameter.

Parameters
stressthe stress at which to calculate the flow potential
intnlinternal parameter
Returns
dr_dintnl(i, j) = dr(i, j)/dintnl

Reimplemented from SolidMechanicsPlasticModel.

Definition at line 99 of file SolidMechanicsPlasticJ2.C.

101 {
102  return RankTwoTensor();
103 }

◆ dflowPotential_dintnlV()

void SolidMechanicsPlasticModel::dflowPotential_dintnlV ( const RankTwoTensor stress,
Real  intnl,
std::vector< RankTwoTensor > &  dr_dintnl 
) const
virtualinherited

The derivative of the flow potential with respect to the internal parameter.

Parameters
stressthe stress at which to calculate the flow potential
intnlinternal parameter
[out]dr_dintnldr_dintnl[alpha](i, j) = dr[alpha](i, j)/dintnl

Reimplemented in SolidMechanicsPlasticMohrCoulombMulti, and SolidMechanicsPlasticTensileMulti.

Definition at line 137 of file SolidMechanicsPlasticModel.C.

140 {
141  return dr_dintnl.assign(1, dflowPotential_dintnl(stress, intnl));
142 }
virtual RankTwoTensor dflowPotential_dintnl(const RankTwoTensor &stress, Real intnl) const
The derivative of the flow potential with respect to the internal parameter.

◆ dflowPotential_dstress()

RankFourTensor SolidMechanicsPlasticIsotropicSD::dflowPotential_dstress ( const RankTwoTensor stress,
Real  intnl 
) const
overrideprotectedvirtual

Tensor derivative of the tensor derivative of the yield_function with respect to the stress tensor.

Reimplemented from SolidMechanicsPlasticJ2.

Reimplemented in SolidMechanicsPlasticOrthotropic.

Definition at line 124 of file SolidMechanicsPlasticIsotropicSD.C.

126 {
127  if (_associative)
128  {
129  const RankTwoTensor sDev = stress.deviatoric();
130  const RankTwoTensor dj2 = dj2_dSkl(sDev);
131  const RankTwoTensor dj3 = sDev.ddet();
132  const Real j2 = stress.secondInvariant();
133  const Real j3 = stress.thirdInvariant();
134  return _a * (dfj2_dj2(j2, j3) *
136  dfj2_dj3(j2, j3) *
138  dfj3_dj2(j2, j3) *
140  dfj3_dj3(j2, j3) *
142  }
143  else
145 }
RankFourTensorTempl< Real > outerProduct(const RankTwoTensorTempl< Real > &b) const
Real dfj3_dj2(const Real j2, const Real j3) const
derivative of dphi_dJ3 with respect to J2
Real dfj2_dj3(const Real j2, const Real j3) const
derivative of dphi_dJ2 with respect to J3
Real dfj3_dj3(const Real j2, const Real j3) const
derivative of dphi_dJ3 with respect to J3
RankTwoTensorTempl< T > innerProductTranspose(const RankTwoTensorTempl< T > &) const
const bool _associative
Flag for flow-rule, true if not specified.
RankTwoTensor dj2_dSkl(const RankTwoTensor &stress) const
derivative of the second invariant with respect to the stress deviatoric tensor
RankTwoTensorTempl< Real > deviatoric() const
virtual RankFourTensor dflowPotential_dstress(const RankTwoTensor &stress, Real intnl) const override
The derivative of the flow potential with respect to stress.
DIE A HORRIBLE DEATH HERE typedef LIBMESH_DEFAULT_SCALAR_TYPE Real
RankTwoTensorTempl< Real > ddet() const
Real _a
A constant used in the constructor that depends on _b and _c.
Real dfj2_dj2(const Real j2, const Real j3) const
derivative of dphi_dJ2 with respect to J2
RankFourTensor _h
Comes from transforming the stress tensor to the deviatoric stress tensor.

◆ dflowPotential_dstressV()

void SolidMechanicsPlasticModel::dflowPotential_dstressV ( const RankTwoTensor stress,
Real  intnl,
std::vector< RankFourTensor > &  dr_dstress 
) const
virtualinherited

The derivative of the flow potential with respect to stress.

Parameters
stressthe stress at which to calculate the flow potential
intnlinternal parameter
[out]dr_dstressdr_dstress[alpha](i, j, k, l) = dr[alpha](i, j)/dstress(k, l)

Reimplemented in SolidMechanicsPlasticMohrCoulombMulti, and SolidMechanicsPlasticTensileMulti.

Definition at line 123 of file SolidMechanicsPlasticModel.C.

126 {
127  return dr_dstress.assign(1, dflowPotential_dstress(stress, intnl));
128 }
virtual RankFourTensor dflowPotential_dstress(const RankTwoTensor &stress, Real intnl) const
The derivative of the flow potential with respect to stress.

◆ dhardPotential_dintnl()

Real SolidMechanicsPlasticModel::dhardPotential_dintnl ( const RankTwoTensor stress,
Real  intnl 
) const
protectedvirtualinherited

The derivative of the hardening potential with respect to the internal parameter.

Parameters
stressthe stress at which to calculate the hardening potentials
intnlinternal parameter
Returns
the derivative

Reimplemented in SolidMechanicsPlasticMeanCapTC.

Definition at line 172 of file SolidMechanicsPlasticModel.C.

Referenced by SolidMechanicsPlasticModel::dhardPotential_dintnlV().

174 {
175  return 0.0;
176 }

◆ dhardPotential_dintnlV()

void SolidMechanicsPlasticModel::dhardPotential_dintnlV ( const RankTwoTensor stress,
Real  intnl,
std::vector< Real > &  dh_dintnl 
) const
virtualinherited

The derivative of the hardening potential with respect to the internal parameter.

Parameters
stressthe stress at which to calculate the hardening potentials
intnlinternal parameter
[out]dh_dintnldh_dintnl[alpha] = dh[alpha]/dintnl

Definition at line 178 of file SolidMechanicsPlasticModel.C.

181 {
182  dh_dintnl.resize(numberSurfaces(), dhardPotential_dintnl(stress, intnl));
183 }
virtual Real dhardPotential_dintnl(const RankTwoTensor &stress, Real intnl) const
The derivative of the hardening potential with respect to the internal parameter. ...
virtual unsigned int numberSurfaces() const
The number of yield surfaces for this plasticity model.

◆ dhardPotential_dstress()

RankTwoTensor SolidMechanicsPlasticModel::dhardPotential_dstress ( const RankTwoTensor stress,
Real  intnl 
) const
protectedvirtualinherited

The derivative of the hardening potential with respect to stress.

Parameters
stressthe stress at which to calculate the hardening potentials
intnlinternal parameter
Returns
dh_dstress(i, j) = dh/dstress(i, j)

Reimplemented in SolidMechanicsPlasticMeanCapTC.

Definition at line 158 of file SolidMechanicsPlasticModel.C.

Referenced by SolidMechanicsPlasticModel::dhardPotential_dstressV().

160 {
161  return RankTwoTensor();
162 }

◆ dhardPotential_dstressV()

void SolidMechanicsPlasticModel::dhardPotential_dstressV ( const RankTwoTensor stress,
Real  intnl,
std::vector< RankTwoTensor > &  dh_dstress 
) const
virtualinherited

The derivative of the hardening potential with respect to stress.

Parameters
stressthe stress at which to calculate the hardening potentials
intnlinternal parameter
[out]dh_dstressdh_dstress[alpha](i, j) = dh[alpha]/dstress(i, j)

Definition at line 164 of file SolidMechanicsPlasticModel.C.

167 {
168  dh_dstress.assign(numberSurfaces(), dhardPotential_dstress(stress, intnl));
169 }
virtual RankTwoTensor dhardPotential_dstress(const RankTwoTensor &stress, Real intnl) const
The derivative of the hardening potential with respect to stress.
virtual unsigned int numberSurfaces() const
The number of yield surfaces for this plasticity model.

◆ dI_sigma()

RankTwoTensor SolidMechanicsPlasticIsotropicSD::dI_sigma ( ) const
protected

◆ dj2_dSkl()

RankTwoTensor SolidMechanicsPlasticIsotropicSD::dj2_dSkl ( const RankTwoTensor stress) const
protected

derivative of the second invariant with respect to the stress deviatoric tensor

Definition at line 92 of file SolidMechanicsPlasticIsotropicSD.C.

Referenced by SolidMechanicsPlasticOrthotropic::dflowPotential_dstress(), dflowPotential_dstress(), SolidMechanicsPlasticOrthotropic::dyieldFunction_dstress(), and dyieldFunction_dstress().

93 {
95  const Real trace = stress.trace();
96  for (unsigned i = 0; i < 3; ++i)
97  for (unsigned j = 0; j < 3; ++j)
98  a(i, j) = (trace - stress(i, j)) * -1 * (i == j) + stress(i, j) * (i != j);
99 
100  return a;
101 }
DIE A HORRIBLE DEATH HERE typedef LIBMESH_DEFAULT_SCALAR_TYPE Real
static const std::complex< double > j(0, 1)
Complex number "j" (also known as "i")

◆ dphi_dj2()

Real SolidMechanicsPlasticIsotropicSD::dphi_dj2 ( const Real  j2,
const Real  j3 
) const
protected

derivative of phi with respect to J2, phi is b*I1 + (J2^{3/2} - c*J3)^{1/3}

Definition at line 47 of file SolidMechanicsPlasticIsotropicSD.C.

Referenced by SolidMechanicsPlasticOrthotropic::dflowPotential_dstress(), SolidMechanicsPlasticOrthotropic::dyieldFunction_dstress(), and dyieldFunction_dstress().

48 {
49  return std::pow(j2, 1.0 / 2.0) / (2 * std::pow(std::pow(j2, 3.0 / 2.0) - _c * j3, 2.0 / 3.0));
50 }
Real _c
A constant to model the influence of strength differential effect.
MooseUnits pow(const MooseUnits &, int)

◆ dphi_dj3()

Real SolidMechanicsPlasticIsotropicSD::dphi_dj3 ( const Real  j2,
const Real  j3 
) const
protected

derivative of phi with respect to J3

Definition at line 53 of file SolidMechanicsPlasticIsotropicSD.C.

Referenced by SolidMechanicsPlasticOrthotropic::dflowPotential_dstress(), SolidMechanicsPlasticOrthotropic::dyieldFunction_dstress(), and dyieldFunction_dstress().

54 {
55  return -_c / (3 * std::pow(std::pow(j2, 3.0 / 2.0) - _c * j3, 2.0 / 3.0));
56 }
Real _c
A constant to model the influence of strength differential effect.
MooseUnits pow(const MooseUnits &, int)

◆ dyieldFunction_dintnl()

Real SolidMechanicsPlasticJ2::dyieldFunction_dintnl ( const RankTwoTensor stress,
Real  intnl 
) const
overrideprotectedvirtualinherited

The derivative of yield function with respect to the internal parameter.

Parameters
stressthe stress at which to calculate the yield function
intnlinternal parameter
Returns
the derivative

Reimplemented from SolidMechanicsPlasticModel.

Definition at line 69 of file SolidMechanicsPlasticJ2.C.

70 {
71  return -dyieldStrength(intnl);
72 }
virtual Real dyieldStrength(Real intnl) const
d(yieldStrength)/d(intnl)

◆ dyieldFunction_dintnlV()

void SolidMechanicsPlasticModel::dyieldFunction_dintnlV ( const RankTwoTensor stress,
Real  intnl,
std::vector< Real > &  df_dintnl 
) const
virtualinherited

The derivative of yield functions with respect to the internal parameter.

Parameters
stressthe stress at which to calculate the yield function
intnlinternal parameter
[out]df_dintnldf_dintnl[alpha] = df[alpha]/dintnl

Reimplemented in SolidMechanicsPlasticMohrCoulombMulti, and SolidMechanicsPlasticTensileMulti.

Definition at line 96 of file SolidMechanicsPlasticModel.C.

99 {
100  return df_dintnl.assign(1, dyieldFunction_dintnl(stress, intnl));
101 }
virtual Real dyieldFunction_dintnl(const RankTwoTensor &stress, Real intnl) const
The derivative of yield function with respect to the internal parameter.

◆ dyieldFunction_dstress()

RankTwoTensor SolidMechanicsPlasticIsotropicSD::dyieldFunction_dstress ( const RankTwoTensor stress,
Real  intnl 
) const
overrideprotectedvirtual

Tensor derivative of the yield_function with respect to the stress tensor.

Reimplemented from SolidMechanicsPlasticJ2.

Reimplemented in SolidMechanicsPlasticOrthotropic.

Definition at line 113 of file SolidMechanicsPlasticIsotropicSD.C.

Referenced by flowPotential().

115 {
116  const RankTwoTensor sDev = stress.deviatoric();
117  const Real j2 = stress.secondInvariant();
118  const Real j3 = stress.thirdInvariant();
119  return _a * (_b * dI_sigma() + dphi_dj2(j2, j3) * _h.innerProductTranspose(dj2_dSkl(sDev)) +
120  dphi_dj3(j2, j3) * _h.innerProductTranspose(sDev.ddet()));
121 }
RankTwoTensorTempl< T > innerProductTranspose(const RankTwoTensorTempl< T > &) const
const Real _b
A constant to model the influence of pressure.
RankTwoTensor dI_sigma() const
derivative of the trace with respect to sigma rank two tensor
RankTwoTensor dj2_dSkl(const RankTwoTensor &stress) const
derivative of the second invariant with respect to the stress deviatoric tensor
Real dphi_dj2(const Real j2, const Real j3) const
derivative of phi with respect to J2, phi is b*I1 + (J2^{3/2} - c*J3)^{1/3}
RankTwoTensorTempl< Real > deviatoric() const
Real dphi_dj3(const Real j2, const Real j3) const
derivative of phi with respect to J3
DIE A HORRIBLE DEATH HERE typedef LIBMESH_DEFAULT_SCALAR_TYPE Real
RankTwoTensorTempl< Real > ddet() const
Real _a
A constant used in the constructor that depends on _b and _c.
RankFourTensor _h
Comes from transforming the stress tensor to the deviatoric stress tensor.

◆ dyieldFunction_dstressV()

void SolidMechanicsPlasticModel::dyieldFunction_dstressV ( const RankTwoTensor stress,
Real  intnl,
std::vector< RankTwoTensor > &  df_dstress 
) const
virtualinherited

The derivative of yield functions with respect to stress.

Parameters
stressthe stress at which to calculate the yield function
intnlinternal parameter
[out]df_dstressdf_dstress[alpha](i, j) = dyieldFunction[alpha]/dstress(i, j)

Reimplemented in SolidMechanicsPlasticMohrCoulombMulti, and SolidMechanicsPlasticTensileMulti.

Definition at line 82 of file SolidMechanicsPlasticModel.C.

85 {
86  df_dstress.assign(1, dyieldFunction_dstress(stress, intnl));
87 }
virtual RankTwoTensor dyieldFunction_dstress(const RankTwoTensor &stress, Real intnl) const
The derivative of yield function with respect to stress.

◆ dyieldStrength()

Real SolidMechanicsPlasticJ2::dyieldStrength ( Real  intnl) const
protectedvirtualinherited

d(yieldStrength)/d(intnl)

Definition at line 112 of file SolidMechanicsPlasticJ2.C.

Referenced by SolidMechanicsPlasticJ2::consistentTangentOperator(), SolidMechanicsPlasticJ2::dyieldFunction_dintnl(), and SolidMechanicsPlasticJ2::returnMap().

113 {
114  return _strength.derivative(intnl);
115 }
const SolidMechanicsHardeningModel & _strength
yield strength, from user input
virtual Real derivative(Real intnl) const

◆ execute()

void SolidMechanicsPlasticModel::execute ( )
virtualinherited

Implements GeneralUserObject.

Definition at line 45 of file SolidMechanicsPlasticModel.C.

46 {
47 }

◆ finalize()

void SolidMechanicsPlasticModel::finalize ( )
virtualinherited

Implements GeneralUserObject.

Definition at line 50 of file SolidMechanicsPlasticModel.C.

51 {
52 }

◆ flowPotential()

RankTwoTensor SolidMechanicsPlasticIsotropicSD::flowPotential ( const RankTwoTensor stress,
Real  intnl 
) const
overrideprotectedvirtual

Receives the flag for associative or non-associative and calculates the flow potential accordingly.

Reimplemented from SolidMechanicsPlasticJ2.

Reimplemented in SolidMechanicsPlasticOrthotropic.

Definition at line 148 of file SolidMechanicsPlasticIsotropicSD.C.

149 {
150  if (_associative)
151  return dyieldFunction_dstress(stress, intnl);
152  else
154 }
const bool _associative
Flag for flow-rule, true if not specified.
virtual RankTwoTensor dyieldFunction_dstress(const RankTwoTensor &stress, Real intnl) const override
The derivative of yield function with respect to stress.
RankTwoTensor dyieldFunction_dstress(const RankTwoTensor &stress, Real intnl) const override
Tensor derivative of the yield_function with respect to the stress tensor.

◆ flowPotentialV()

void SolidMechanicsPlasticModel::flowPotentialV ( const RankTwoTensor stress,
Real  intnl,
std::vector< RankTwoTensor > &  r 
) const
virtualinherited

The flow potentials.

Parameters
stressthe stress at which to calculate the flow potential
intnlinternal parameter
[out]rr[alpha] is the flow potential for the "alpha" yield function

Reimplemented in SolidMechanicsPlasticMohrCoulombMulti, and SolidMechanicsPlasticTensileMulti.

Definition at line 109 of file SolidMechanicsPlasticModel.C.

112 {
113  return r.assign(1, flowPotential(stress, intnl));
114 }
virtual RankTwoTensor flowPotential(const RankTwoTensor &stress, Real intnl) const
The flow potential.

◆ hardPotential()

Real SolidMechanicsPlasticModel::hardPotential ( const RankTwoTensor stress,
Real  intnl 
) const
protectedvirtualinherited

The hardening potential.

Parameters
stressthe stress at which to calculate the hardening potential
intnlinternal parameter
Returns
the hardening potential

Reimplemented in SolidMechanicsPlasticMeanCapTC.

Definition at line 145 of file SolidMechanicsPlasticModel.C.

Referenced by SolidMechanicsPlasticModel::hardPotentialV().

146 {
147  return -1.0;
148 }

◆ hardPotentialV()

void SolidMechanicsPlasticModel::hardPotentialV ( const RankTwoTensor stress,
Real  intnl,
std::vector< Real > &  h 
) const
virtualinherited

The hardening potential.

Parameters
stressthe stress at which to calculate the hardening potential
intnlinternal parameter
[out]hh[alpha] is the hardening potential for the "alpha" yield function

Definition at line 150 of file SolidMechanicsPlasticModel.C.

153 {
154  h.assign(numberSurfaces(), hardPotential(stress, intnl));
155 }
virtual Real hardPotential(const RankTwoTensor &stress, Real intnl) const
The hardening potential.
virtual unsigned int numberSurfaces() const
The number of yield surfaces for this plasticity model.

◆ initialize()

void SolidMechanicsPlasticModel::initialize ( )
virtualinherited

Implements GeneralUserObject.

Definition at line 40 of file SolidMechanicsPlasticModel.C.

41 {
42 }

◆ KuhnTuckerSingleSurface()

bool SolidMechanicsPlasticModel::KuhnTuckerSingleSurface ( Real  yf,
Real  dpm,
Real  dpm_tol 
) const
inherited

Returns true if the Kuhn-Tucker conditions for the single surface are satisfied.

Parameters
yfYield function value
dpmplastic multiplier
dpm_toltolerance on plastic multiplier: viz dpm>-dpm_tol means "dpm is non-negative"

Definition at line 246 of file SolidMechanicsPlasticModel.C.

Referenced by SolidMechanicsPlasticMohrCoulombMulti::KuhnTuckerOK(), SolidMechanicsPlasticTensileMulti::KuhnTuckerOK(), and SolidMechanicsPlasticModel::returnMap().

247 {
248  return (dpm == 0 && yf <= _f_tol) || (dpm > -dpm_tol && yf <= _f_tol && yf >= -_f_tol);
249 }
const Real _f_tol
Tolerance on yield function.

◆ modelName()

std::string SolidMechanicsPlasticJ2::modelName ( ) const
overridevirtualinherited

Implements SolidMechanicsPlasticModel.

Definition at line 118 of file SolidMechanicsPlasticJ2.C.

119 {
120  return "J2";
121 }

◆ numberSurfaces()

unsigned SolidMechanicsPlasticModel::numberSurfaces ( ) const
virtualinherited

◆ returnMap()

bool SolidMechanicsPlasticJ2::returnMap ( const RankTwoTensor trial_stress,
Real  intnl_old,
const RankFourTensor E_ijkl,
Real  ep_plastic_tolerance,
RankTwoTensor returned_stress,
Real returned_intnl,
std::vector< Real > &  dpm,
RankTwoTensor delta_dp,
std::vector< Real > &  yf,
bool &  trial_stress_inadmissible 
) const
overridevirtualinherited

Performs a custom return-map.

You may choose to over-ride this in your derived SolidMechanicsPlasticXXXX class, and you may implement the return-map algorithm in any way that suits you. Eg, using a Newton-Raphson approach, or a radial-return, etc. This may also be used as a quick way of ascertaining whether (trial_stress, intnl_old) is in fact admissible.

For over-riding this function, please note the following.

(1) Denoting the return value of the function by "successful_return", the only possible output values should be: (A) trial_stress_inadmissible=false, successful_return=true. That is, (trial_stress, intnl_old) is in fact admissible (in the elastic domain). (B) trial_stress_inadmissible=true, successful_return=false. That is (trial_stress, intnl_old) is inadmissible (outside the yield surface), and you didn't return to the yield surface. (C) trial_stress_inadmissible=true, successful_return=true. That is (trial_stress, intnl_old) is inadmissible (outside the yield surface), but you did return to the yield surface. The default implementation only handles case (A) and (B): it does not attempt to do a return-map algorithm.

(2) you must correctly signal "successful_return" using the return value of this function. Don't assume the calling function will do Kuhn-Tucker checking and so forth!

(3) In cases (A) and (B) you needn't set returned_stress, returned_intnl, delta_dp, or dpm. This is for computational efficiency.

(4) In cases (A) and (B), you MUST place the yield function values at (trial_stress, intnl_old) into yf so the calling function can use this information optimally. You will have already calculated these yield function values, which can be quite expensive, and it's not very optimal for the calling function to have to re-calculate them.

(5) In case (C), you need to set: returned_stress (the returned value of stress) returned_intnl (the returned value of the internal variable) delta_dp (the change in plastic strain) dpm (the plastic multipliers needed to bring about the return) yf (yield function values at the returned configuration)

(Note, if you over-ride returnMap, you will probably want to override consistentTangentOpertor too, otherwise it will default to E_ijkl.)

Parameters
trial_stressThe trial stress
intnl_oldValue of the internal parameter
E_ijklElasticity tensor
ep_plastic_toleranceTolerance defined by the user for the plastic strain
[out]returned_stressIn case (C): lies on the yield surface after returning and produces the correct plastic strain (normality condition). Otherwise: not defined
[out]returned_intnlIn case (C): the value of the internal parameter after returning. Otherwise: not defined
[out]dpmIn case (C): the plastic multipliers needed to bring about the return. Otherwise: not defined
[out]delta_dpIn case (C): The change in plastic strain induced by the return process. Otherwise: not defined
[out]yfIn case (C): the yield function at (returned_stress, returned_intnl). Otherwise: the yield function at (trial_stress, intnl_old)
[out]trial_stress_inadmissibleShould be set to false if the trial_stress is admissible, and true if the trial_stress is inadmissible. This can be used by the calling prorgram
Returns
true if a successful return (or a return-map not needed), false if the trial_stress is inadmissible but the return process failed

Reimplemented from SolidMechanicsPlasticModel.

Definition at line 124 of file SolidMechanicsPlasticJ2.C.

134 {
135  if (!(_use_custom_returnMap))
136  return SolidMechanicsPlasticModel::returnMap(trial_stress,
137  intnl_old,
138  E_ijkl,
139  ep_plastic_tolerance,
140  returned_stress,
141  returned_intnl,
142  dpm,
143  delta_dp,
144  yf,
145  trial_stress_inadmissible);
146 
147  yf.resize(1);
148 
149  Real yf_orig = yieldFunction(trial_stress, intnl_old);
150 
151  yf[0] = yf_orig;
152 
153  if (yf_orig < _f_tol)
154  {
155  // the trial_stress is admissible
156  trial_stress_inadmissible = false;
157  return true;
158  }
159 
160  trial_stress_inadmissible = true;
161  Real mu = E_ijkl(0, 1, 0, 1);
162 
163  // Perform a Newton-Raphson to find dpm when
164  // residual = 3*mu*dpm - trial_equivalent_stress + yieldStrength(intnl_old + dpm) = 0
165  Real trial_equivalent_stress = yf_orig + yieldStrength(intnl_old);
166  Real residual;
167  Real jac;
168  dpm[0] = 0;
169  unsigned int iter = 0;
170  do
171  {
172  residual = 3.0 * mu * dpm[0] - trial_equivalent_stress + yieldStrength(intnl_old + dpm[0]);
173  jac = 3.0 * mu + dyieldStrength(intnl_old + dpm[0]);
174  dpm[0] += -residual / jac;
175  if (iter > _max_iters) // not converging
176  return false;
177  iter++;
178  } while (residual * residual > _f_tol * _f_tol);
179 
180  // set the returned values
181  yf[0] = 0;
182  returned_intnl = intnl_old + dpm[0];
183  RankTwoTensor nn = 1.5 * trial_stress.deviatoric() /
184  trial_equivalent_stress; // = dyieldFunction_dstress(trial_stress, intnl_old) =
185  // the normal to the yield surface, at the trial
186  // stress
187  returned_stress = 2.0 / 3.0 * nn * yieldStrength(returned_intnl);
188  returned_stress.addIa(1.0 / 3.0 * trial_stress.trace());
189  delta_dp = nn * dpm[0];
190 
191  return true;
192 }
const unsigned _max_iters
max iters for custom return map loop
virtual Real yieldFunction(const RankTwoTensor &stress, Real intnl) const override
The following functions are what you should override when building single-plasticity models...
virtual Real dyieldStrength(Real intnl) const
d(yieldStrength)/d(intnl)
RankTwoTensorTempl< Real > deviatoric() const
static const std::string mu
Definition: NS.h:123
void addIa(const Real &a)
virtual bool returnMap(const RankTwoTensor &trial_stress, Real intnl_old, const RankFourTensor &E_ijkl, Real ep_plastic_tolerance, RankTwoTensor &returned_stress, Real &returned_intnl, std::vector< Real > &dpm, RankTwoTensor &delta_dp, std::vector< Real > &yf, bool &trial_stress_inadmissible) const
Performs a custom return-map.
virtual Real yieldStrength(Real intnl) const
YieldStrength.
const Real _f_tol
Tolerance on yield function.
DIE A HORRIBLE DEATH HERE typedef LIBMESH_DEFAULT_SCALAR_TYPE Real
const bool _use_custom_returnMap
Whether to use the custom return-map algorithm.

◆ useCustomCTO()

bool SolidMechanicsPlasticJ2::useCustomCTO ( ) const
overridevirtualinherited

Returns false. You will want to override this in your derived class if you write a custom consistent tangent operator function.

Reimplemented from SolidMechanicsPlasticModel.

Definition at line 225 of file SolidMechanicsPlasticJ2.C.

226 {
227  return _use_custom_cto;
228 }
const bool _use_custom_cto
Whether to use the custom consistent tangent operator calculation.

◆ useCustomReturnMap()

bool SolidMechanicsPlasticJ2::useCustomReturnMap ( ) const
overridevirtualinherited

Returns false. You will want to override this in your derived class if you write a custom returnMap function.

Reimplemented from SolidMechanicsPlasticModel.

Definition at line 219 of file SolidMechanicsPlasticJ2.C.

220 {
221  return _use_custom_returnMap;
222 }
const bool _use_custom_returnMap
Whether to use the custom return-map algorithm.

◆ validParams()

InputParameters SolidMechanicsPlasticIsotropicSD::validParams ( )
static

Definition at line 19 of file SolidMechanicsPlasticIsotropicSD.C.

Referenced by SolidMechanicsPlasticOrthotropic::validParams().

20 {
22  params.addRequiredParam<Real>("b", "A constant to model the influence of pressure");
23  params.addParam<Real>(
24  "c", 0.0, "A constant to model the influence of strength differential effect");
25  params.addParam<bool>("associative", true, "Flag for flow-rule, true if not specified");
26  params.addClassDescription("IsotropicSD plasticity for pressure sensitive materials and also "
27  "models the strength differential effect");
28  return params;
29 }
void addParam(const std::string &name, const std::initializer_list< typename T::value_type > &value, const std::string &doc_string)
static InputParameters validParams()
void addRequiredParam(const std::string &name, const std::string &doc_string)
DIE A HORRIBLE DEATH HERE typedef LIBMESH_DEFAULT_SCALAR_TYPE Real
void addClassDescription(const std::string &doc_string)

◆ yieldFunction()

Real SolidMechanicsPlasticIsotropicSD::yieldFunction ( const RankTwoTensor stress,
Real  intnl 
) const
overrideprotectedvirtual

Yield_function = a[b*I1 + (J2^{3/2} - c*J3)^{1/3}] - yield_strength.

Reimplemented from SolidMechanicsPlasticJ2.

Reimplemented in SolidMechanicsPlasticOrthotropic.

Definition at line 104 of file SolidMechanicsPlasticIsotropicSD.C.

105 {
106  return _a * (_b * stress.trace() +
107  std::pow(std::pow(stress.secondInvariant(), 1.5) - _c * stress.thirdInvariant(),
108  1.0 / 3.0)) -
109  yieldStrength(intnl);
110 }
const Real _b
A constant to model the influence of pressure.
Real _c
A constant to model the influence of strength differential effect.
virtual Real yieldStrength(Real intnl) const
YieldStrength.
Real _a
A constant used in the constructor that depends on _b and _c.
MooseUnits pow(const MooseUnits &, int)

◆ yieldFunctionV()

void SolidMechanicsPlasticModel::yieldFunctionV ( const RankTwoTensor stress,
Real  intnl,
std::vector< Real > &  f 
) const
virtualinherited

Calculates the yield functions.

Note that for single-surface plasticity you don't want to override this - override the private yieldFunction below

Parameters
stressthe stress at which to calculate the yield function
intnlinternal parameter
[out]fthe yield functions

Reimplemented in SolidMechanicsPlasticMohrCoulombMulti, and SolidMechanicsPlasticTensileMulti.

Definition at line 67 of file SolidMechanicsPlasticModel.C.

Referenced by SolidMechanicsPlasticModel::returnMap().

70 {
71  f.assign(1, yieldFunction(stress, intnl));
72 }
virtual Real yieldFunction(const RankTwoTensor &stress, Real intnl) const
The following functions are what you should override when building single-plasticity models...
Real f(Real x)
Test function for Brents method.

◆ yieldStrength()

Real SolidMechanicsPlasticJ2::yieldStrength ( Real  intnl) const
protectedvirtualinherited

YieldStrength.

The yield function is sqrt(3*J2) - yieldStrength. In this class yieldStrength = 1, but this may be over-ridden by derived classes with nontrivial hardning

Definition at line 106 of file SolidMechanicsPlasticJ2.C.

Referenced by SolidMechanicsPlasticJ2::returnMap(), SolidMechanicsPlasticOrthotropic::yieldFunction(), SolidMechanicsPlasticJ2::yieldFunction(), and yieldFunction().

107 {
108  return _strength.value(intnl);
109 }
const SolidMechanicsHardeningModel & _strength
yield strength, from user input
virtual Real value(Real intnl) const

Member Data Documentation

◆ _a

Real SolidMechanicsPlasticIsotropicSD::_a
protected

A constant used in the constructor that depends on _b and _c.

Definition at line 47 of file SolidMechanicsPlasticIsotropicSD.h.

Referenced by dflowPotential_dstress(), dyieldFunction_dstress(), SolidMechanicsPlasticIsotropicSD(), and yieldFunction().

◆ _associative

const bool SolidMechanicsPlasticIsotropicSD::_associative
protected

◆ _b

const Real SolidMechanicsPlasticIsotropicSD::_b
protected

◆ _c

Real SolidMechanicsPlasticIsotropicSD::_c
protected

◆ _f_tol

const Real SolidMechanicsPlasticModel::_f_tol
inherited

◆ _h

RankFourTensor SolidMechanicsPlasticIsotropicSD::_h
protected

Comes from transforming the stress tensor to the deviatoric stress tensor.

Definition at line 44 of file SolidMechanicsPlasticIsotropicSD.h.

Referenced by dflowPotential_dstress(), dyieldFunction_dstress(), and SolidMechanicsPlasticIsotropicSD().

◆ _ic_tol

const Real SolidMechanicsPlasticModel::_ic_tol
inherited

Tolerance on internal constraint.

Definition at line 173 of file SolidMechanicsPlasticModel.h.


The documentation for this class was generated from the following files: