- blockThe list of block ids (SubdomainID) that this object will be applied
C++ Type:std::vector
Description:The list of block ids (SubdomainID) that this object will be applied
- flow_rate_prop_nameName of flow rate property: Same as the flow rate user object name specified in input file
C++ Type:std::string
Description:Name of flow rate property: Same as the flow rate user object name specified in input file
- h_scaling1Scaling parameter
Default:1
C++ Type:double
Description:Scaling parameter
HEVPEqvPlasticStrainRate

The HEVPEqvPlasticStrainRate has not been documented. The content listed below should be used as a starting point for documenting the class, which includes the typical automatic documentation associated with a MooseObject; however, what is contained is ultimately determined by what is necessary to make the documentation clear for users.
# HEVPEqvPlasticStrainRate
!syntax description /UserObjects/HEVPEqvPlasticStrainRate
## Overview
!! Replace these lines with information regarding the HEVPEqvPlasticStrainRate object.
## Example Input File Syntax
!! Describe and include an example of how to use the HEVPEqvPlasticStrainRate object.
!syntax parameters /UserObjects/HEVPEqvPlasticStrainRate
!syntax inputs /UserObjects/HEVPEqvPlasticStrainRate
!syntax children /UserObjects/HEVPEqvPlasticStrainRate
User Object computing equivalent plastic strain rate
Input Parameters
- allow_duplicate_execution_on_initialFalseIn the case where this UserObject is depended upon by an initial condition, allow it to be executed twice during the initial setup (once before the IC and again after mesh adaptivity (if applicable).
Default:False
C++ Type:bool
Description:In the case where this UserObject is depended upon by an initial condition, allow it to be executed twice during the initial setup (once before the IC and again after mesh adaptivity (if applicable).
- control_tagsAdds user-defined labels for accessing object parameters via control logic.
C++ Type:std::vector
Description:Adds user-defined labels for accessing object parameters via control logic.
- enableTrueSet the enabled status of the MooseObject.
Default:True
C++ Type:bool
Description:Set the enabled status of the MooseObject.
- implicitTrueDetermines whether this object is calculated using an implicit or explicit form
Default:True
C++ Type:bool
Description:Determines whether this object is calculated using an implicit or explicit form
- seed0The seed for the master random number generator
Default:0
C++ Type:unsigned int
Description:The seed for the master random number generator
- use_displaced_meshFalseWhether or not this object should use the displaced mesh for computation. Note that in the case this is true but no displacements are provided in the Mesh block the undisplaced mesh will still be used.
Default:False
C++ Type:bool
Description:Whether or not this object should use the displaced mesh for computation. Note that in the case this is true but no displacements are provided in the Mesh block the undisplaced mesh will still be used.
Advanced Parameters
Input Files
- modules/tensor_mechanics/test/tests/hyperelastic_viscoplastic/one_elem_multi.i
- modules/combined/test/tests/phase_field_fracture_viscoplastic/crack2d.i
- modules/tensor_mechanics/test/tests/hyperelastic_viscoplastic/one_elem_base.i
- modules/tensor_mechanics/test/tests/hyperelastic_viscoplastic/one_elem.i
- modules/tensor_mechanics/test/tests/hyperelastic_viscoplastic/one_elem_linear_harden.i