This option is used to specify either isotropic linear elastic shear or linear viscous shear behavior for a hydrodynamic material. It must be used in conjunction with the *EOS option.
Product: Abaqus/Explicit
Type: Model data
Level: Model
“Equation of state,” Section 21.2.1 of the Abaqus Analysis User's Manual
“VUVISCOSITY,” Section 1.2.18 of the Abaqus User Subroutines Reference Manual
Set this parameter equal to the number of field variable dependencies included in the definition of the shear modulus or viscosity, in addition to temperature. If this parameter is omitted, it is assumed that the shear modulus or viscosity depends only on temperature. See “Using the DEPENDENCIES parameter to define field variable dependence” in “Material data definition,” Section 17.1.2 of the Abaqus Analysis User's Manual, for more information.
Set TYPE=ELASTIC (default) to define isotropic linear elastic shear behavior.
Set TYPE=VISCOUS to define viscous shear behavior.
This parameter can be used only in combination with TYPE=VISCOUS.
Set DEFINITION=CARREAU-YASUDA to define the Carreau-Yasuda viscous shear behavior.
Set DEFINITION=CROSS to define the Cross viscous shear behavior.
Set DEFINITION=ELLIS-METER to define the Ellis-Meter viscous shear behavior.
Set DEFINITION=HERSCHEL-BULKEY to define the Herschel-Bulkey viscous shear behavior.
Set DEFINITION=NEWTONIAN (default) to define Newtonian (linear) viscous shear behavior.
Set DEFINITION=POWELL-EYRING to define the Powell-Eyring viscous shear behavior.
Set DEFINITION=POWER LAW to define the power law viscous shear behavior.
Set DEFINITION=TABULAR to define the non-Newtonian viscous shear behavior in tabular form.
Set DEFINITION=USER to define the viscous shear behavior in user subroutine VUVISCOSITY.
This parameter can be used only if DEFINITION=USER is specified.
Set this parameter equal to the number of property values needed as data in user subroutine VUVISCOSITY. The default value is 0.
First line:
Shear modulus, G. (Units of FL2.)
Temperature.
First field variable.
Second field variable.
Etc., up to six field variables.
Subsequent lines (only needed if the DEPENDENCIES parameter has a value greater than six):
Seventh field variable.
Etc., up to eight field variables per line.
Repeat this set of data lines as often as necessary to define the elastic shear modulus as a function of temperature and other predefined field variables.
First line:
Subsequent lines (only needed if the DEPENDENCIES parameter has a value greater than two):
Third field variable.
Etc., up to eight field variables per line.
Repeat this set of data lines as often as necessary to define the coefficients of the Carreau-Yasuda viscosity model as a function of temperature and other predefined field variables.
First line:
Subsequent lines (only needed if the DEPENDENCIES parameter has a value greater than three):
Fourth field variable.
Etc., up to eight field variables per line.
Repeat this set of data lines as often as necessary to define the coefficients of the Cross viscosity model as a function of temperature and other predefined field variables.
First line:
Shear viscosity at low shear rates (Newtonian limit), . (Units of FL2T.)
Shear viscosity at large shear rates, . (Units of FL2T.)
Effective shear stress, , at which the viscosity is 50% between the Newtonian limit,
, and the infinite shear viscosity,
. (Units of FL2.)
Flow behavior index, .
Temperature.
First field variable.
Second field variable.
Third field variable.
Subsequent lines (only needed if the DEPENDENCIES parameter has a value greater than three):
Fourth field variable.
Etc., up to eight field variables per line.
Repeat this set of data lines as often as necessary to define the coefficients of the Ellis-Meter viscosity model as a function of temperature and other predefined field variables.
First line:
Subsequent lines (only needed if the DEPENDENCIES parameter has a value greater than three):
Fourth field variable.
Etc., up to eight field variables per line.
Repeat this set of data lines as often as necessary to define the coefficients of the Herschel-Bulkey viscosity model as a function of temperature and other predefined field variables.
First line:
Viscosity. (Units of FL2T.)
Temperature.
First field variable.
Second field variable.
Etc., up to six field variables.
Subsequent lines (only needed if the DEPENDENCIES parameter has a value greater than six):
Seventh field variable.
Etc., up to eight field variables per line.
Repeat this set of data lines as often as necessary to define the viscosity as a function of temperature and other predefined field variables.
First line:
Subsequent lines (only needed if the DEPENDENCIES parameter has a value greater than four):
Fifth field variable.
Etc., up to eight field variables per line.
Repeat this set of data lines as often as necessary to define the coefficients of the Powell-Eyring viscosity model as a function of temperature and other predefined field variables.
First line:
Subsequent lines (only needed if the DEPENDENCIES parameter has a value greater than three):
Fourth field variable.
Etc., up to eight field variables per line.
Repeat this set of data lines as often as necessary to define the coefficients of the power law viscosity model as a function of temperature and other predefined field variables.
First line:
Subsequent lines (only needed if the DEPENDENCIES parameter has a value greater than six):
Seventh field variable.
Etc., up to eight field variables per line.
Repeat this set of data lines as often as necessary to define the viscosity as a function of effective shear strain rate, temperature, and other predefined field variables.
No data lines are needed if the PROPERTIES parameter is omitted or set to 0. Otherwise, first line:
Give the material properties, eight per line.
Repeat this data line as often as necessary to define the material properties.