-
DEFINITION
-
Set
DEFINITION=SECANT
(default) to use secant (total) thermal expansion coefficients.
Set
DEFINITION=TANGENT
to use tangent (differential) thermal expansion coefficients. This parameter value is
available only in Abaqus/Standard.
DEFINITION=TANGENT
cannot be used if you include the
FIELD,
LIQUID, or
PORE FLUID parameter; and it cannot
be used with
TYPE=SHORT FIBER.
-
DEPENDENCIES
-
This parameter applies only to Abaqus/Standard and Abaqus/Explicit analyses.
Set this parameter equal to the number of field variables, in addition to
temperature, on which the coefficients depend. If this parameter is omitted, it is
assumed that the thermal expansion is constant or depends only on temperature.
This parameter is not relevant if the
USER parameter is included or if in
an Abaqus/Standard analysis spatially varying thermal expansion is defined using a distribution (see
Distribution Definition).
-
FIELD
-
This parameter applies only to Abaqus/Standard analyses.
Set this parameter equal to the predefined field variable number for which field
expansion is being defined.
-
LIQUID
- This parameter applies only to Abaqus/Standard analyses.
Include this parameter if the thermal expansion of the liquid is being
defined for the TNM model.
-
PORE FLUID
-
Include this parameter if the thermal or field expansion of the pore fluid in a
porous medium is being defined. The secant thermal expansion coefficients must be
specified and thermal or field expansion of a fluid must be isotropic; therefore, you
cannot use
TYPE=ORTHO
and
TYPE=ANISO
if this parameter is included.
-
PROPERTIES
-
This parameter applies only to Abaqus/Explicit analyses.
Set this parameter equal to the number of properties being entered.
The properties are available for use in user subroutine VUEXPAN. The default is
PROPERTIES=0.
-
TYPE
-
Set
TYPE=ISO
(default) to define isotropic expansion.
Set
TYPE=ORTHO
to define orthotropic expansion.
Set
TYPE=ANISO
to define fully anisotropic expansion.
Set
TYPE=SHORT FIBER
to define laminate material properties for each layer in each shell element. This
parameter setting is applicable only when using Abaqus/Standard in conjunction with the abaqus moldflow execution
procedure. Any data lines will be ignored. Material properties will be read from the
ASCII neutral file identified as
jobid.shf. See Translating Moldflow Data to Abaqus Input Files for more
information.
Set
TYPE=TRANSVERSELY ISOTROPIC
to define transversely isotropic expansion.
In an Abaqus/Standard analysis spatially varying isotropic, orthotropic, or anisotropic expansion can be
defined using a distribution. When using a distribution, the
TYPE parameter must be used to
indicate the level of anisotropy of thermal expansion. The level of anisotropy must be
consistent with that defined in the distribution. See Distribution Definition.
-
USER
-
In Abaqus/Standard, include this parameter to indicate that user subroutine UEXPAN will be used to define
increments of either the thermal strain or the field expansion strain (if the
FIELD parameter is also used) or
potentially increments of both the thermal and the field expansion strains.
In Abaqus/Explicit, include this parameter to indicate that user subroutine VUEXPAN will be used to define
increments of thermal strain.
The TYPE parameter should be used
to indicate the level of anisotropy of the thermal or the field expansion.
TYPE=TRANSVERSELY ISOTROPIC
cannot be used if the USER parameter
is included.
The DEFINITION,
DEPENDENCIES and
ZERO parameters are not relevant if
this parameter is used.
-
ZERO
-
If the thermal or field expansion is temperature- or field-variable dependent, set
this parameter equal to the value of
(or
for field expansion driven by field variable number
n).
This parameter is not relevant if the
USER parameter or the
LIQUID parameter is included, or if
the
DEFINITION=TANGENT
is used.