This section summarizes the changes and the additions that have been made to output variable identifiers used in ABAQUS.
Variable Type (e.g., Element integration point variables): | ||
new | (S) | CTSHR |
Transverse shear stress components for stacked continuum shell elements. Available only for SC6R and SC8R elements. | ||
new | (S) | CTSHRi3 |
-component of transverse shear stress (). Available only for SC6R and SC8R elements. | ||
new | (E) | ERPRATIO |
Ratio of principal strain rates, , used for the MSFLD damage initiation criterion. | ||
new | (E) | JCCRT |
Johnson-Cook damage initiation criterion. | ||
new | (E) | MSFLDCRT |
Müschenborn-Sonne forming limit diagram MSFLD damage initiation criterion. | ||
new | (E) | SHRRATIO |
Shear stress ratio, , used for the shear damage initiation criterion. | ||
new | (E) | TRIAX |
Stress triaxiality, . | ||
Whole element variables: | ||
new | (S) | ALEAKVRB |
Accumulated leak-off volume at the bottom of the element. | ||
new | (S) | ALEAKVRT |
Accumulated leak-off volume at the top of the element. | ||
new | (S)(E) | CEAVG |
Element average creep strain. | ||
new | (S)(E) | CEERI |
Element creep strain error indicator. | ||
new | (S)(E) | CFAILST |
Status of connector failure. | ||
new | (S)(E) | CFAILSTi |
Status of connector failure in the i-direction (). | ||
new | (S) | DAMAGEFC |
Fiber compressive damage variable. | ||
new | (S) | DAMAGEFT |
Fiber tensile damage variable. | ||
new | (S) | DAMAGEMC |
Matrix compressive damage variable. | ||
new | (S) | DAMAGEMT |
Matrix tensile damage variable. | ||
new | (S) | DAMAGESHR |
Shear damage variable. | ||
new | (S) | EFLAVG |
Element average electric flux. | ||
new | (S) | EFLERI |
Element electric flux error indicator. | ||
new | (S) | ENDEN |
Element energy density, including plastic dissipation and creep dissipation if present. | ||
new | (S) | ENDENERI |
Element energy density error indicator, including plastic dissipation error and creep dissipation error if present. | ||
new | (S) | EPGAVG |
Element average electric potential gradient. | ||
new | (S) | EPGERI |
Element electric potential gradient error indicator. | ||
new | (E) | ER |
All logarithmic strain rate components. | ||
new | (E) | ERij |
-component of logarithmic strain rate (). | ||
new | (E) | ERP |
All principal logarithmic strain rate components. | ||
new | (E) | ERPn |
Minimum, intermediate, and maximum principal strain rate components (ERP1 ERP2 ERP3). | ||
new | (S) | GFVR |
Gap flow volume rate. | ||
new | (S) | HFLAVG |
Element average heat flux. | ||
new | (S) | HFLERI |
Element heat flux error indicator. | ||
new | (S) | HSNFCCRT |
Hashin's fiber compressive damage initiation criterion. | ||
new | (S) | HSNFTCRT |
Hashin's fiber tensile damage initiation criterion. | ||
new | (S) | HSNMCCRT |
Hashin's matrix compressive damage initiation criterion. | ||
new | (S) | HSNMTCRT |
Hashin's matrix tensile damage initiation criterion. | ||
new | (S) | LEAKVRB |
Leak-off flow rate at the bottom of the element. | ||
new | (S) | LEAKVRT |
Leak-off flow rate at the top of the element. | ||
new | (S) | MISESAVG |
Element average Mises equivalent stress. | ||
new | (S) | MISESERI |
Element Mises equivalent stress error indicator. | ||
new | (S)(E) | MISESMAX |
Maximum Mises stress among all of the section points. For a shell element it represents the maximum Mises value among all the section points in the layer, for a beam element it is the maximum Mises stress among all the section points in the cross-section, and for a solid element it represents the Mises stress at the integration points. | ||
new | (S) | PEAVG |
Element average plastic strain. | ||
new | (S) | PEEQAVG |
Element average equivalent plastic strain. | ||
new | (S) | PEEQERI |
Element equivalent plastic strain error indicator. | ||
new | (S)(E) | PEEQMAX |
Maximum equivalent plastic strain, PEEQ, among all of the section points. For a shell element it represents the maximum PEEQ value among all the section points in the layer, for a beam element it is the maximum PEEQ among all the section points in the cross-section, and for a solid element it represents the PEEQ at the integration points. | ||
new | (S) | PEERI |
Element plastic strain error indicator. | ||
new | (S) | PFOPEN |
Pore pressure fracture opening. | ||
new | (S) | PHCIVC |
Magnitude and phase of connector instantaneous velocity in the slip direction. Available only if friction is defined in the slip direction. | ||
mod | (S) | PHCIVSL |
This output variable has been renamed to PHCIVC; PHCIVSL is supported in Version 6.6 but will be removed in a subsequent release. | ||
new | (S) | PHCNFC |
Magnitude and phase of connector friction-generating contact force in the instantaneous slip direction. Available only if friction is defined in the slip direction. | ||
mod | (S) | PHCNFSL |
This output variable has been renamed to PHCNFC; PHCNFSL is supported in Version 6.6 but will be removed in a subsequent release. | ||
new | (S) | PHCSFC |
Magnitude and phase of connector friction force in the direction of the instantaneous slip direction. Available only if friction is defined in the slip direction. | ||
mod | (S) | PHCSFSL |
This output variable has been renamed to PHCSFC; PHCSFSL is supported in Version 6.6 but will be removed in a subsequent release. | ||
new | (S) | RCNFC |
RMS values of connector friction-generating contact force components in the instantaneous slip direction. Available only if friction is defined in the slip direction. | ||
mod | (S) | RCNFSL |
This output variable has been renamed to RCNFC; RCNFSL is supported in Version 6.6 but will be removed in a subsequent release. | ||
new | (S) | RCSFC |
RMS value of connector friction force in the direction of the instantaneous slip direction. Available only if friction is defined in the slip direction. | ||
mod | (S) | RCSFSL |
This output variable has been renamed to RCSFC; RCSFSL is supported in Version 6.6 but will be removed in a subsequent release. | ||
Nodal variables: | ||
new | (E) | CEFL |
Heat energy flow rate out of a fluid cavity. | ||
new | (E) | CEFLT |
Accumulated heat energy flow out of a fluid cavity. |