Abaqus/Standard

Section  2.1

Performance improvements for batch preprocessing and initialization

Section  3.1

Modeling enhancements for electromagnetic analyses

Section  4.3

Time-harmonic electromagnetic analysis in Abaqus/CAE

Section  4.4

Coupled thermal-electrical-structural analysis in Abaqus/CAE

Section  4.5

Magnetostatic analysis in Abaqus/Standard

Section  4.6

Transient eddy current analysis in Abaqus/Standard

Section  5.1

Substructure generation using the AMS eigensolver

Section  5.2

Matrix functionality enhancements

Section  5.3

Enhancements to the XFEM-based crack propagation capability

Section  5.4

Enhancements to the Virtual Crack Closure Technique (VCCT)

Section  6.2

Material models for electromagnetic problems in Abaqus/CAE

Section  6.8

Parallel network viscoelastic model

Section  6.10

Enhancements to creep models

Section  6.11

Nonlinear magnetic behavior

Section  7.1

Support for electromagnetic elements in Abaqus/CAE

Section  7.2

Unsymmetric storage for linear coupled stiffness and viscous damping for connections in Abaqus/Standard

Section  7.3

Thick-walled pipe elements in Abaqus/Standard

Section  7.4

Defining the anisotropic mass tensor

Section  8.1

Prescribing loads and boundary conditions in an electromagnetic analysis in Abaqus/CAE

Section  8.5

Impedance conditions in modal steady-state dynamic analysis

Section  8.6

Fluid cavity pressure predefined fields and boundary conditions in Abaqus/CAE

Section  8.7

New rotordynamic load

Section  8.11

Base motion boundary conditions and PSD amplitudes in Abaqus/CAE

Section  10.2

Feature edge contact enhancements for general contact in Abaqus/Standard

Section  10.3

Improved robustness of small-sliding, surface-to-surface contact involving gaskets

Section  10.4

Enhancements to general contact definitions in Abaqus/CAE

Section  10.5

Surface smoothing enhancements

Section  10.7

Gap electrical conductance in Abaqus/CAE

Section  13.1

Parallel execution of the element operations

Section  13.2

Parallel execution in the analysis input file processor

Section  13.3

Multiple GPGPUs supported in the direct sparse solver

Section  15.1

Enhancements to user subroutines UAMP and VUAMP

Section  15.4

Enhancements for defining nonuniform magnetic vector potential and nonuniform current density

Section  16.1

Expanded object coverage for definition of custom kernel data

Section  16.2

Descriptive header in the journal file