Abaqus/Explicit

Section  3.4

Double precision constraint solving within a single precision Abaqus/Explicit execution

Section  3.5

Enhanced support for translation of Nastran bulk data files

Section  3.6

Dynamic load balancing for domain-level parallel execution

Section  4.15

Enhancements to distributions of orientations

Section  4.16

Expanded use of distributions for shell sections

Section  5.2

Model import from ANSYS input files

Section  6.3

Abaqus/CFD to Abaqus/Standard or to Abaqus/Explicit co-simulation

Section  6.8

Enhancements in Abaqus/Standard to Abaqus/Explicit co-simulation

Section  6.18

Submodeling based on the driven nodes only found lying within the global model

Section  7.1

Mohr-Coulomb plasticity in Abaqus/Explicit

Section  7.2

Critical state (clay) plasticity model in Abaqus/Explicit

Section  7.3

Cast iron plasticity in Abaqus/Explicit

Section  7.4

Viscoelasticity with anisotropic elasticity in Abaqus/Explicit

Section  7.5

Transferring results with concrete damaged plasticity

Section  7.6

Finite-strain viscoelasticity

Section  7.7

Finite-strain viscoelasticity with Mullins effect

Section  7.10

Low-density foam materials in Abaqus/CAE

Section  7.11

Combining equations of state with pressure-dependent shear plasticity in Abaqus/Explicit

Section  7.13

Enhancements to Johnson-Cook strain rate dependence

Section  7.14

Tension cutoff

Section  7.15

Ignition and growth equation of state

Section  8.3

Linear pipe elements in Abaqus/Explicit

Section  9.1

Eulerian mesh motion in Abaqus/Explicit

Section  9.3

Reading nodal output for temperature, normalized concentration, and electric potential from an output database into predefined field variables

Section  9.4

CONWEP blast loading in Abaqus/Explicit

Section  11.9

VCCT in Abaqus/Explicit

Section  11.14

Beam contact thickness in Abaqus/Explicit

Section  13.8

Combining data from multiple output databases

Section  13.11

New output variables for connectors

Section  13.12

Field output for connectors

Section  13.13

Improvements to filtered field output

Section  14.2

Define fluid exchange via user subroutines VUFLUIDEXCHEFFAREA and VUFLUIDEXCH

Section  14.3

Utility routines to obtain principal stress/strain values and directions in Abaqus/Explicit

Section  14.4

Utility routines to obtain parallel processes information