| Section 2.1 | Performance improvements for batch preprocessing and initialization |
| Section 5.5 | Adaptive mesh refinement for an Eulerian mesh |
| Section 5.6 | Smoothed particle hydrodynamics improvements |
| Section 6.5 | Enhancements to Mullins effect in Abaqus/Explicit |
| Section 6.6 | Viscoelasticity for cohesive elements with traction-separation behavior in Abaqus/Explicit |
| Section 6.7 | Rayleigh damping enhancement in Abaqus/Explicit |
| Section 6.9 | Ductile damage initiation criterion enhancements in Abaqus/Explicit |
| Section 7.4 | Defining the anisotropic mass tensor |
| Section 8.6 | Fluid cavity pressure predefined fields and boundary conditions in Abaqus/CAE |
| Section 9.1 | Enhancements to tie constraint deletion due to element erosion |
| Section 9.2 | Improved performance for connector elements |
| Section 10.4 | Enhancements to general contact definitions in Abaqus/CAE |
| Section 10.5 | Surface smoothing enhancements |
| Section 10.6 | Eulerian-Lagrangian thermal contact |
| Section 13.4 | Translating LS-DYNA input files to partial Abaqus input files |
| Section 14.7 | Nodal field output for tie constraints |
| Section 14.8 | Maximum damage initiation output for shells |
| Section 14.9 | Air blast pressure load output |
| Section 15.2 | User subroutine to define damage behavior with Mullins effect in Abaqus/Explicit |
| Section 16.1 | Expanded object coverage for definition of custom kernel data |
| Section 16.2 | Descriptive header in the journal file |