ABAQUS/Explicit

Section  1.3.15

Composite shell sections

Section  1.3.17

Thermal stress in a cylindrical shell

Section  1.3.23

Beam added inertia

Section  1.3.24

Beam fluid inertia

Section  1.3.25

Beam with end moment

Section  1.3.26

Flexure of a deep beam

Section  1.3.27

Simple tests of beam kinematics

Section  1.3.28

Tensile test

Section  1.3.29

Simple shear

Section  1.3.41

Temperature-dependent film condition

Section  1.3.45

Cohesive elements

Section  1.4.5

Cohesive element load verification

Section  1.4.9

Coupled temperature-displacement elements

Section  1.4.15

ABAQUS/Explicit element loading verification

Section  1.4.16

Incident wave loading

Section  1.4.17

Distributed traction and edge loads

Section  1.5.1

Membrane patch test

Section  1.5.2

Patch test for three-dimensional solid elements

Section  1.5.4

Patch test for axisymmetric elements

Section  1.5.8

Patch test for heat transfer elements

Section  1.5.10

Patch test for acoustic elements

Section  1.6.2

Small-sliding contact between coupled temperature-displacement surfaces

Section  1.6.7

Finite-sliding contact between coupled temperature-displacement elements

Section  1.6.9

Rolling of steel plate

Section  1.6.10

Beam impact on cylinder

Section  1.6.15

Contact with initial overclosure of curved surfaces

Section  1.6.16

Small-sliding contact with specified clearance or overclosure values

Section  1.6.18

Self-contact of finite-sliding deformable surfaces

Section  1.6.22

Contact searching for analytical rigid surfaces

Section  1.6.23

Multiple surface contact with penalty method

Section  1.7.1

Thermal surface interaction

Section  1.7.5

Friction models in ABAQUS/Explicit

Section  1.8.1

Rigid body mass properties

Section  1.8.2

Tie and pin node sets

Section  1.8.3

Rigid body as an MPC

Section  1.8.4

Rigid body constraint

Section  1.8.5

Including deformable element types in a rigid body

Section  1.9.1

Damped free vibration with initial conditions

Section  1.9.2

Sinusoidal excitation of a damped spring-mass system

Section  1.9.3

Multiple instances of connector elements

Section  1.9.4

Individual connector option tests

Section  1.11.2

Rebar in ABAQUS/Explicit

Section  1.11.7

Rigid bodies with temperature DOFs, heat capacitance, and nodal-based thermal loads

Section  1.11.8

Analysis of unbounded acoustic regions

Section  1.11.9

Nonstructural mass verification

Section  2.2.3

Mullins effect

Section  2.2.5

Temperature-dependent elastic materials

Section  2.2.6

Field-variable-dependent elastic materials

Section  2.2.7

Large-strain viscoelasticity with hyperelasticity

Section  2.2.11

Rate-dependent plasticity in ABAQUS/Explicit

Section  2.2.12

Annealing temperature

Section  2.2.13

Temperature-dependent inelastic materials

Section  2.2.14

Field-variable-dependent inelastic materials

Section  2.2.15

Johnson-Cook plasticity

Section  2.2.16

Porous metal plasticity

Section  2.2.17

Drucker-Prager plasticity

Section  2.2.18

Drucker-Prager/Cap plasticity model

Section  2.2.19

Equation of state material

Section  2.2.20

Progressive damage and failure

Section  2.2.23

Concrete damaged plasticity

Section  2.2.25

Brittle cracking constitutive model

Section  2.2.26

Cracking model: tension shear test

Section  2.2.29

Material damping in ABAQUS/Explicit

Section  2.2.30

Mass proportional damping in ABAQUS/Explicit

Section  2.2.31

Thermal expansion test

Section  2.3.1

Thermal properties

Section  3.2.5

Single degree of freedom spring-mass systems

Section  3.2.6

Linear kinematics element tests

Section  3.2.7

Mass scaling

Section  3.6.2

Two-dimensional continuum stress/displacement submodeling

Section  3.6.3

Three-dimensional continuum stress/displacement submodeling

Section  3.6.5

Axisymmetric continuum stress/displacement submodeling

Section  3.6.7

Membrane submodeling

Section  3.6.8

Shell submodeling

Section  3.6.10

Heat transfer submodeling

Section  3.6.11

Coupled temperature-displacement submodeling

Section  3.6.14

Acoustic submodeling

Section  3.6.15

Shell-to-solid submodeling

Section  3.6.16

Miscellaneous submodeling tests

Section  3.7.1

Volumetric drag

Section  3.7.2

Impedance boundary conditions

Section  3.7.3

Transient acoustic wave propagation

Section  3.12.1

Transferring results between ABAQUS/Explicit and ABAQUS/Standard

Section  3.12.3

Transferring results with *BEAM GENERAL SECTION

Section  3.12.4

Transferring results with *SHELL GENERAL SECTION

Section  3.12.5

Adding and removing elements during results transfer

Section  3.12.6

Transferring rigid elements

Section  3.12.7

Transferring hourglass forces

Section  3.12.8

Changing the material definition during import

Section  3.12.9

Transferring results with plasticity

Section  3.12.10

Transferring results with hyperelasticity

Section  3.12.11

Transferring results for a hyperelastic sheet with a circular hole

Section  3.12.12

Transferring results with hyperfoam

Section  3.12.13

Transferring results with orientation

Section  3.12.14

Miscellaneous results transfer tests

Section  3.15.3

Using generated cross-section properties in a beam analysis

Section  4.1.24

VDLOAD: nonuniform loads

Section  4.1.25

VFRIC

Section  4.1.26

VUINTER

Section  4.1.27

VUMAT: rotating cylinder

Section  5.1.2

*AMPLITUDE

Section  5.1.6

*COUPLING

Section  5.1.7

*DISPLAY BODY

Section  5.1.8

*EMBEDDED ELEMENT

Section  5.1.9

*IMPERFECTION and *PARAMETER SHAPE VARIATION

Section  5.1.11

*SURFACE, TYPE=CUTTING SURFACE

Section  5.1.14

Mesh-independent spot welds

Section  5.1.15

*MPC

Section  5.1.20

*SHELL TO SOLID COUPLING

Section  5.1.22

Surface-based fluid cavities

Section  5.1.23

*SURFACE BEHAVIOR

Section  5.1.24

*TEMPERATURE, *FIELD, and *PRESSURE STRESS

Section  5.1.25

*TIE

Section  5.2.3

Integrated output variables