| Section 1.1.1 | Axisymmetric analysis of bolted pipe flange connections |
| Section 1.1.2 | Elastic-plastic collapse of a thin-walled elbow under in-plane bending and internal pressure |
| Section 1.1.3 | Parametric study of a linear elastic pipeline under in-plane bending |
| Section 1.1.4 | Indentation of an elastomeric foam specimen with a hemispherical punch |
| Section 1.1.5 | Collapse of a concrete slab |
| Section 1.1.6 | Jointed rock slope stability |
| Section 1.1.7 | Notched beam under cyclic loading |
| Section 1.1.8 | Uniaxial ratchetting under tension and compression |
| Section 1.1.9 | Hydrostatic fluid elements: modeling an airspring |
| Section 1.1.10 | Shell-to-solid submodeling and shell-to-solid coupling of a pipe joint |
| Section 1.1.11 | Stress-free element reactivation |
| Section 1.1.12 | Transient loading of a viscoelastic bushing |
| Section 1.1.14 | Damage and failure of a laminated composite plate |
| Section 1.1.15 | Analysis of an automotive boot seal |
| Section 1.1.16 | Pressure penetration analysis of an air duct kiss seal |
| Section 1.1.17 | Self-contact in rubber/foam components: jounce bumper |
| Section 1.1.18 | Self-contact in rubber/foam components: rubber gasket |
| Section 1.1.19 | Submodeling of a stacked sheet metal assembly |
| Section 1.1.20 | Axisymmetric analysis of a threaded connection |
| Section 1.1.21 | Direct cyclic analysis of a cylinder head under cyclic thermomechanical loadings |
| Section 1.1.22 | Erosion of material (sand production) in an oil wellbore |
| Section 1.1.23 | Submodel stress analysis of pressure vessel closure hardware |
| Section 1.1.24 | Using a composite layup to model a yacht hull |
| Section 1.1.25 | Energy computations in a contact analysis |
| Section 1.2.1 | Snap-through buckling analysis of circular arches |
| Section 1.2.2 | Laminated composite shells: buckling of a cylindrical panel with a circular hole |
| Section 1.2.3 | Buckling of a column with spot welds |
| Section 1.2.4 | Elastic-plastic K-frame structure |
| Section 1.2.5 | Unstable static problem: reinforced plate under compressive loads |
| Section 1.2.6 | Buckling of an imperfection-sensitive cylindrical shell |
| Section 1.3.1 | Upsetting of a cylindrical billet: quasi-static analysis with mesh-to-mesh solution mapping (Abaqus/Standard) and adaptive meshing (Abaqus/Explicit) |
| Section 1.3.2 | Superplastic forming of a rectangular box |
| Section 1.3.3 | Stretching of a thin sheet with a hemispherical punch |
| Section 1.3.4 | Deep drawing of a cylindrical cup |
| Section 1.3.5 | Extrusion of a cylindrical metal bar with frictional heat generation |
| Section 1.3.7 | Axisymmetric forming of a circular cup |
| Section 1.3.16 | Upsetting of a cylindrical billet: coupled temperature-displacement and adiabatic analysis |
| Section 1.3.17 | Unstable static problem: thermal forming of a metal sheet |
| Section 1.3.18 | Inertia welding simulation using Abaqus/Standard and Abaqus/CAE |
| Section 1.3.19 | Moldflow translation examples |
| Section 1.4.1 | A plate with a part-through crack: elastic line spring modeling |
| Section 1.4.2 | Contour integrals for a conical crack in a linear elastic infinite half space |
| Section 1.4.3 | Elastic-plastic line spring modeling of a finite length cylinder with a part-through axial flaw |
| Section 1.4.4 | Crack growth in a three-point bend specimen |
| Section 1.4.5 | Analysis of skin-stiffener debonding under tension |
| Section 1.4.6 | Failure of blunt notched fiber metal laminates |
| Section 1.4.7 | Debonding behavior of a double cantilever beam |
| Section 1.4.8 | Debonding behavior of a single leg bending specimen |
| Section 1.4.9 | Postbuckling and growth of delaminations in composite panels |
| Section 1.5.1 | Springback of two-dimensional draw bending |
| Section 1.5.2 | Deep drawing of a square box |
| Section 2.1.1 | Nonlinear dynamic analysis of a structure with local inelastic collapse |
| Section 2.1.2 | Detroit Edison pipe whip experiment |
| Section 2.1.6 | Pressurized fuel tank with variable shell thickness |
| Section 2.1.7 | Modeling of an automobile suspension |
| Section 2.1.15 | Seismic analysis of a concrete gravity dam |
| Section 2.1.17 | Impact analysis of a pawl-ratchet device |
| Section 2.2.1 | Analysis of a rotating fan using substructures and cyclic symmetry |
| Section 2.2.2 | Linear analysis of the Indian Point reactor feedwater line |
| Section 2.2.3 | Response spectra of a three-dimensional frame building |
| Section 2.2.4 | Brake squeal analysis |
| Section 2.2.5 | Dynamic analysis of antenna structure utilizing residual modes |
| Section 2.2.6 | Steady-state dynamic analysis of a vehicle body-in-white model |
| Section 2.4.1 | Dynamic impact of a scooter with a bump |
| Section 3.1.1 | Symmetric results transfer for a static tire analysis |
| Section 3.1.2 | Steady-state rolling analysis of a tire |
| Section 3.1.3 | Subspace-based steady-state dynamic tire analysis |
| Section 3.1.4 | Steady-state dynamic analysis of a tire substructure |
| Section 3.1.5 | Coupled acoustic-structural analysis of a tire filled with air |
| Section 3.1.7 | Analysis of a solid disc with Mullins effect and permanent set |
| Section 3.1.8 | Tread wear simulation using adaptive meshing in Abaqus/Standard |
| Section 3.1.9 | Dynamic analysis of an air-filled tire with rolling transport effects |
| Section 3.1.10 | Acoustics in a circular duct with flow |
| Section 3.2.1 | Inertia relief in a pick-up truck |
| Section 3.2.2 | Substructure analysis of a pick-up truck model |
| Section 3.2.3 | Display body analysis of a pick-up truck model |
| Section 4.1.1 | Resolving overconstraints in a multi-body mechanism model |
| Section 4.1.2 | Crank mechanism |
| Section 4.1.3 | Snubber-arm mechanism |
| Section 4.1.4 | Flap mechanism |
| Section 4.1.5 | Tail-skid mechanism |
| Section 4.1.7 | Driveshaft mechanism |
| Section 4.1.8 | Geneva mechanism |
| Section 4.1.9 | Trailing edge flap mechanism |
| Section 4.1.10 | Substructure analysis of a one-piston engine model |
| Section 4.1.11 | Application of bushing connectors in the analysis of a three-point linkage |
| Section 5.1.1 | Thermal-stress analysis of a disc brake |
| Section 5.1.2 | A sequentially coupled thermomechanical analysis of a disc brake with an Eulerian approach |
| Section 5.1.3 | Exhaust manifold assemblage |
| Section 5.1.4 | Coolant manifold cover gasketed joint |
| Section 5.1.5 | Conductive, convective, and radiative heat transfer in an exhaust manifold |
| Section 5.1.6 | Thermal-stress analysis of a reactor pressure vessel bolted closure |
| Section 5.1.7 | Coupled thermomechanical analysis of viscoelastic dampers |
| Section 6.1.1 | Conjugate heat transfer analysis of a component-mounted electronic circuit board |
| Section 7.1.1 | Eigenvalue analysis of a piezoelectric transducer |
| Section 7.1.2 | Transient dynamic nonlinear response of a piezoelectric transducer |
| Section 7.2.1 | Thermal-electrical modeling of an automotive fuse |
| Section 8.1.1 | Hydrogen diffusion in a vessel wall section |
| Section 8.1.2 | Diffusion toward an elastic crack tip |
| Section 9.1.1 | Fully and sequentially coupled acoustic-structural analysis of a muffler |
| Section 9.1.2 | Coupled acoustic-structural analysis of a speaker |
| Section 9.1.7 | Coupled acoustic-structural analysis of a pick-up truck |
| Section 9.1.8 | Long-duration response of a submerged cylinder to an underwater explosion |
| Section 10.1.1 | Plane strain consolidation |
| Section 10.1.2 | Calculation of phreatic surface in an earth dam |
| Section 10.1.3 | Axisymmetric simulation of an oil well |
| Section 10.1.4 | Analysis of a pipeline buried in soil |
| Section 10.1.5 | Hydraulically induced fracture in a wellbore |
| Section 10.1.6 | Permafrost thawing–pipeline interaction |
| Section 11.1.1 | Topology optimization of an automotive control arm |
| Section 11.2.1 | Shape optimization of a connecting rod |
| Section 11.3.1 | Sizing optimization of a gear shift control holder |
| Section 11.3.2 | Sizing optimization of a car door |
| Section 11.4.1 | Bead optimization of a plate |
| Section 12.1.1 | Jack-up foundation analyses |
| Section 12.1.2 | Riser dynamics |
| Section 14.2.1 | Design sensitivity analysis of a composite centrifuge |
| Section 14.2.2 | Design sensitivities for tire inflation, footprint, and natural frequency analysis |
| Section 14.2.3 | Design sensitivity analysis of a windshield wiper |
| Section 14.2.4 | Design sensitivity analysis of a rubber bushing |
| Section 15.1.2 | Joining data from multiple results files and converting file format: FJOIN |
| Section 15.1.3 | Calculation of principal stresses and strains and their directions: FPRIN |
| Section 15.1.4 | Creation of a perturbed mesh from original coordinate data and eigenvectors: FPERT |
| Section 15.1.5 | Output radiation view factors and facet areas: FRAD |
| Section 15.1.6 | Creation of a data file to facilitate the postprocessing of elbow element results: FELBOW |
| Section 15.1.7 | Translating Abaqus data to modal neutral file format for analysis in MSC.ADAMS |