ALE formulation and its application in solid mechanics
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Publication:1808068
DOI10.1016/S0045-7825(98)00107-8zbMath0945.74068OpenAlexW2052261162MaRDI QIDQ1808068
Publication date: 30 November 1999
Published in: Computer Methods in Applied Mechanics and Engineering (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/s0045-7825(98)00107-8
mesh motionarbitrary Lagrangian-Eulerian finite element formulationcompression between wedge-shaped diesdegenerate updated Lagrangian descriptionexternal virtual workloading correction analysispunch identationsheet metal extrusionstress integration scheme
Related Items (10)
An alternative choice of the boundary condition for the arbitrary Lagrangian-Eulerian method ⋮ Some computational aspects for solving deep penetration problems in geomechanics ⋮ Efficient ALE mesh management for 3D quasi-Eulerian problems ⋮ Arbitrary mesh‐moving velocity‐based space‐time finite element method for large deformation analysis of solids ⋮ A yarn-scale woven fabric model including significant slippage formulated within the arbitrary Lagrangian Eulerian framework ⋮ Eulerian volume of solid (VOS) approach in solid mechanics and metal forming ⋮ Elasto-plastic strain analysis by a semi-analytical method ⋮ Finite element simulation of lubricated contact in rolling using the arbitrary Lagrangian--Eulerian formulation ⋮ ALE formulation for thermomechanical inelastic material models applied to tire forming and curing simulations ⋮ Arbitrary Lagrangian-Eulerian method in plasticity of pressure-sensitive material: Application to powder forming processes
Cites Work
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- An arbitrary Lagrangian-Eulerian finite element method for large deformation analysis of elastic-viscoplastic solids
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- Formulation and survey of ALE method in nonlinear solid mechanics
- Computational implementation of stress integration in FE analysis of elasto-plastic large deformation problems
- An arbitrary Lagrangian-Eulerian finite element method for incompressible hyperelasticity
- Numerical integration of rate constitutive equations in finite deformation analysis
- A finite element formulation for problems of large strain and large displacement
- Formulation methods of geometric and material nonlinearity problems
- Explicit expressions for energy release rates using virtual crack extensions
- Accuracy and stability of integration algorithms for elastoplastic constitutive relations
- An analysis of a new class of integration algorithms for elastoplastic constitutive relations
- Finite rotation effects in numerical integration of rate constitutive equations arising in large-deformation analysis
- Finite element formulations for large deformation dynamic analysis
- Harmonic Dispersion Analysis of Incremental Waves in Uniaxially Prestressed Plastic and Viscoplastic Bars, Plates, and Unbounded Media
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