Time integration scheme for elastoplastic models based on anisotropic strain-rate potentials
DOI10.1002/nme.2640zbMath1176.74079OpenAlexW1995264356MaRDI QIDQ3649889
Meziane Rabahallah, Cristian Teodosiu, Tudor Balan, Salima Bouvier
Publication date: 7 December 2009
Published in: International Journal for Numerical Methods in Engineering (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1002/nme.2640
elastoplasticitybackward Eulerstress update algorithmplastic strain-rate potentialsheet metal forming simulation
Finite element methods applied to problems in solid mechanics (74S05) Large-strain, rate-independent theories of plasticity (including nonlinear plasticity) (74C15) Numerical approximation of solutions of dynamical problems in solid mechanics (74H15)
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- Consistent tangent operators for rate-independent elastoplasticity
- On plastic potentials for anisotropic metals and their derivation from the texture function
- Towards an accurate description of the anisotropic behaviour of sheet metals under large plastic deformations: modelling, numerical analysis and identification
- An elasto-plastic constitutive model with plastic strain rate potentials for anisotropic cubic metals
- Investigation of advanced strain-path dependent material models for sheet metal forming simulations
- Parameter identification of advanced plastic strain-rate potentials and impact on plastic anisotropy prediction
- Constitutive dual potentials in classical plasticity
- Effect of texture on earing in FCC metals: Finite element simulations
- Interpretation of the behavior of metals under large plastic shear deformations: A macroscopic approach
- Incorporation of an anisotropic (texture-based) strain-rate potential into three-dimensional finite element simulations
- Blank shape design for a planar anisotropic sheet based on ideal forming design theory and FEM analysis
- Ideal stretch forming for minimum weight axisymmetric shell structures
- A model of large-strain cyclic plasticity describing the Bauschinger effect and workhardening stagnation
- Anisotropic hardening equations derived from reverse-bend testing
- Spring-back evaluation of automotive sheets based on isotropic-kinematic hardening laws and non-quadratic anisotropic yield functions. I: Theory and formulation
- A FE formulation for elasto-plastic materials with planar anisotropic yield functions and plastic spin.
- Finite element modeling of plastic anisotropy induced by texture and strain-path change.
- Finite element method for sheet forming based on an anisotropic strain-rate potential and the convected coordinate system
- Universal anisotropic yield criterion based on superquadric functional representation. I: Algorithmic issues and accuracy analysis
- A fourth-order plastic potential for anisotropic metals and its analytical calculation from the texture function
- Finite element simulation of sheet forming based on a planar anisotropic strain-rate potential
- Elasto-plastic finite element method based on incremental deformation theory and continuum based shell elements for planar anisotropic sheet materials.
- A general elasto-plastic finite element formulation based on incremental deformation theory for planar anisotropy and its application to sheet metal forming.
- Plastic spin: Necessity or redundancy?
- Rotation of axes for anisotropic metal in FEM simulations
- Modeling multi-axial deformation of planar anisotropic elasto-plastic materials. I: Theory
- Prediction of six or eight ears in a drawn cup based on a new anisotropic yield function
- Non-quadratic anisotropic potentials based on linear transformation of plastic strain rate
- Accuracy and stability of integration algorithms for elastoplastic constitutive relations
- An analysis of a new class of integration algorithms for elastoplastic constitutive relations
- A theory of the yielding and plastic flow of anisotropic metals
- Assessment of crystal plasticity based calculation of the lattice spin of polycrystalline metals for FE implementation
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