On the modelling of complex kinematic hardening and nonquadratic anisotropic yield criteria at finite strains: application to sheet metal forming
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Publication:295047
DOI10.1007/s00466-016-1270-6zbMath1382.74118OpenAlexW2287034076WikidataQ113327540 ScholiaQ113327540MaRDI QIDQ295047
Tiago J. Grilo, Stefanie Reese, Robertt A. F. Valente, Ivaylo N. Vladimirov
Publication date: 17 June 2016
Published in: Computational Mechanics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s00466-016-1270-6
Cites Work
- Anisotropic finite elastoplasticity with nonlinear kinematic and isotropic hardening and application to sheet metal forming
- A Green-Naghdi approach to finite anisotropic rate-independent and rate-dependent thermo-plasticity in logarithmic Lagrangian strain-entropy space
- A formulation of anisotropic continuum elastoplasticity at finite strains. I: Modelling
- A comparative study of kinematic hardening rules at finite deformations
- On the numerical treatment of finite deformations in elastoviscoplasticity
- Numerical computation of algorithmic (consistent) tangent moduli in large-strain computational inelasticity
- On the spatial formulation of anisotropic multiplicative elasto-plasticity.
- On the theoretical and numerical modelling of Armstrong-Frederick kinematic hardening in the finite strain regime.
- Constitutive modelling in finite thermoviscoplasticity: A physical approach based on nonlinear rheological models
- Linear transformation-based anisotropic yield functions.
- A criterion for description of anisotropy and yield differential effects in pressure-insensitive metals
- Kinematic hardening rules in finite plasticity. I: A constitutive approach. II: Some examples
- Deformation gradient based kinematic hardening model
- On the modelling of non‐linear kinematic hardening at finite strains with application to springback—Comparison of time integration algorithms
- Anisotropic elastic–plastic analysis of shells at large strains. A comparison of multiplicative and additive approaches to enhanced finite element design and constitutive modelling
- On the formulation and numerical solution of problems in anisotropic finite plasticity
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