In this paper we present a continuum theory for large strain anisotropic elastoplasticity based on a decomposition of the modified plastic velocity gradient into energetic and dissipative parts. The theory includes the Armstrong and Frederick hardening rule as well as multilayer models as special cases even for large strain anisotropic elastoplasticity. Texture evolution may also be modelled by the formulation, which allows for a meaningful interpretation of the terms of the dissipation equatio
The objective of this contribution is the formulation and algorithmic treatment of a phenomenologica...
International audienceIn order to capture, as accurately as possible, the complex physical effects d...
The main objective of this work is the formulation and algorithmic treatment of anisotropic continuu...
A description of texture evolution at large strain plasticity is developed. Texture evolution is def...
A finite strain hyper elasto-plastic constitutive model capable to describe non-linear kinematic har...
A phenomenological model for evolving anisotropy at large strains is presented. The model is formula...
In this paper we present a new computational framework for anisotropic elastoplasticity with mixed h...
AbstractA phenomenological model for evolving anisotropy at large strains is presented. The model is...
Following generally accepted axioms and assumptions the authors developed a phenomenological, thermo...
International audienceIn this work, non-associative finite strain anisotropic elastoplastic model fu...
In this work a comparative analysis is presented between the linear and the nonlinear kinematic hard...
In this paper, a free energy-based formulation incorporating the effect of kinematic hardening is pr...
The paper discusses a constitutive model for finite deformation anisotropic elasto-plasticity, withi...
A geometrically non‐linear formulation for composites and the resulting explicit dynamic finite elem...
In this work a generalized anisotropic model in large strains based on the classical isotropic plast...
The objective of this contribution is the formulation and algorithmic treatment of a phenomenologica...
International audienceIn order to capture, as accurately as possible, the complex physical effects d...
The main objective of this work is the formulation and algorithmic treatment of anisotropic continuu...
A description of texture evolution at large strain plasticity is developed. Texture evolution is def...
A finite strain hyper elasto-plastic constitutive model capable to describe non-linear kinematic har...
A phenomenological model for evolving anisotropy at large strains is presented. The model is formula...
In this paper we present a new computational framework for anisotropic elastoplasticity with mixed h...
AbstractA phenomenological model for evolving anisotropy at large strains is presented. The model is...
Following generally accepted axioms and assumptions the authors developed a phenomenological, thermo...
International audienceIn this work, non-associative finite strain anisotropic elastoplastic model fu...
In this work a comparative analysis is presented between the linear and the nonlinear kinematic hard...
In this paper, a free energy-based formulation incorporating the effect of kinematic hardening is pr...
The paper discusses a constitutive model for finite deformation anisotropic elasto-plasticity, withi...
A geometrically non‐linear formulation for composites and the resulting explicit dynamic finite elem...
In this work a generalized anisotropic model in large strains based on the classical isotropic plast...
The objective of this contribution is the formulation and algorithmic treatment of a phenomenologica...
International audienceIn order to capture, as accurately as possible, the complex physical effects d...
The main objective of this work is the formulation and algorithmic treatment of anisotropic continuu...