A microstructural model, based on Peeters' works, is implemented into a large strain self-consistent scheme, leading to the multiscale model which achieves, for each grain, the calculation of slip activity, with help of regularized formulation drawn from the visco-plasticity framework, and the dislocation microstructure evolution. This paper focuses on the relationship between macroscopic hardening/softening effects and induced microstructure during monotonic and two-stage strain paths.CNRS & ArcelorMitta
Multi-scale modelling offers physical insights in the relationship between microstructure and proper...
The aim of this work is to develop a dislocation density based model for IF and DP steels that incor...
An advanced elastic-plastic self-consistent polycrystalline model, accounting for intragranular micr...
Sheet metal forming processes are commonly associated with strain-path changes in the material. Macr...
Sheet metal forming processes are commonly associated with strain-path changes in the material. Macr...
The development of a relevant constitutive model adapted to sheet metal forming simulations requires...
In this paper, the effects of microstructure and deformation mechanisms on the ductility of multipha...
In this paper, the effects of microstructure and deformation mechanisms on the ductility of multipha...
In order to investigate the effects of microstructure and deformation mechanisms on the ductility of...
A large strain elastic-plastic single crystal constitutive law, based on dislocation annihilation an...
Multi-scale modelling offers physical insights in the relationship between microstructure and proper...
The development of a relevant constitutive model adapted to sheet metal forming simulations requires...
International audienceThe development of a relevant constitutive model adapted to sheet metal formin...
Sheet metal forming processes involve multi-axial strain paths. For the numerical simulation of such...
The aim of this work is to develop a dislocation density based model for IF and DP steels that incor...
Multi-scale modelling offers physical insights in the relationship between microstructure and proper...
The aim of this work is to develop a dislocation density based model for IF and DP steels that incor...
An advanced elastic-plastic self-consistent polycrystalline model, accounting for intragranular micr...
Sheet metal forming processes are commonly associated with strain-path changes in the material. Macr...
Sheet metal forming processes are commonly associated with strain-path changes in the material. Macr...
The development of a relevant constitutive model adapted to sheet metal forming simulations requires...
In this paper, the effects of microstructure and deformation mechanisms on the ductility of multipha...
In this paper, the effects of microstructure and deformation mechanisms on the ductility of multipha...
In order to investigate the effects of microstructure and deformation mechanisms on the ductility of...
A large strain elastic-plastic single crystal constitutive law, based on dislocation annihilation an...
Multi-scale modelling offers physical insights in the relationship between microstructure and proper...
The development of a relevant constitutive model adapted to sheet metal forming simulations requires...
International audienceThe development of a relevant constitutive model adapted to sheet metal formin...
Sheet metal forming processes involve multi-axial strain paths. For the numerical simulation of such...
The aim of this work is to develop a dislocation density based model for IF and DP steels that incor...
Multi-scale modelling offers physical insights in the relationship between microstructure and proper...
The aim of this work is to develop a dislocation density based model for IF and DP steels that incor...
An advanced elastic-plastic self-consistent polycrystalline model, accounting for intragranular micr...