For many years polycrystalline deformation models have been used as a physical approach to predict the anisotropic mechanical behaviour of materials during deformation, e.g. the r-values and yield loci. The crystallographic texture was then considered to be the main contributor to the overall anisotropy. However, recent studies have shown that the intragranular microstructural features influence strongly the anisotropic behaviour of b.c.c. polycrystals, as revealed by strain-path change tests (e.g. cross effect, Bausch-inger effect). This paper addresses a method of incorporating dislocation ensembles in the crystal plasticity constitutive framework, while accounting for their evolution during changing strain paths. Kinetic equations are fo...
Polycrystal models, beginning with the work of Sachs (1928) and Taylor (1938), have been used to pre...
Polycrystal materials exhibit large changes in the flow stress and hardening behavior during the str...
International audienceThe development of a relevant constitutive model adapted to sheet metal formin...
The relationship between the developed intragranular microstructure and the deformation history of a...
Multi-scale modelling offers physical insights in the relationship between microstructure and proper...
Metal forming processes typically involve changes of strain paths, which are accompanied by transien...
Polycrystal aggregates subjected to plastic forming exhibit large changes in the yield stress and ex...
Softening/hardening effects are often observed in BCC polycrystals during changing strain paths. The...
Sheet metal forming processes are commonly associated with strain-path changes in the material. Macr...
A model is proposed that deals with the transient mechanical anisotropy during strain-path changes i...
An extension of a full-constraints Taylor model is presented which captures substructural dislocatio...
Industrial forming processes usually involve complex strain paths, which are typically associated wi...
International audienceA two-level homogenisation approach is applied to the micro-mechanical modelli...
An integrated substructure and texture evolution model is used to study grain subdivision and anisot...
In the present study, a viscoplastic self-consistent crystal plasticity model (VPSC-RGBV), which acc...
Polycrystal models, beginning with the work of Sachs (1928) and Taylor (1938), have been used to pre...
Polycrystal materials exhibit large changes in the flow stress and hardening behavior during the str...
International audienceThe development of a relevant constitutive model adapted to sheet metal formin...
The relationship between the developed intragranular microstructure and the deformation history of a...
Multi-scale modelling offers physical insights in the relationship between microstructure and proper...
Metal forming processes typically involve changes of strain paths, which are accompanied by transien...
Polycrystal aggregates subjected to plastic forming exhibit large changes in the yield stress and ex...
Softening/hardening effects are often observed in BCC polycrystals during changing strain paths. The...
Sheet metal forming processes are commonly associated with strain-path changes in the material. Macr...
A model is proposed that deals with the transient mechanical anisotropy during strain-path changes i...
An extension of a full-constraints Taylor model is presented which captures substructural dislocatio...
Industrial forming processes usually involve complex strain paths, which are typically associated wi...
International audienceA two-level homogenisation approach is applied to the micro-mechanical modelli...
An integrated substructure and texture evolution model is used to study grain subdivision and anisot...
In the present study, a viscoplastic self-consistent crystal plasticity model (VPSC-RGBV), which acc...
Polycrystal models, beginning with the work of Sachs (1928) and Taylor (1938), have been used to pre...
Polycrystal materials exhibit large changes in the flow stress and hardening behavior during the str...
International audienceThe development of a relevant constitutive model adapted to sheet metal formin...