Multi-scale modelling offers physical insights in the relationship between microstructure and properties of a material. The macroscopic anisotropic plastic flow may be accounted for by consideration of (a) the polycrystalline nature and (b) the anisotropic grain substructure. The latter contribution to anisotropy manifests itself most clearly in the event of a change in the strain path, as occurs frequently in multi-step forming processes. Under monotonic loading, both the crystallographic texture and the loading-dependent strength contribution from substructure influence the macroscopically observed strength. The presented multi-scale plasticity model for BCC polycrystals combines a crystal plasticity model featuring grain interaction with...
The development of a relevant constitutive model adapted to sheet metal forming simulations requires...
An essential aspect of materials modelling in the field of metal plasticity is hardening. The classi...
Metal forming processes typically involve changes of strain paths, which are accompanied by transien...
Multi-scale modelling offers physical insights in the relationship between microstructure and proper...
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...
For many years polycrystalline deformation models have been used as a physical approach to predict t...
A microstructural model, based on Peeters' works, is implemented into a large strain self-consistent...
Sheet metal forming processes involve multi-axial strain paths. For the numerical simulation of such...
In this study we investigate how to incorporate micro-scale physical phenomena into simulations on a...
This work focuses on the modeling of the evolution of anisotropy induced by the development of the d...
In this study we investigate how to incorporate micro-scale physical phenomena into simulations on a...
The mechanical behavior of polycrystalline metals can be successfully modeled by macroscopic theorie...
The mechanical behavior of polycrystalline metals can be successfully modeled by macroscopic theorie...
Polycrystal models, beginning with the work of Sachs (1928) and Taylor (1938), have been used to pre...
The development of a relevant constitutive model adapted to sheet metal forming simulations requires...
An essential aspect of materials modelling in the field of metal plasticity is hardening. The classi...
Metal forming processes typically involve changes of strain paths, which are accompanied by transien...
Multi-scale modelling offers physical insights in the relationship between microstructure and proper...
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...
For many years polycrystalline deformation models have been used as a physical approach to predict t...
A microstructural model, based on Peeters' works, is implemented into a large strain self-consistent...
Sheet metal forming processes involve multi-axial strain paths. For the numerical simulation of such...
In this study we investigate how to incorporate micro-scale physical phenomena into simulations on a...
This work focuses on the modeling of the evolution of anisotropy induced by the development of the d...
In this study we investigate how to incorporate micro-scale physical phenomena into simulations on a...
The mechanical behavior of polycrystalline metals can be successfully modeled by macroscopic theorie...
The mechanical behavior of polycrystalline metals can be successfully modeled by macroscopic theorie...
Polycrystal models, beginning with the work of Sachs (1928) and Taylor (1938), have been used to pre...
The development of a relevant constitutive model adapted to sheet metal forming simulations requires...
An essential aspect of materials modelling in the field of metal plasticity is hardening. The classi...
Metal forming processes typically involve changes of strain paths, which are accompanied by transien...