International audienceThe present study focuses on the development of a relevant numerical tool for predictingthe onset of localized necking in polycrystalline aggregates. The latter are assumed to be representative of thin metal sheets. In this tool, a micromechanical model, based on the rate-independent self-consistent multi-scale scheme, is developed to accurately describe the mechanical behavior of polycrystalline aggregates from that of their single crystal constituents. In the current paper, the constitutive framework at the single crystal scale follows a finite strain formulation of the rate-independent theory of crystal elastoplasticity. To predict the occurrence of localized necking in polycrystalline aggregates, this micromechanic...
The forming limit is an important failure criterion for polycrystalline sheet metals when approving ...
This paper is concerned with the computation of forming limit diagrams (FLDs) using a rate-sensitive...
In this paper, both the bifurcation theory and the initial imperfection approach are used to predict...
The present study focuses on the development of a relevant numerical tool for predicting the onset o...
In the present work, a powerful modeling tool is developed to predict and analyze the onset of strai...
In the present work, a powerful modeling tool is developed to predict and analyze the onset of strai...
In the present paper, an efficient numerical tool is developed to investigate the ductility limit of...
Ductile failure is the main mechanism that limits the formability of thin metal sheets during formin...
AbstractPlastic flow localization into a narrow band is investigated for a rate-independent polycrys...
The yield criterion in rate-independent single crystal plasticity is most often defined by the class...
International audienceThe development of a relevant constitutive model adapted to sheet metal formin...
In order to investigate the impact of microstructures and deformation mechanisms on the ductility of...
In this paper, we performed a strain localization analysis for single crystals and polycrystals, wit...
An alternative method to predict forming limits for sheet metal forming is presented. Deformation in...
Modelization of the elastoplastic behavior of metallic polycrystals based on micro-macro transitions...
The forming limit is an important failure criterion for polycrystalline sheet metals when approving ...
This paper is concerned with the computation of forming limit diagrams (FLDs) using a rate-sensitive...
In this paper, both the bifurcation theory and the initial imperfection approach are used to predict...
The present study focuses on the development of a relevant numerical tool for predicting the onset o...
In the present work, a powerful modeling tool is developed to predict and analyze the onset of strai...
In the present work, a powerful modeling tool is developed to predict and analyze the onset of strai...
In the present paper, an efficient numerical tool is developed to investigate the ductility limit of...
Ductile failure is the main mechanism that limits the formability of thin metal sheets during formin...
AbstractPlastic flow localization into a narrow band is investigated for a rate-independent polycrys...
The yield criterion in rate-independent single crystal plasticity is most often defined by the class...
International audienceThe development of a relevant constitutive model adapted to sheet metal formin...
In order to investigate the impact of microstructures and deformation mechanisms on the ductility of...
In this paper, we performed a strain localization analysis for single crystals and polycrystals, wit...
An alternative method to predict forming limits for sheet metal forming is presented. Deformation in...
Modelization of the elastoplastic behavior of metallic polycrystals based on micro-macro transitions...
The forming limit is an important failure criterion for polycrystalline sheet metals when approving ...
This paper is concerned with the computation of forming limit diagrams (FLDs) using a rate-sensitive...
In this paper, both the bifurcation theory and the initial imperfection approach are used to predict...