International audienceInvestigations of precipitation hardening are performed in term of analysis of distributions of geometrically necessary dislocations (GND) surrounding particles. The dislocation microstructures are computed from three dimensional discrete dislocation dynamics (DDD) and strain gradient plasticity (SGP) models. DDD simulations of spherical particle embedded in a single crystal matrix undergoing single slip provide the GND structures and the associated work-hardening. A 3D periodic arrangement of particles with cubic symmetry is considered. It is found that a network of slip and kink deformation bands develops, which is strongly dependent on the crystal lattice orientation of the matrix with respect to the particle array....
A distinction is made between uniform dislocation microstructures found in deformed materials where ...
Plastic deformation in two-dimensional monophase and composite materials is studied using a discrete...
The relations between mesoscopic plastic strain gradients, \u27geometrically necessary\u27 dislocati...
International audienceInvestigations of precipitation hardening are performed in term of analysis of...
This thesis focuses on the effects of slip-slip, slip-twin, and slip-precipitates interactions on st...
A gradient-enhanced crystal plasticity model is presented that explicitly accounts for the evolution...
Following the publication of several seminal studies, discrete dislocation dynamics has become well-...
AbstractFollowing the publication of several seminal studies, discrete dislocation dynamics has beco...
Plastic deformation in crystalline materials occurs through dislocation slip and strengthening is ac...
Modeling dislocation multiplication due to interaction and reactions on a mesoscopic scale is an imp...
The shear deformation of a composite comprising elastic particles in a single crystal elastic-plasti...
The present work emphasises the potentialities of dislocation dynamics simulations for performing an...
Deformation processes and accumulation of dislocations in metal microstructures is a matter of impor...
Slip deformation phenomena in compatible type multi crystal models subjected to tensile load are ana...
We develop a continuum model of dislocation dynamics that predicts the main features of the crystal ...
A distinction is made between uniform dislocation microstructures found in deformed materials where ...
Plastic deformation in two-dimensional monophase and composite materials is studied using a discrete...
The relations between mesoscopic plastic strain gradients, \u27geometrically necessary\u27 dislocati...
International audienceInvestigations of precipitation hardening are performed in term of analysis of...
This thesis focuses on the effects of slip-slip, slip-twin, and slip-precipitates interactions on st...
A gradient-enhanced crystal plasticity model is presented that explicitly accounts for the evolution...
Following the publication of several seminal studies, discrete dislocation dynamics has become well-...
AbstractFollowing the publication of several seminal studies, discrete dislocation dynamics has beco...
Plastic deformation in crystalline materials occurs through dislocation slip and strengthening is ac...
Modeling dislocation multiplication due to interaction and reactions on a mesoscopic scale is an imp...
The shear deformation of a composite comprising elastic particles in a single crystal elastic-plasti...
The present work emphasises the potentialities of dislocation dynamics simulations for performing an...
Deformation processes and accumulation of dislocations in metal microstructures is a matter of impor...
Slip deformation phenomena in compatible type multi crystal models subjected to tensile load are ana...
We develop a continuum model of dislocation dynamics that predicts the main features of the crystal ...
A distinction is made between uniform dislocation microstructures found in deformed materials where ...
Plastic deformation in two-dimensional monophase and composite materials is studied using a discrete...
The relations between mesoscopic plastic strain gradients, \u27geometrically necessary\u27 dislocati...