The collective dynamics of dislocations is the underlying mechanism of plastic deformation in metallic crystals. Dislocation motion in metals generally occurs on multiple slip systems. The simultaneous activation of different slip systems plays a crucial role in crystal plasticity models. In this contribution, we study the energetic interactions between dislocations on different slip systems by deriving the free energy in a multi-slip geometry. In this, we restrict ourselves to straight and parallel edge dislocations. The obtained free energy has a long-range mean-field contribution, a statistical contribution and a many-body contribution. The many-body contribution is a local function of the total dislocation density on each slip system, a...
International audienceIn the light of recent progress in coarsening the discrete dislocation mechani...
Modeling dislocation multiplication due to interaction and reactions on a mesoscopic scale is an imp...
During forming processes most metals develop cellular dislocation structures due to dislocation slip...
The collective dynamics of dislocations is the underlying mechanism of plastic deformation in metall...
The dynamics of large amounts of dislocations is the governing mechanism in metal plasticity. The fr...
Crystal plasticity is the result of the motion and complex and effectively non-linear interactions o...
The research under this project focused on a theoretical and computational modeling of dislocation d...
This thesis focuses on the effects of slip-slip, slip-twin, and slip-precipitates interactions on st...
We have recently proposed a nonlocal continuum crystal plasticity theory for single slip, which is b...
Due to recent successes of a statistical-based nonlocal continuum crystal plasticity theory for sing...
We develop a nodal dislocation dynamics (DD) model to simulate plastic processes in fee crystals. Th...
Plastic deformation is a highly dissipative process that induces a variety of patterns such as the c...
This work introduces a model for large-strain, geometrically nonlinear elasto-plastic dynamics in si...
We derive the grand-canonical partition function of straight and parallel dislocation lines without ...
The plastic deformation of metals is the result of the motion and interaction of dislocations, line ...
International audienceIn the light of recent progress in coarsening the discrete dislocation mechani...
Modeling dislocation multiplication due to interaction and reactions on a mesoscopic scale is an imp...
During forming processes most metals develop cellular dislocation structures due to dislocation slip...
The collective dynamics of dislocations is the underlying mechanism of plastic deformation in metall...
The dynamics of large amounts of dislocations is the governing mechanism in metal plasticity. The fr...
Crystal plasticity is the result of the motion and complex and effectively non-linear interactions o...
The research under this project focused on a theoretical and computational modeling of dislocation d...
This thesis focuses on the effects of slip-slip, slip-twin, and slip-precipitates interactions on st...
We have recently proposed a nonlocal continuum crystal plasticity theory for single slip, which is b...
Due to recent successes of a statistical-based nonlocal continuum crystal plasticity theory for sing...
We develop a nodal dislocation dynamics (DD) model to simulate plastic processes in fee crystals. Th...
Plastic deformation is a highly dissipative process that induces a variety of patterns such as the c...
This work introduces a model for large-strain, geometrically nonlinear elasto-plastic dynamics in si...
We derive the grand-canonical partition function of straight and parallel dislocation lines without ...
The plastic deformation of metals is the result of the motion and interaction of dislocations, line ...
International audienceIn the light of recent progress in coarsening the discrete dislocation mechani...
Modeling dislocation multiplication due to interaction and reactions on a mesoscopic scale is an imp...
During forming processes most metals develop cellular dislocation structures due to dislocation slip...