The theory of the depinning transition of elastic manifolds in random media provides a framework for the statistical dynamics of dislocation systems at yield. We consider the case of a single flexible dislocation gliding through a random stress field generated by a distribution of immobile dislocations threading through its glide plane. The immobile dislocations are arranged in a \u201crestrictedly random\u201d manner and provide an effective stress field whose statistical properties can be calculated explicitly. We write an equation of motion for the dislocation and compute the associated depinning force, which may be identified with the yield stress. Numerical simulations of a discretized version of the equation confirm these results and ...
We obtain the singular asymptotic behavior of the stress field in the vicinity of a non-planar dislo...
We study the collective behavior of dislocation assemblies in simplified models of plastic deformati...
In this paper, we present a continuum model for dislocation dynamics in a slip plane, which accurate...
International audienceSolute strengthening is an important mechanism that contributes to improving t...
We investigate the depinning transition occurring in dislocation assemblies. In particular, we consi...
The effect that random populations of dislocations have on a material is examined through stochastic...
Dislocation dynamical theories of spatio-temporal pattern formation during plastic flow meet with th...
We study the properties of strain bursts (dislocation avalanches) occurring in two-dimensional discr...
We study a continuum model of dislocation transport in order to investigate the formation of heterog...
While a Taylor-type yield stress, proportional to the square-root of the dislocation density, may ap...
Plastic deformation is a highly dissipative process that induces a variety of patterns such as the c...
We study the properties of strain bursts (dislocation avalanches) occurring in two-dimensional discr...
We study strain-controlled plastic deformation of crystalline solids via two-dimensional discrete di...
We study a one-dimensional model of a dislocation pileup driven by an external stress and interactin...
The increasing demand for materials with well-defined microstructure, accompanied by the advancing m...
We obtain the singular asymptotic behavior of the stress field in the vicinity of a non-planar dislo...
We study the collective behavior of dislocation assemblies in simplified models of plastic deformati...
In this paper, we present a continuum model for dislocation dynamics in a slip plane, which accurate...
International audienceSolute strengthening is an important mechanism that contributes to improving t...
We investigate the depinning transition occurring in dislocation assemblies. In particular, we consi...
The effect that random populations of dislocations have on a material is examined through stochastic...
Dislocation dynamical theories of spatio-temporal pattern formation during plastic flow meet with th...
We study the properties of strain bursts (dislocation avalanches) occurring in two-dimensional discr...
We study a continuum model of dislocation transport in order to investigate the formation of heterog...
While a Taylor-type yield stress, proportional to the square-root of the dislocation density, may ap...
Plastic deformation is a highly dissipative process that induces a variety of patterns such as the c...
We study the properties of strain bursts (dislocation avalanches) occurring in two-dimensional discr...
We study strain-controlled plastic deformation of crystalline solids via two-dimensional discrete di...
We study a one-dimensional model of a dislocation pileup driven by an external stress and interactin...
The increasing demand for materials with well-defined microstructure, accompanied by the advancing m...
We obtain the singular asymptotic behavior of the stress field in the vicinity of a non-planar dislo...
We study the collective behavior of dislocation assemblies in simplified models of plastic deformati...
In this paper, we present a continuum model for dislocation dynamics in a slip plane, which accurate...