International audienceA reliable determination of the onset of void coalescence is critical to the modelling of ductile fracture. Numerical models have been developed but rely mostly on analyses on single defect cells, thus underestimating the interaction between voids. This study aims to provide the first extensive analysis of the response of microstructures with random distributions of voids to various loading conditions and to characterize the dispersion of the results as a consequence of the randomness of the void distribution. Cells embedding a random distribution of identical spherical voids are generated within an elastoplastic matrix and subjected to a macroscopic loading with constant stress triaxiality and Lode parameter under per...
International audienceThe mechanical response of isotropic elastoplastic materials containing random...
A micromechanical model has been developed in order to capture the influence of a second population ...
A population of several spherical voids is included in a three-dimensional, small scale yielding mod...
International audienceA reliable determination of the onset of void coalescence is critical to the m...
International audiencePredicting the transition from cavity growth to coalescence is important for u...
International audienceIn ductile fracture, strain localization can often be a precursor to the failu...
International audienceIn this work, a new finite element framework is developed and applied to the s...
The porous plasticity model (usually referred to as the Gurson–Tvergaard– Needleman model or modifie...
In this paper void coalescence is regarded as the result of localization of plastic flow between enl...
Plastic deformation in ductile metals is limited by a mechanism in which voids, nucleated at second ...
As a physical basis for understanding void linking during ductile microvoid fracture, the contrastin...
This study investigates the overall and local response of porous media composed of a perfectly plast...
International audienceA finite element analysis of large 3D microstructures of randomly distributed ...
In this paper, an isotropic porous metal plasticity model accounting for both void growth by diffuse ...
International audienceThe mechanical response of isotropic elastoplastic materials containing random...
A micromechanical model has been developed in order to capture the influence of a second population ...
A population of several spherical voids is included in a three-dimensional, small scale yielding mod...
International audienceA reliable determination of the onset of void coalescence is critical to the m...
International audiencePredicting the transition from cavity growth to coalescence is important for u...
International audienceIn ductile fracture, strain localization can often be a precursor to the failu...
International audienceIn this work, a new finite element framework is developed and applied to the s...
The porous plasticity model (usually referred to as the Gurson–Tvergaard– Needleman model or modifie...
In this paper void coalescence is regarded as the result of localization of plastic flow between enl...
Plastic deformation in ductile metals is limited by a mechanism in which voids, nucleated at second ...
As a physical basis for understanding void linking during ductile microvoid fracture, the contrastin...
This study investigates the overall and local response of porous media composed of a perfectly plast...
International audienceA finite element analysis of large 3D microstructures of randomly distributed ...
In this paper, an isotropic porous metal plasticity model accounting for both void growth by diffuse ...
International audienceThe mechanical response of isotropic elastoplastic materials containing random...
A micromechanical model has been developed in order to capture the influence of a second population ...
A population of several spherical voids is included in a three-dimensional, small scale yielding mod...