The elastoplastic response of polycrystalline voided solids is idealized here as rigid-perfectly plastic. Bounds on the macroscopic plastic strength for prescribed microstructural statistics and single-crystal strength are computed be means of a linearcomparison homogenization technique developed by Idiart&Ponte Castañeda (2007Proc. R. Soc. A 463, 907-924. (doi:10.1098/rspa.2006.1797)). Hashin-Shtrikman (HS) and Self-Consistent (SC) results in the form of yield surfaces are reported for cubic and hexagonal polycrystals with isotropic texture and varying degrees of crystal anisotropy. In all cases, the surfaces are smooth, closed and convex. Improvements over earlier linear-comparison bounds of up to 40% are found at high-stress triaxialitie...
Using a massively parallel finite-element code, we perform an ensemble of 3D Direct Numerical Simula...
The effective mechanical properties of a polycrystal depend directly on the single-crystal propertie...
Abstract This contribution aims in a geometrically linear formulation of higher gradient plasticity ...
The elastoplastic response of polycrystalline voided solids is idealized here as rigid-perfectly pla...
The elastoplastic response of polycrystalline metals and minerals above their brittle- ductile trans...
A linear-comparison homogenization technique and its relaxed version are used to compute bounds of t...
International audienceThis article presents an assessment of the yield criterion for porous plastic ...
A micromechanical study of the viscoplasticity of voided cubic crystals is presented. The microscopi...
Ductile fracture through void growth to coalescence occurs at the grain scale in numerous metallic a...
In this paper, a closed-form expression of a macroscopic strength criterion for ductile nanoporous m...
International audienceThis paper is devoted to develop a theoretical framework to predict the macros...
The effective elastic properties of a polycrystalline material depend on the single crystal elastic ...
AbstractA significant difference between the behavior in tension versus compression is obtained at t...
Common engineering structural materials -- metallic alloys and ceramics -- are polycrystalline. They...
A fundamental problem in mechanics of materials is the computation of the macroscopic response of po...
Using a massively parallel finite-element code, we perform an ensemble of 3D Direct Numerical Simula...
The effective mechanical properties of a polycrystal depend directly on the single-crystal propertie...
Abstract This contribution aims in a geometrically linear formulation of higher gradient plasticity ...
The elastoplastic response of polycrystalline voided solids is idealized here as rigid-perfectly pla...
The elastoplastic response of polycrystalline metals and minerals above their brittle- ductile trans...
A linear-comparison homogenization technique and its relaxed version are used to compute bounds of t...
International audienceThis article presents an assessment of the yield criterion for porous plastic ...
A micromechanical study of the viscoplasticity of voided cubic crystals is presented. The microscopi...
Ductile fracture through void growth to coalescence occurs at the grain scale in numerous metallic a...
In this paper, a closed-form expression of a macroscopic strength criterion for ductile nanoporous m...
International audienceThis paper is devoted to develop a theoretical framework to predict the macros...
The effective elastic properties of a polycrystalline material depend on the single crystal elastic ...
AbstractA significant difference between the behavior in tension versus compression is obtained at t...
Common engineering structural materials -- metallic alloys and ceramics -- are polycrystalline. They...
A fundamental problem in mechanics of materials is the computation of the macroscopic response of po...
Using a massively parallel finite-element code, we perform an ensemble of 3D Direct Numerical Simula...
The effective mechanical properties of a polycrystal depend directly on the single-crystal propertie...
Abstract This contribution aims in a geometrically linear formulation of higher gradient plasticity ...