AbstractLarge strain finite element calculations of unit cells subjected to triaxial axisymmetric loadings are presented for plastically orthotropic materials containing a periodic distribution of aligned spheroidal voids. The spatial distribution of voids and the plastic flow properties of the matrix are assumed to respect transverse isotropy about the axis of symmetry of the imposed loading so that a two-dimensional axisymmetric analysis is adequate. The parameters varied pertain to load triaxiality, matrix anisotropy, initial porosity and initial void shape so as to include the limiting case of penny-shaped cracks. Attention is focussed on comparing the individual and coupled effects of void shape and material anisotropy on the effective...
Colloque avec actes et comité de lecture. Internationale.International audienceThis work makes use o...
Colloque avec actes et comité de lecture. Internationale.International audienceThis work makes use o...
Micro-mechanical 2D cell model studies have revealed ductile failure during intense shearing to be g...
AbstractLarge strain finite element calculations of unit cells subjected to triaxial axisymmetric lo...
In the present work, we have analyzed the effect of anisotropy on void growth and stress-strain beha...
In the present work, we have analyzed the effect of anisotropy on void growth and stress-strain beha...
AbstractA significant difference between the behavior in tension versus compression is obtained at t...
In this paper, an isotropic porous metal plasticity model accounting for both void growth by diffuse ...
The macroscopic behaviour of anisotropic porous solids made from an aggregate of spherical voids emb...
AbstractIn this paper void coalescence is regarded as the result of localization of plastic flow bet...
The onset of macroscopic strain localization limits the ductility of many ductile materials. For por...
The onset of macroscopic strain localization limits the ductility of many ductile materials. For por...
AbstractNumerical, axisymmetric cell model analyses are used to study the growth of voids in ductile...
The onset of macroscopic strain localization limits the ductility of many ductile materials. For por...
Colloque avec actes et comité de lecture. Internationale.International audienceThis work makes use o...
Colloque avec actes et comité de lecture. Internationale.International audienceThis work makes use o...
Colloque avec actes et comité de lecture. Internationale.International audienceThis work makes use o...
Micro-mechanical 2D cell model studies have revealed ductile failure during intense shearing to be g...
AbstractLarge strain finite element calculations of unit cells subjected to triaxial axisymmetric lo...
In the present work, we have analyzed the effect of anisotropy on void growth and stress-strain beha...
In the present work, we have analyzed the effect of anisotropy on void growth and stress-strain beha...
AbstractA significant difference between the behavior in tension versus compression is obtained at t...
In this paper, an isotropic porous metal plasticity model accounting for both void growth by diffuse ...
The macroscopic behaviour of anisotropic porous solids made from an aggregate of spherical voids emb...
AbstractIn this paper void coalescence is regarded as the result of localization of plastic flow bet...
The onset of macroscopic strain localization limits the ductility of many ductile materials. For por...
The onset of macroscopic strain localization limits the ductility of many ductile materials. For por...
AbstractNumerical, axisymmetric cell model analyses are used to study the growth of voids in ductile...
The onset of macroscopic strain localization limits the ductility of many ductile materials. For por...
Colloque avec actes et comité de lecture. Internationale.International audienceThis work makes use o...
Colloque avec actes et comité de lecture. Internationale.International audienceThis work makes use o...
Colloque avec actes et comité de lecture. Internationale.International audienceThis work makes use o...
Micro-mechanical 2D cell model studies have revealed ductile failure during intense shearing to be g...