An accurate method which directly accounts for the interactions between different microcracks is used for analyzing the elastic problem of multiple cracks solids. The effective elastic moduli for randomly oriented cracks and parallel cracks are evaluated for the representative volume element (RVE) with microcracks in infinite media. The numerical results are compared with those from various micromechanics models and experimental data. These results show that the present method is simple and provides a direct and efficient approach to dealing with elastic solids containing multiple cracks
In this paper, we present a study on the effective elastic properties of finely fractured rock based...
The combination of phenomenological and micromechanical damage mechanics is a promising path to cons...
The fundamental solutions of elasticity are used to establish a numerical method for elastic and pla...
There exist several micromechanics models for the determination of the effective moduli of microcrac...
AbstractThis paper addresses the problem of calculating effective elastic properties of a solid cont...
International audienceThe overall elastic moduli of a solid are changed when the solid is damaged by...
ABSTRACT In this paper, effective moduli of cracked solid material were investigated. An analytical ...
We investigate the weakening of elastic materials through randomly distributed circles and cracks nu...
The effective properties of cracked solids are often expressed in terms of the crack density parame...
We derive a theory for the elastic characterization of multicracked solids based on a homogenization...
This thesis considers how cracks in an elastic body can alter the body’s elastic properties. In the ...
A physical model is developed to calculate the effective elastic moduli of a cracked solid medium un...
Abstract: A fast multipole boundary element method (FM-BEM) was applied for the analysis of microcra...
The overall moduli and non-linear constitutive relations of solids containing randomly oriented and ...
A method is presented to solve the plane elastic problem of a solid weakened by numerous cracks. The...
In this paper, we present a study on the effective elastic properties of finely fractured rock based...
The combination of phenomenological and micromechanical damage mechanics is a promising path to cons...
The fundamental solutions of elasticity are used to establish a numerical method for elastic and pla...
There exist several micromechanics models for the determination of the effective moduli of microcrac...
AbstractThis paper addresses the problem of calculating effective elastic properties of a solid cont...
International audienceThe overall elastic moduli of a solid are changed when the solid is damaged by...
ABSTRACT In this paper, effective moduli of cracked solid material were investigated. An analytical ...
We investigate the weakening of elastic materials through randomly distributed circles and cracks nu...
The effective properties of cracked solids are often expressed in terms of the crack density parame...
We derive a theory for the elastic characterization of multicracked solids based on a homogenization...
This thesis considers how cracks in an elastic body can alter the body’s elastic properties. In the ...
A physical model is developed to calculate the effective elastic moduli of a cracked solid medium un...
Abstract: A fast multipole boundary element method (FM-BEM) was applied for the analysis of microcra...
The overall moduli and non-linear constitutive relations of solids containing randomly oriented and ...
A method is presented to solve the plane elastic problem of a solid weakened by numerous cracks. The...
In this paper, we present a study on the effective elastic properties of finely fractured rock based...
The combination of phenomenological and micromechanical damage mechanics is a promising path to cons...
The fundamental solutions of elasticity are used to establish a numerical method for elastic and pla...