We investigate the weakening of elastic materials through randomly distributed circles and cracks numerically and compare the results to predictions from homogenization theories. We find a good agreement for the case of randomly oriented cracks of equal length in an isotropic plane-strain medium for lower crack densities; for higher densities the material is weaker than predicted due to precursors of percolation. For a parallel alignment of cracks, where percolation does not occur, we analytically predict a power-law decay of the effective elastic constants for high crack densities, and confirm this result numerically
The response of a bond-diluted elastic network, when it is subjected to an external stress, is discu...
International audienceThe overall elastic moduli of a solid are changed when the solid is damaged by...
9 pages, 1 figureTo obtain the probability distribution of 2D crack patterns in mesoscopic regions o...
We derive a theory for the elastic characterization of multicracked solids based on a homogenization...
The effective properties of cracked solids are often expressed in terms of the crack density parame...
An accurate method which directly accounts for the interactions between different microcracks is use...
A physical model is developed to calculate the effective elastic moduli of a cracked solid medium un...
ABSTRACT In this paper, effective moduli of cracked solid material were investigated. An analytical ...
In brittle solids, stress concentration at crack tips makes the macroscopic fracture properties very...
International audienceThis study presents a new methodology for estimating the effective properties ...
We use asymptotic approximations for the elastic compliances (P, Q) of a spheroidal pore as input in...
We study the macroscopic mechanical behavior of materials with microscopic holes or hard inclusions....
International audienceTraditional computational approaches in simulating crack propagation in perfec...
A model study on fractured systems was performed using a concept that treats isotropic cracked syst...
AbstractThis paper addresses the problem of calculating effective elastic properties of a solid cont...
The response of a bond-diluted elastic network, when it is subjected to an external stress, is discu...
International audienceThe overall elastic moduli of a solid are changed when the solid is damaged by...
9 pages, 1 figureTo obtain the probability distribution of 2D crack patterns in mesoscopic regions o...
We derive a theory for the elastic characterization of multicracked solids based on a homogenization...
The effective properties of cracked solids are often expressed in terms of the crack density parame...
An accurate method which directly accounts for the interactions between different microcracks is use...
A physical model is developed to calculate the effective elastic moduli of a cracked solid medium un...
ABSTRACT In this paper, effective moduli of cracked solid material were investigated. An analytical ...
In brittle solids, stress concentration at crack tips makes the macroscopic fracture properties very...
International audienceThis study presents a new methodology for estimating the effective properties ...
We use asymptotic approximations for the elastic compliances (P, Q) of a spheroidal pore as input in...
We study the macroscopic mechanical behavior of materials with microscopic holes or hard inclusions....
International audienceTraditional computational approaches in simulating crack propagation in perfec...
A model study on fractured systems was performed using a concept that treats isotropic cracked syst...
AbstractThis paper addresses the problem of calculating effective elastic properties of a solid cont...
The response of a bond-diluted elastic network, when it is subjected to an external stress, is discu...
International audienceThe overall elastic moduli of a solid are changed when the solid is damaged by...
9 pages, 1 figureTo obtain the probability distribution of 2D crack patterns in mesoscopic regions o...