International audienceWe use the lattice element method to investigate stress fields at the sub-particle scale in granular solids composed of particles embedded in a cementing matrix. The stress distributions are found to be similar in 2D and 3D samples subjected to vertical loading with free lateral boundaries. We find that the number of strong forces falls off exponentially at high particle volume fractions where a percolating network of jammed particles occurs. The influence of the matrix volume fraction and particle/matrix stiffness ratio with respect to stress distribution is analyzed in 2D and 3D. We show that both decreasing the matrix volume fraction and increasing the stiffness ratio lead to increasingly broader distributions withi...
International audienceWe analyze stress distributions in a two-dimensional bidisperse cemented granu...
This study systematically explores the effect of the shape of the particle size distribution on stre...
We rely on 3D simulations based on the Lattice Element Method (LEM) to analyze the failure of porous...
International audienceWe use the lattice element method to investigate stress fields at the sub-part...
International audienceWe use the lattice element method to investigate stress fields at the sub-part...
International audienceWe use the lattice element method to investigate stress fields at the sub-part...
International audienceWe use the lattice element method to investigate stress fields at the sub-part...
We use the lattice element method to investigate stress fields at the sub-particle scale in granular...
International audienceWe rely on the lattice element method to simulate and analyze the stress field...
We analyze stress transmission in granular media involving an interstitial cementing matrix of varia...
International audienceWe rely on the lattice element method to simulate and analyze the stress field...
International audienceWe rely on the lattice element method to simulate and analyze the stress field...
Cemented granular materials (CGMs) consist of densely packed solid particles and a pore-filling soli...
Cemented granular materials (CGMs) consist of densely packed solid particles and a pore-filling soli...
International audienceWe analyze stress distributions in a two-dimensional bidisperse cemented granu...
International audienceWe analyze stress distributions in a two-dimensional bidisperse cemented granu...
This study systematically explores the effect of the shape of the particle size distribution on stre...
We rely on 3D simulations based on the Lattice Element Method (LEM) to analyze the failure of porous...
International audienceWe use the lattice element method to investigate stress fields at the sub-part...
International audienceWe use the lattice element method to investigate stress fields at the sub-part...
International audienceWe use the lattice element method to investigate stress fields at the sub-part...
International audienceWe use the lattice element method to investigate stress fields at the sub-part...
We use the lattice element method to investigate stress fields at the sub-particle scale in granular...
International audienceWe rely on the lattice element method to simulate and analyze the stress field...
We analyze stress transmission in granular media involving an interstitial cementing matrix of varia...
International audienceWe rely on the lattice element method to simulate and analyze the stress field...
International audienceWe rely on the lattice element method to simulate and analyze the stress field...
Cemented granular materials (CGMs) consist of densely packed solid particles and a pore-filling soli...
Cemented granular materials (CGMs) consist of densely packed solid particles and a pore-filling soli...
International audienceWe analyze stress distributions in a two-dimensional bidisperse cemented granu...
International audienceWe analyze stress distributions in a two-dimensional bidisperse cemented granu...
This study systematically explores the effect of the shape of the particle size distribution on stre...
We rely on 3D simulations based on the Lattice Element Method (LEM) to analyze the failure of porous...