We use a two-dimensional model of polygonal particles to investigate granular ratcheting. Ratcheting is a long-term response of granular materials under cyclic loading, where the same amount of permanent deformation is accumulated after each cycle. We report on ratcheting for low frequencies and extremely small loading amplitudes. The evolution of the sub-network of sliding contacts allows us to understand the micromechanics of ratcheting. We show that the contact network evolves almost periodically under cyclic loading as the sub-network of the sliding contacts reaches different stages of anisotropy in each cycle. Sliding contacts lead to a monotonic accumulation of permanent deformation per cycle in each particle. The distribution of thes...
In this paper, we explore numerically the effect of particle shape on the mechanical behavior of she...
summary:The main aim of this paper is to analyze numerically the model behaviour of a granular mater...
Plastic deformation of granular materials is investigated from the micromechanical viewpoint, in whi...
The existence of granular ratcheting as a long-time behavior in granular materials is still under di...
We investigate the quasistatic mechanical response of soils under cyclic loading using a discrete mo...
International audienceNumerical simulations of assemblies of grains under cyclic loading exhibit "gr...
The existence of a very special ratcheting regime has recently been reported in a granular packing s...
In this work we studied the effect of cyclic loading on a granular packing by means of numerical sim...
Several relevant geotechnical works, such as railway and road embankments, offshore foundations and ...
The mechanical response of grains under quasi-static cyclic loading is studied by means of a threedi...
The ratcheting in a granular soil is an accumulation of irreversible strain under cyclic loading. Th...
It has been contemplated for a long time that dense granular materials flow in a stick-slip manner, ...
The main objective of the present work is to numerically test the performance of a micromechanical m...
International audienceBy means of extensive contact dynamics simulations, we investigate the mechani...
Ratchets are simple mechanical devices which combine spatial asymmetry and nonequilibrium to produce...
In this paper, we explore numerically the effect of particle shape on the mechanical behavior of she...
summary:The main aim of this paper is to analyze numerically the model behaviour of a granular mater...
Plastic deformation of granular materials is investigated from the micromechanical viewpoint, in whi...
The existence of granular ratcheting as a long-time behavior in granular materials is still under di...
We investigate the quasistatic mechanical response of soils under cyclic loading using a discrete mo...
International audienceNumerical simulations of assemblies of grains under cyclic loading exhibit "gr...
The existence of a very special ratcheting regime has recently been reported in a granular packing s...
In this work we studied the effect of cyclic loading on a granular packing by means of numerical sim...
Several relevant geotechnical works, such as railway and road embankments, offshore foundations and ...
The mechanical response of grains under quasi-static cyclic loading is studied by means of a threedi...
The ratcheting in a granular soil is an accumulation of irreversible strain under cyclic loading. Th...
It has been contemplated for a long time that dense granular materials flow in a stick-slip manner, ...
The main objective of the present work is to numerically test the performance of a micromechanical m...
International audienceBy means of extensive contact dynamics simulations, we investigate the mechani...
Ratchets are simple mechanical devices which combine spatial asymmetry and nonequilibrium to produce...
In this paper, we explore numerically the effect of particle shape on the mechanical behavior of she...
summary:The main aim of this paper is to analyze numerically the model behaviour of a granular mater...
Plastic deformation of granular materials is investigated from the micromechanical viewpoint, in whi...