We perform molecular dynamic simulations of frictional non-thermal particles driven by an externally applied shear stress. After the system jams following a transient flow, we probe its mechanical response in order to clarify whether the resulting solid is ‘fragile’.We find the system to respond elastically and isotropically to small perturbations of the shear stress, suggesting absence of fragility. These results are interpreted in terms of the energy landscape of dissipative systems. For the same values of the control parameters, we check the behaviour of the system during a stress cycle. Increasing the maximum stress value, a crossover from a visco-elastic to a plastic regime is observed
Plastic deformation is an irreversible change in form, occurring when a material internally reconfig...
Classical molecular dynamics has been applied to investigations into elastic-plastic properties of s...
The mechanical properties of granular media are investigated using large-scale computer simulations....
We perform molecular dynamic simulations of frictional non-thermal particles driven by an externall...
We perform molecular dynamic simulations of frictional non-thermal particles driven by an externall...
Abst rac t We present simple models of particulate materials whose mechanical integrity arises from ...
Solids are distinguished from fluids by their ability to resist shear. In equilibrium systems, the r...
In a recent paper (Zhao et al., Phys Rev X, 2022, 12: 031,021), we reported experimental observation...
The shear response of soft solids can be modeled with linear elasticity, provided the forcing is slo...
In contrast to continuum systems where localization or shear banding arises through a bifurcation in...
In a recent paper (Zhao et al., Phys Rev X, 2022, 12: 031,021), we reported experimental observation...
This work focuses on the properties of sheared granular materials near the jamming transition. The p...
Granular systems are not always homogeneous and can be composed of grains with very different mechani...
This paper describes a series of experiments that probe the behavior of dense granular materials. We...
International audienceThe Jamming transition can be seen as a general phenomenon occurring whenever ...
Plastic deformation is an irreversible change in form, occurring when a material internally reconfig...
Classical molecular dynamics has been applied to investigations into elastic-plastic properties of s...
The mechanical properties of granular media are investigated using large-scale computer simulations....
We perform molecular dynamic simulations of frictional non-thermal particles driven by an externall...
We perform molecular dynamic simulations of frictional non-thermal particles driven by an externall...
Abst rac t We present simple models of particulate materials whose mechanical integrity arises from ...
Solids are distinguished from fluids by their ability to resist shear. In equilibrium systems, the r...
In a recent paper (Zhao et al., Phys Rev X, 2022, 12: 031,021), we reported experimental observation...
The shear response of soft solids can be modeled with linear elasticity, provided the forcing is slo...
In contrast to continuum systems where localization or shear banding arises through a bifurcation in...
In a recent paper (Zhao et al., Phys Rev X, 2022, 12: 031,021), we reported experimental observation...
This work focuses on the properties of sheared granular materials near the jamming transition. The p...
Granular systems are not always homogeneous and can be composed of grains with very different mechani...
This paper describes a series of experiments that probe the behavior of dense granular materials. We...
International audienceThe Jamming transition can be seen as a general phenomenon occurring whenever ...
Plastic deformation is an irreversible change in form, occurring when a material internally reconfig...
Classical molecular dynamics has been applied to investigations into elastic-plastic properties of s...
The mechanical properties of granular media are investigated using large-scale computer simulations....