We use particle dynamics simulations to investigate the evolution of a wet agglomerate inside homogeneous shear flows of dry particles. The agglomerate is modeled by introducing approximate analytical expressions of capillary and viscous forces between particles in addition to frictional contacts. During shear flow, the agglomerate may elongate, break, or be eroded by loss of its capillary bonds and primary particles. By systematically varying the shear rate and surface tension of the binding liquid, we characterize the rates of these dispersion modes. All the rates increase with increasing inertial number of the flow and decreasing cohesion index of the agglomerate. We show that the data points for each mode collapse on a master curve for ...
International audienceUsing particle dynamics simulations, we investigate the strength and microstru...
International audienceWe analyze the strength of agglomerates of wet frictional particles subjected ...
Cohesive inter-particle forces strongly affect the internal flow structures of granular media and po...
International audienceWe use particle dynamics simulations to investigate the evolution of a wet agg...
International audienceIn order to get insight into the wet agglomeration process, we numerically inv...
International audienceIn order to get insight into the wet agglomeration process, we numerically inv...
International audienceIn order to get insight into the wet agglomeration process, we numerically inv...
International audienceIn order to get insight into the wet agglomeration process, we numerically inv...
International audienceWe study the effects of material parameters on the plastic properties and text...
We investigate the mechanical behavior of wet granular agglomerates composed of spherical particles ...
We investigate the mechanical behavior of wet granular agglomerates composed of spherical particles ...
We investigate the mechanical behavior of wet granular agglomerates composed of spherical particles ...
Using particle dynamics simulations, we investigate the strength and microstructure of agglomerates ...
We investigate the mechanical behavior of wet granular agglomerates composed of spherical particles ...
We investigate the mechanical behavior of wet granular agglomerates composed of spherical particles ...
International audienceUsing particle dynamics simulations, we investigate the strength and microstru...
International audienceWe analyze the strength of agglomerates of wet frictional particles subjected ...
Cohesive inter-particle forces strongly affect the internal flow structures of granular media and po...
International audienceWe use particle dynamics simulations to investigate the evolution of a wet agg...
International audienceIn order to get insight into the wet agglomeration process, we numerically inv...
International audienceIn order to get insight into the wet agglomeration process, we numerically inv...
International audienceIn order to get insight into the wet agglomeration process, we numerically inv...
International audienceIn order to get insight into the wet agglomeration process, we numerically inv...
International audienceWe study the effects of material parameters on the plastic properties and text...
We investigate the mechanical behavior of wet granular agglomerates composed of spherical particles ...
We investigate the mechanical behavior of wet granular agglomerates composed of spherical particles ...
We investigate the mechanical behavior of wet granular agglomerates composed of spherical particles ...
Using particle dynamics simulations, we investigate the strength and microstructure of agglomerates ...
We investigate the mechanical behavior of wet granular agglomerates composed of spherical particles ...
We investigate the mechanical behavior of wet granular agglomerates composed of spherical particles ...
International audienceUsing particle dynamics simulations, we investigate the strength and microstru...
International audienceWe analyze the strength of agglomerates of wet frictional particles subjected ...
Cohesive inter-particle forces strongly affect the internal flow structures of granular media and po...