Wet granular aggregates are common precursors of construction materials, food, and health care products. The physical mechanisms involved in the mixing of dry grains with a wet substrate are not well understood and difficult to control. Here, we study experimentally the accretion of dry grains on a wet granular substrate by measuring the growth dynamics of the wet aggregate. We show that this aggregate is fully saturated and its cohesion is ensured by the capillary depression at the air-liquid interface. The growth dynamics is controlled by the liquid fraction at the surface of the aggregate and exhibits two regimes. In the viscous regime, the growth dynamics is limited by the capillary-driven flow of liquid through the granular packing to ...
Dry sand turns into a stiff and moldable material as soon as it is mixed with some liquid. This is a...
Granular media, dry and wet, are ubiquitous in natural environment and industry. However, how to mix...
Multi-phase flows encountered in nature or in industry, exhibit non trivial rheological properties, ...
Wet granular aggregates are common precursors of construction materials, food, and health care produ...
International audienceWet granular aggregates are common precursors of construction materials, food,...
International audienceWet high-shear granulation consists in vigorously mixing grains and a liquid b...
Wet granulation processes can be driven from low to high water content. In this study, we consider t...
Wet granulation processes can be driven from low to high water content. In this study, we consider t...
Wet granulation processes can be driven from low to high water content. In this study, we consider t...
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...
We use particle dynamics simulations to investigate the evolution of a wet agglomerate inside homoge...
International audienceWe use particle dynamics simulations to investigate the evolution of a wet agg...
Dry sand turns into a stiff and moldable material as soon as it is mixed with some liquid. This is a...
Granular media, dry and wet, are ubiquitous in natural environment and industry. However, how to mix...
Multi-phase flows encountered in nature or in industry, exhibit non trivial rheological properties, ...
Wet granular aggregates are common precursors of construction materials, food, and health care produ...
International audienceWet granular aggregates are common precursors of construction materials, food,...
International audienceWet high-shear granulation consists in vigorously mixing grains and a liquid b...
Wet granulation processes can be driven from low to high water content. In this study, we consider t...
Wet granulation processes can be driven from low to high water content. In this study, we consider t...
Wet granulation processes can be driven from low to high water content. In this study, we consider t...
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...
We use particle dynamics simulations to investigate the evolution of a wet agglomerate inside homoge...
International audienceWe use particle dynamics simulations to investigate the evolution of a wet agg...
Dry sand turns into a stiff and moldable material as soon as it is mixed with some liquid. This is a...
Granular media, dry and wet, are ubiquitous in natural environment and industry. However, how to mix...
Multi-phase flows encountered in nature or in industry, exhibit non trivial rheological properties, ...