We study the emergence of shear thickening in dense suspensions of non-Brownian particles. We combine local velocity and concentration measurements using magnetic resonance imaging with macroscopic rheometry experiments. In steady state, we observe that the material is heterogeneous, and we find that the local rheology presents a continuous transition at low shear rate from a viscous to a shear thickening, Bagnoldian, behavior with shear stresses proportional to the shear rate squared, as predicted by a scaling analysis. We show that the heterogeneity results from an unexpectedly fast migration of grains, which we attribute to the emergence of the Bagnoldian rheology. The migration process is observed to be accompanied by macroscopic transi...
Shear thickening, which corresponds to an increase of viscosity with shear rate, is ubiquitously obs...
Shear thickening, which corresponds to an increase of viscosity with shear rate, is ubiquitously obs...
International audienceThe flow of dry and wet granular media is investigated in a Couette geometry u...
We study the behavior of dense suspensions of non-Brownian particles. We combine macroscopic rheomet...
International audienceWe study the emergence of shear thickening in dense suspensions of non-Brownia...
International audienceWe study the emergence of shear thickening in dense suspensions of non-Brownia...
International audienceWe study the emergence of shear thickening in dense suspensions of non-Brownia...
Shear thickening is a type of non-Newtonian behavior in which the stress required to shear a fluid i...
Dense suspensions can exhibit an abrupt change in their viscosity in response to increasing shear ra...
Dense suspensions can exhibit an abrupt change in their viscosity in response to increasing shear ra...
We present an experimental study on the viscous to inertial mode of shear thickening in dense non-Br...
We study the rheology of cornstarch suspensions, a non-Brownian particle system that exhibits shear ...
The flow of dry and wet granular media is investigated in a Couette geometry using magnetic resonanc...
We experimentally investigate shear thickening in dense granular suspensions under oscillatory shear...
We present experimental results on dense corn-starch suspensions as examples of non-Brownian, nearly...
Shear thickening, which corresponds to an increase of viscosity with shear rate, is ubiquitously obs...
Shear thickening, which corresponds to an increase of viscosity with shear rate, is ubiquitously obs...
International audienceThe flow of dry and wet granular media is investigated in a Couette geometry u...
We study the behavior of dense suspensions of non-Brownian particles. We combine macroscopic rheomet...
International audienceWe study the emergence of shear thickening in dense suspensions of non-Brownia...
International audienceWe study the emergence of shear thickening in dense suspensions of non-Brownia...
International audienceWe study the emergence of shear thickening in dense suspensions of non-Brownia...
Shear thickening is a type of non-Newtonian behavior in which the stress required to shear a fluid i...
Dense suspensions can exhibit an abrupt change in their viscosity in response to increasing shear ra...
Dense suspensions can exhibit an abrupt change in their viscosity in response to increasing shear ra...
We present an experimental study on the viscous to inertial mode of shear thickening in dense non-Br...
We study the rheology of cornstarch suspensions, a non-Brownian particle system that exhibits shear ...
The flow of dry and wet granular media is investigated in a Couette geometry using magnetic resonanc...
We experimentally investigate shear thickening in dense granular suspensions under oscillatory shear...
We present experimental results on dense corn-starch suspensions as examples of non-Brownian, nearly...
Shear thickening, which corresponds to an increase of viscosity with shear rate, is ubiquitously obs...
Shear thickening, which corresponds to an increase of viscosity with shear rate, is ubiquitously obs...
International audienceThe flow of dry and wet granular media is investigated in a Couette geometry u...