When subjected to shear, granular suspensions exhibit normal stresses perpendicular to the shear plane but the magnitude and sign of the different components of the normal stresses are still under debate. By performing both oscillatory and rotational rheology measurements on shear thickening granular suspensions and systematically varying the particle diameters and the gap sizes between two parallel-plates, we show that a transition from a positive to a negative normal stress can be observed. We find that frictional interactions which determine the shear thickening behavior of suspensions contribute to the positive normal stresses. Increasing the particle diameters or decreasing the gap sizes leads to a growing importance of hydrodynamic in...
We study the behavior of dense suspensions of non-Brownian particles. We combine macroscopic rheomet...
In the first part of this talk we present a rheology law for granular suspensions based on the repre...
Dynamic particle-scale numerical simulations are used to study the variation of microstructure with ...
When subjected to shear, granular suspensions exhibit normal stresses perpendicular to the shear pla...
Shear thickening, which corresponds to an increase of viscosity with shear rate, is ubiquitously obs...
The presence and the microscopic origin of normal stress differences in dense suspensions under simp...
We present experimental measurements of the normal stresses in sheared Stokesian suspensions. Though...
We experimentally investigate shear thickening in dense granular suspensions under oscillatory shear...
We report the normal stresses in a non-Brownian suspension in plane Couette flow determined from Sto...
The rheology of dense suspensions in the viscous regime can be characterized by the viscous number J...
Granular materials whether dry or immersed in fluid show dilation or compaction depending upon the i...
Shear thickening is a type of non-Newtonian behavior in which the stress required to shear a fluid i...
Negative normal stress differences are reported here in capillary suspensions, i.e. particle suspens...
International audienceShear thickening in dense particulate suspensions was recently proposed to be ...
A consensus has emerged that a constraint to rotational or sliding motion of particles in dense susp...
We study the behavior of dense suspensions of non-Brownian particles. We combine macroscopic rheomet...
In the first part of this talk we present a rheology law for granular suspensions based on the repre...
Dynamic particle-scale numerical simulations are used to study the variation of microstructure with ...
When subjected to shear, granular suspensions exhibit normal stresses perpendicular to the shear pla...
Shear thickening, which corresponds to an increase of viscosity with shear rate, is ubiquitously obs...
The presence and the microscopic origin of normal stress differences in dense suspensions under simp...
We present experimental measurements of the normal stresses in sheared Stokesian suspensions. Though...
We experimentally investigate shear thickening in dense granular suspensions under oscillatory shear...
We report the normal stresses in a non-Brownian suspension in plane Couette flow determined from Sto...
The rheology of dense suspensions in the viscous regime can be characterized by the viscous number J...
Granular materials whether dry or immersed in fluid show dilation or compaction depending upon the i...
Shear thickening is a type of non-Newtonian behavior in which the stress required to shear a fluid i...
Negative normal stress differences are reported here in capillary suspensions, i.e. particle suspens...
International audienceShear thickening in dense particulate suspensions was recently proposed to be ...
A consensus has emerged that a constraint to rotational or sliding motion of particles in dense susp...
We study the behavior of dense suspensions of non-Brownian particles. We combine macroscopic rheomet...
In the first part of this talk we present a rheology law for granular suspensions based on the repre...
Dynamic particle-scale numerical simulations are used to study the variation of microstructure with ...