We present an experimental study on the viscous to inertial mode of shear thickening in dense non-Brownian suspensions. We design a model suspension consisting of mono size spherical particles within a Newtonian suspending fluid. We develop a protocol for the rheological characterization of dense suspensions using the conventional rheometry technique. Our results provide constitutive laws for suspensions with solid volume fractions close to jamming when both viscous and inertial effects at the particle scale are present. We perform atomic force microscopy to measure forces between the particles immersed in the suspending fluid and show that our system of study corresponds to the frictionless regime of dense suspensions in which viscous and ...
We investigate in this article the macroscopic behavior of sheared suspensions of spherical particle...
Three-dimensional direct numerical simulations of dense suspensions of monodisperse spherical partic...
We study the emergence of shear thickening in dense suspensions of non-Brownian particles. We combin...
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...
We study the rheology of dense suspensions of non-Brownian repulsive particles. The suspensions cons...
The rheology of dense suspensions in the viscous regime can be characterized by the viscous number J...
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 study the behavior of dense suspensions of non-Brownian particles. We combine macroscopic rheomet...
We consider the steady shear flow of a homogeneous and dense assembly of hard spheres suspended in a...
We consider the steady shear flow of a homogeneous and dense assembly of hard spheres suspended in a...
We consider the steady shear flow of a homogeneous and dense assembly of hard spheres suspended in a...
Shear thickening is a type of non-Newtonian behavior in which the stress required to shear a fluid i...
International audienceGranular suspensions present a transition from a Newtonian rheology in the Sto...
We investigate in this article the macroscopic behavior of sheared suspensions of spherical particle...
Three-dimensional direct numerical simulations of dense suspensions of monodisperse spherical partic...
We study the emergence of shear thickening in dense suspensions of non-Brownian particles. We combin...
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...
We study the rheology of dense suspensions of non-Brownian repulsive particles. The suspensions cons...
The rheology of dense suspensions in the viscous regime can be characterized by the viscous number J...
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 study the behavior of dense suspensions of non-Brownian particles. We combine macroscopic rheomet...
We consider the steady shear flow of a homogeneous and dense assembly of hard spheres suspended in a...
We consider the steady shear flow of a homogeneous and dense assembly of hard spheres suspended in a...
We consider the steady shear flow of a homogeneous and dense assembly of hard spheres suspended in a...
Shear thickening is a type of non-Newtonian behavior in which the stress required to shear a fluid i...
International audienceGranular suspensions present a transition from a Newtonian rheology in the Sto...
We investigate in this article the macroscopic behavior of sheared suspensions of spherical particle...
Three-dimensional direct numerical simulations of dense suspensions of monodisperse spherical partic...
We study the emergence of shear thickening in dense suspensions of non-Brownian particles. We combin...