Friction-induced Shear thickening: a microscopic perspective
arXiv:1606.06038 · doi:10.1209/0295-5075/115/54006
Abstract
We develop a microscopic picture of shear thickening in dense suspensions which emphasizes the role of frictional forces, coupling rotational and translational degrees of freedom. Simulations with contact forces and viscous drag only, reveal pronounced shear thickening with a simultaneous increase in contact number and energy dissipation by frictional forces. At high densities, when the translational motion is severely constrained, we observe liquid-like gear-states with pronounced relative rotations of the particles coexisting with solid-like regions which rotate as a whole. The latter are stabilised by frustrated loops which become more numerous and persistent with increasing pressure, giving rise to an increasing lengthscale of this mosaique-like structure and a corresponding increase in viscosity.
7 pages, 12 figures, accepted in EPL
References in corpus (7)
- Shear thickening of cornstarch suspensions as a re-entrant jamming transition
- Internal states of model isotropic granular packings. I. Assembling process, geometry and contact networks
- Effect of rolling on dissipation in fault gouge
- Macroscopic Discontinuous Shear Thickening vs Local Shear Jamming in Cornstarch
- Non-monotonic flow curves of shear thickening suspensions
- Long Range Correlations in Granular Shear Flow I: Numerical Evidence
- Shear induced rigidity in athermal materials: a unified statistical framework
Cited by in corpus (7)
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- Shear banding, discontinuous shear thickening, and rheological phase transitions in athermally sheared frictionless disks
- Unsteady flow, clusters and bands in a model shear-thickening fluid
- Discontinuous shear-thinning in adhesive dispersions
- Molecular origin of driving-dependent friction in fluids
- Unifying Suspension and Granular flows near Jamming
- Relaxation dynamics and long-time tails explain shear-induced diffusion of soft athermal particles near jamming