Hydrodynamic and contact contributions to shear thickening in colloidal suspensions
Soft Condensed Matter
2015-12-02 v1 Fluid Dynamics
Abstract
Shear thickening is a widespread phenomenon in suspension flow that, despite sustained study, is still the subject of much debate. The longstanding view that shear thickening is due to hydrodynamic clusters has been challenged by recent theory and simulations suggesting that contact forces dominate, not only in discontinuous, but also in continuous shear thickening. Here, we settle this dispute using shear reversal experiments on micron-sized silica and latex colloidal particles to measure directly the hydrodynamic and contact force contributions to shear thickening. We find that contact forces dominate even continuous shear thickening. Computer simulations show that these forces most likely arise from frictional interactions.
Keywords
Cite
@article{arxiv.1509.02750,
title = {Hydrodynamic and contact contributions to shear thickening in colloidal suspensions},
author = {Neil Y. C. Lin and Ben M. Guy and Michiel Hermes and Chris Ness and Jin Sun and Wilson C. K. Poon and Itai Cohen},
journal= {arXiv preprint arXiv:1509.02750},
year = {2015}
}