Discontinuous Shear Thickening with Suspensions of Magnetic Particles

Author:

Bossis G.1,Volkova O.1,Dobler M.1,Grasselli Y.12,Ciffreo A.1

Affiliation:

1. Institute of Physics of Nice Côte d'Azur University, CNRS, UMR710, Parc Valrose 06108 Nice France Bossis@unice.fr

2. SKEMA BBA 60 rue Dostoievski CS30085 06902 Sophia Antipolis France

Abstract

Discontinuous shear thickening (DST) is usually found in very concentrated suspensions of solid particles and is characterized by a sudden jump in stress during a ramp of shear rate. We have investigated this transition in suspension of magnetic particles with the idea of monitoring the critical shear rate with the help of a magnetic field. Furthermore, the use of conductive particles allows one to relate the conductivity of the suspension to the setup of a network of contacts between particles during this transition. We shall compare our experimental rheograms to the prediction of the standard model, and we shall show how the instability observed above a critical stress can be related to the inertia of the rotating tool. Last, we shall present results related to applications in the domain of the control of forces with a magnetic field and emphasize the fact that the control of the DST allows to improve the efficiency of the devices by more than order of magnitude.

Publisher

The Royal Society of Chemistry

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