Giant fluctuations in the flow of fluidised soft glassy materials: an elasto-plastic modelling approach

Author:

Goff Magali LeORCID,Bertin EricORCID,Martens KirstenORCID

Abstract

Abstract In this work we study the effect of an additional mechanical noise on the rheological features of yield stress materials that exhibit non-homogeneous steady flows. Using a mesoscale elasto-plastic model accounting for a viscosity bifurcation in the flow response to an external shear stress, we find that additional sources of noise can lead to a fluidisation effect. As we increase the noise intensity we evidence a transition from a non-monotonic to a monotonic rheology, associated with giant fluctuations of the macroscopic shear rate and long-time correlated dynamics. Although distinct noise models can lead to different rheological behaviours in the low stress regime, we show that the noise-induced transition from shear-localised to homogeneous flow at higher stresses appears very generic. The observed dynamical features can be interpreted as a result of an out-of-equilibrium phase transition, for which we estimate the critical exponents that appear to be independent of the specific choice of the noise implementation for the microscopic dynamics.

Funder

Agence Nationale de la Recherche

Indo-French Centre for the Promotion of Advanced Research

Rhone Alpes Region

Publisher

IOP Publishing

Subject

Condensed Matter Physics,General Materials Science,Atomic and Molecular Physics, and Optics

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