paper

Irreversibility and rate dependence in sheared adhesive suspensions

arXiv:2106.14341

Abstract

Recent experiments report that slowly-sheared noncolloidal particle suspensions can exhibit unexpected rate()-dependent complex viscosities in oscillatory shear, despite a constant relative viscosity in steady shear. Using a minimal hydrodynamic model, we show that a weak interparticle attraction reproduces this behavior. At volume fractions %, the complex viscosities in both experiments and simulations display power-law reductions in shear, with a -dependent exponent maximum at %, resulting from the interplay between hydrodynamic, collision and adhesive interactions. Furthermore, this rate dependence is accompanied by diverging particle diffusivities and pronounced cluster formations even at small oscillation amplitudes . Previous studies established that suspensions transition from reversible absorbing states to irreversible diffusing states when exceeds a -dependent critical value . Here, we show that a second transition to irreversibility occurs below an -dependent critical amplitude, , in the presence of weak attractions.

5 pages, 5 figures