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Rheology of dense granular suspensions under extensional flow

1 Pith paper cite this work. Polarity classification is still indexing.

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abstract

We study granular suspensions under a variety of extensional deformations and simple shear using numerical simulations. The viscosity and Trouton's ratio (the ratio of extensional to shear viscosity) are computed as functions of solids volume fraction $\phi$ close to the limit of zero inertia. Suspensions of frictionless particles follow a Newtonian Trouton's ratio for $\phi$ all the way up to $\phi_0$, a universal jamming point that is independent of deformation type. In contrast, frictional particles lead to a deformation-type-dependent jamming fraction $\phi_m$, which is largest for shear flows. Trouton's ratio consequently starts off Newtonian but diverges as $\phi\to\phi_m$. We explain this discrepancy in suspensions of frictional particles by considering the particle arrangements at jamming. While frictionless particle suspensions have a nearly isotropic microstructure at jamming, friction permits more anisotropic contact chains that allow jamming at lower $\phi$ but introduce protocol dependence. Finally, we provide evidence that viscous number rheology can be extended from shear to extensional deformations, with a particularly successful collapse for frictionless particles. Extensional deformations are an important class of rheometric flow in suspensions, relevant to paste processing, granulation and high performance materials.

years

2019 1

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CONDITIONAL 1

representative citing papers

On the effect of coalescence on the rheology of emulsions

physics.flu-dyn · 2019-08-22 · conditional · novelty 6.0

Using volume-of-fluid simulations with and without a collision-suppression force, the authors show that droplet coalescence is responsible for the negative curvature of the emulsion viscosity curve and that suppressing coalescence makes emulsions behave like suspensions of deformable particles.

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  • On the effect of coalescence on the rheology of emulsions physics.flu-dyn · 2019-08-22 · conditional · none · ref 13 · internal anchor

    Using volume-of-fluid simulations with and without a collision-suppression force, the authors show that droplet coalescence is responsible for the negative curvature of the emulsion viscosity curve and that suppressing coalescence makes emulsions behave like suspensions of deformable particles.