Related Experiment Video
Updated: May 23, 2026

Challenges in Rheological Characterization of Highly Concentrated Suspensions — A Case Study for Screen-printing Silver Pastes
Published on: April 10, 2017
Bridging the rheology of granular flows in three regimes
Sebastian Chialvo1, Jin Sun, Sankaran Sundaresan
1Chemical and Biological Engineering Department, Princeton University, Princeton, New Jersey 08540, USA.
Abstract:
We investigate the rheology of granular materials via molecular dynamics simulations of homogeneous, simple shear flows of soft, frictional, noncohesive spheres. In agreement with previous results for frictionless particles, we observe three flow regimes existing in different domains of particle volume fraction and shear rate, with all stress data collapsing upon scaling by powers of the distance to the jamming point. Though this jamming point is a function of the interparticle friction coefficient, the relation between pressure and strain rate at this point is found to be independent of friction. We also propose a rheological model that blends the asymptotic relations in each regime to obtain a general description for these flows. Finally, we show that departure from inertial number scalings is a direct result of particle softness, with a dimensionless shear rate characterizing the transition.
Related Concept Videos
Steady, Laminar Flow Between Parallel Plates
Types of Fluids
In contrast, non-Newtonian fluids do not follow Newton's law of viscosity, and their...
Colloids and Suspensions
Viscosity of Fluid
Laminar and Turbulent Flow
Rapidly Varying Flow

