Viscous forces and bulk viscoelasticity near jamming

Journal Article (2017)
Author(s)

Karsten Baumgarten (TU Delft - Engineering Thermodynamics)

Brian Tighe (TU Delft - Engineering Thermodynamics)

Research Group
Engineering Thermodynamics
Copyright
© 2017 K. Baumgarten, B.P. Tighe
DOI related publication
https://doi.org/10.1039/C7SM01619K
More Info
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Publication Year
2017
Language
English
Copyright
© 2017 K. Baumgarten, B.P. Tighe
Research Group
Engineering Thermodynamics
Issue number
45
Volume number
13
Pages (from-to)
8368-8378
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Abstract

When weakly jammed packings of soft, viscous, non-Brownian spheres are probed mechanically, they respond with a complex admixture of elastic and viscous effects. While many of these effects are understood for specific, approximate models of the particles' interactions, there are a number of proposed force laws in the literature, especially for viscous interactions. We numerically measure the complex shear modulus G* of jammed packings for various viscous force laws that damp relative velocities between pairs of contacting particles or between a particle and the continuous fluid phase. We find a surprising sensitive dependence of G* on the viscous force law: the system may or may not display dynamic critical scaling, and the exponents describing how G* scales with frequency can change. We show that this sensitivity is closely linked to manner in which viscous damping couples to floppy-like, non-affine motion, which is prominent near jamming.