Influence of suspension viscosity on Brownian relaxation of filler particles

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Abstract

Brownian relaxation caused by Brownian movement of particles in suspensions can macroscopically be probed by small-amplitude oscillatory shear experiments. Phenomenological considerations suggest a direct proportionality between suspension viscosity and Brownian relaxation times. To verify this relation experimentally, a set of nanocomposite suspensions with viscosities varying over five decades is presented. The suspensions are chosen in a way to ensure that particle-particle interactions and average particle-particle distances are identical so that they can be used as a model system to study the mere influence of suspension viscosity on Brownian relaxation. The suggested linear relationship between suspension viscosity and Brownian relaxation time can be confirmed. Moreover, a verification of a recently introduced characteristic timescale for Brownian relaxation is presented.

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Dannert, R., Winter, H. H., Sanctuary, R., & Baller, J. (2017). Influence of suspension viscosity on Brownian relaxation of filler particles. Rheologica Acta, 56(7–8), 615–622. https://doi.org/10.1007/s00397-017-1019-y

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