Issue 42, 2018

Orthogonal superposition rheometry of colloidal gels: time-shear rate superposition

Abstract

We explore the relaxation behavior of model colloidal gels under steady shear flow by means of orthogonal superposition rheometry. Fumed silica and carbon black dispersions in Newtonian matrices are used as a model system. As shear rate increases, the frequency dependent orthogonal moduli of the gels shift along the frequency axis without changing their shape, which finally can be superimposed to yield a single master curve. This indicates that the shear rate tunes a master clock for overall relaxation modes in the sheared colloidal gels to produce a “time-shear rate superposition (TSS)”, as temperature does in polymeric liquids to produce a time-temperature superposition (TTS). The horizontal shift factor required at each shear rate to obtain the master curve is found to be directly proportional to the suspension viscosity for all the cases. From this result, we suggest that the suspension viscosity determines the overall relaxation time of the particles in the flowing colloidal gel.

Graphical abstract: Orthogonal superposition rheometry of colloidal gels: time-shear rate superposition

Supplementary files

Article information

Article type
Paper
Submitted
24 Jul 2018
Accepted
10 Oct 2018
First published
10 Oct 2018

Soft Matter, 2018,14, 8651-8659

Orthogonal superposition rheometry of colloidal gels: time-shear rate superposition

S. H. Sung, S. Kim, J. Hendricks, C. Clasen and K. H. Ahn, Soft Matter, 2018, 14, 8651 DOI: 10.1039/C8SM01512K

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