4.7 Article

Complex viscous behaviour of a hydrophilic fumed silica suspension: Temperature and particle concentration influence

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JOURNAL OF MOLECULAR LIQUIDS
卷 359, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.molliq.2022.119349

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Fumed silica suspensions; Shear-thickening; Intrinsic viscosity; Activation energy for the viscous flow; Hydroclusters

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This study investigates the influence of temperature and solid concentration on the stress-induced shear-thickening behavior of A200PPG400 suspension, and proposes a more detailed description of the shear-thickening mechanism based on the analysis of intrinsic viscosity and activation energy for the viscous flow.
Shear-thickening (ST) is a non-Newtonian viscous behaviour characterized by the increase of the steady viscosity by shearing. It is well known that applied stress better than shear rate is the source of fluid inner microstructure changes which lead to non-Newtonian behaviours. Therefore, the influence of temperature and solid concentration on the stress-induced complex steady viscous behaviour shown by a hydrophilic fumed silica suspension (A200PPG400) has been studied. Previous works have demonstrated that hydroclusters model is the appropriate approach justifying the ST behaviour of A200PPG400 suspensions. In this work, more detailed description of this ST mechanism has been proposed based upon the analysis of intrinsic viscosity and activation energy for the viscous flow experimental data. (C) 2022 Published by Elsevier B.V.

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