Publication | Closed Access
Laponite: Aging and Shear Rejuvenation of a Colloidal Glass
198
Citations
23
References
2002
Year
Materials ScienceColloidal GlassRheological Constitutive EquationRheological MeasurementEngineeringMicroscopic Particle DynamicsPhysicsGlass-forming LiquidFluid MechanicsRheological PropertyNonlinear Rheological BehaviorGlass MaterialColloidal PropertyRheologySoft MatterBiophysics
We study the nonlinear rheological behavior and the microscopic particle dynamics for a colloidal glass, to see whether recently developed models for driven glassy systems can be applied to predict the rheology. Qualitatively, all the findings predicted by the models can be retrieved in our system. Notably, the viscosity decreases strongly with the shear rate. Since it is difficult to predict non-Newtonian viscosities of colloidal systems due to long-ranged hydrodynamic interactions, this shows the promise of this approach for predicting flow behavior. In addition, the measurements allow us to relate the microscopic diffusion dynamics to the macroscopic viscosity of the system.
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