Rheology of colloidal and metallic glass formers

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Abstract

Colloidal hard-sphere suspensions are convenient experimental models to understand soft matter, and also by analogy the structural-relaxation behavior of atomic or small-molecular fluids. We discuss this analogy for the flow and deformation behavior close to the glass transition. Based on a mapping of temperature to effective hard-sphere packing, the stress–strain curves of typical bulk metallic glass formers can be quantitatively compared with those of hard-sphere suspensions. Experiments on colloids give access to the microscopic structure under deformation on a single-particle level, providing insight into the yielding mechanisms that are likely also relevant for metallic glasses. We discuss the influence of higher-order angular signals in connection with non-affine particle rearrangements close to yielding. The results are qualitatively explained on the basis of the mode-coupling theory. We further illustrate the analogy of pre-strain dependence of the linear-elastic moduli using data on PS-PNiPAM suspensions.

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Voigtmann, T., Siebenbürger, M., Amann, C. P., Egelhaaf, S. U., Fritschi, S., Krüger, M., … Samwer, K. H. (2020). Rheology of colloidal and metallic glass formers. Colloid and Polymer Science, 298(7), 681–696. https://doi.org/10.1007/s00396-020-04654-z

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