Linear viscoelastic properties of emulsions and suspensions with thermodynamic and hydrodynamic interactions |
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Authors: | Sylvie Dagréou Ahmed Allal Gérard Marin Bruno Mendiboure |
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Affiliation: | Laboratoire de Physique des Matériaux Industriels, Université de Pau et des Pays de l'Adour, BP 1155, 64013 PAU Cedex, France, Laboratoire des Fluides Complexes, Université de Pau et des Pays de l'Adour, BP 1155, 64013 PAU Cedex, France,
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Abstract: | We present a new approach to describe the rheological properties of dispersions with non-hydrodynamic interactions (steric, electrostatic and Van der Waals interactions) in the linear viscoelastic domain. Our model is based on the calculation of additional stresses resulting from interaction potentials between spheres and Brownian motion. We start from the statistical mechanical approaches which have been developed by Batchelor and Green and later Lionberger and Russel, to model the viscoelastic properties of emulsions and suspensions. We have extended their calculations to the more general case of viscoelastic deformable inclusions in a viscoelastic matrix. Our contribution lies in the computation of the hydrodynamic functions involved in the term describing interaction stresses. This computation is based on Palierne's results on the deformation field around a viscoelastic inclusion embedded in a viscoelastic matrix. We have also rewritten the conservation equation in the case of interest, over the whole frequency domain. We finally express the complex shear modulus of the dispersion as the sum of two terms : Palierne's complex shear modulus gives the purely hydrodynamic contribution; the interaction contribution depends on both the hydrodynamic properties and the interaction potential. |
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