Origin of the slow linear viscoelastic response of aqueous foams
Sylvie Cohen-Addad1, Reinhard Höhler, Yacine Khidas
1L.P.M.D.I./U.M.R. 8108, C.N.R.S., Université de Marne-la-Vallée, 5 Boulevard Descartes, 77454 Marne-la-Vallée, France. sylvie.cohen-addad@univ-mlv.fr
Abstract:
We have studied the slow linear viscoelastic response of wet aqueous foams by macroscopic creep compliance measurements, combined to a diffusing-wave spectroscopy investigation of the local dynamics. The data strongly suggest that this rheological response arises from two distinct relaxation mechanisms: The first is due to the coarsening induced bubble rearrangements and governs the steady-state creep; the second results from the interplay between surface tension and surface viscosity of the gas-liquid interfaces and gives rise to a transient relaxation.
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