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Published in: Rheologica Acta 3/2009

01-04-2009 | Original Contribution

Flow and mass transport in blends of immiscible viscoelastic polymers

Authors: Ali El Afif, Mohamed El Omari

Published in: Rheologica Acta | Issue 3/2009

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Abstract

The purpose of this paper is to derive a nonlinear 3D model that investigates, on two levels of description, the flow–diffusion–structure interaction occurring in mixtures consisting of a Newtonian fluid and a blend of immiscible viscoelastic polymers embedding an interface. The internal structure is characterized on the kinetic level of description by two distribution functions and on the mesoscopic level by a scalar and two symmetric second-order tensors. The morphology of the interface and the conformation of the macromolecules are found to be strongly dependent on the flow and diffusion. In return, the behavior of the flow and mass transport are shown to be influenced by the deformation of the internal structure. In the absence of flow, the behavior of diffusion is examined in more detail, and the occurrence of Non-Fickian mass transport is discussed. The dimensionless form of the governing equations includes three Deborah numbers and three coupling constants. The nature of propagation of both nonlinear hyperbolic and linear dispersive waves is examined and explicit formulas for the characteristic speed, phase velocity, and attenuation are provided. The stability conditions determine the range of validity of the kinetic coefficients involved in the model equations.

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Metadata
Title
Flow and mass transport in blends of immiscible viscoelastic polymers
Authors
Ali El Afif
Mohamed El Omari
Publication date
01-04-2009
Publisher
Springer-Verlag
Published in
Rheologica Acta / Issue 3/2009
Print ISSN: 0035-4511
Electronic ISSN: 1435-1528
DOI
https://doi.org/10.1007/s00397-008-0311-2

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