Please use this identifier to cite or link to this item: https://hdl.handle.net/20.500.14279/15787
Title: Tumbling-snake model for polymeric liquids subjected to biaxial elongational flows with a focus on planar elongation
Authors: Stephanou, Pavlos S. 
Kröger, Martin 
Major Field of Science: Engineering and Technology
Field Category: Chemical Engineering
Keywords: Biaxial flow;Entanglements;Link tension coefficient;Polymer melt;Stochastic differential equation
Issue Date: 16-Mar-2018
Source: Polymers, 2018, vol. 10, no. 3
Volume: 10
Issue: 3
Journal: Polymers 
Abstract: We have recently solved the tumbling-snake model for concentrated polymer solutions and entangled melts in the presence of both steady-state and transient shear and uniaxial elongational flows, supplemented by a variable link tension coefficient. Here, we provide the transient and stationary solutions of the tumbling-snake model under biaxial elongation both analytically, for small and large elongation rates, and via Brownian dynamics simulations, for the case of planar elongational flow over a wide range of rates, times, and the model parameters. We show that both the steady-state and transient first planar viscosity predictions are similar to their uniaxial counterparts, in accord with recent experimental data. The second planar viscosity seems to behave in all aspects similarly to the shear viscosity, if shear rate is replaced by elongation rate.
URI: https://hdl.handle.net/20.500.14279/15787
ISSN: 20734360
DOI: 10.3390/polym10030329
Rights: © by the authors
Type: Article
Affiliation : University of Cyprus 
Polymer Physics 
Cyprus University of Technology 
Publication Type: Peer Reviewed
Appears in Collections:Άρθρα/Articles

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