Viscoelasticity of reversibly crosslinked networks of semiflexible polymers

Jan Plagge, Andreas Fischer, and Claus Heussinger
Phys. Rev. E 93, 062502 – Published 27 June 2016

Abstract

We present a theoretical framework for the linear and nonlinear viscoelastic properties of reversibly crosslinked networks of semiflexible polymers. In contrast to affine models where network strain couples to the polymer end-to-end distance, in our model strain rather serves to locally distort the network structure. This induces bending modes in the polymer filaments, the properties of which are slaved to the surrounding network structure. Specifically, we investigate the frequency-dependent linear rheology, in particular in combination with crosslink binding-unbinding processes. We also develop schematic extensions to describe the nonlinear response during creep measurements as well as during constant strain-rate ramps.

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  • Received 12 February 2016
  • Revised 3 June 2016

DOI:https://doi.org/10.1103/PhysRevE.93.062502

©2016 American Physical Society

Physics Subject Headings (PhySH)

  1. Physical Systems
Polymers & Soft Matter

Authors & Affiliations

Jan Plagge*, Andreas Fischer, and Claus Heussinger

  • Institute for Theoretical Physics, Georg-August University of Göttingen, Friedrich-Hund Platz 1, 37077 Göttingen, Germany

  • *Current address: Deutsches Institut für Kautschuktechnologie, e. V., Eupener Str. 33, 30519 Hannover, Germany.

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Issue

Vol. 93, Iss. 6 — June 2016

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