Volume phase transition in thermo-responsive hydrogels: Constitutive modeling and structure–property relations

A.D. Drozdov

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningpeer review

36 Citationer (Scopus)

Abstract

A model is developed for the elastic response of a thermo-responsive hydrogel subjected to swelling under an arbitrary deformation with finite strains. The constitutive equations involve the stress–strain relation, the nonlinear diffusion equation for water molecules, the heat conduction equation, and the Allen–Cahn equation for a scalar order parameter (proportional to the concentration of hydrophilic segments in polymer chains). Material constants are found by fitting equilibrium mass uptake diagrams for macro- and microgels under unconstrained and constrained swelling in the vicinity of the volume phase transition temperature. Quantitative agreement is demonstrated between the experimental data and the results of simulation. The effect of composition of hydrogels (concentrations of monomers and cross-linker) on adjustable parameters is analyzed numerically.

OriginalsprogEngelsk
TidsskriftActa Mechanica
Vol/bind226
Udgave nummer4
Sider (fra-til)1283-1303
Antal sider21
ISSN0001-5970
DOI
StatusUdgivet - 2015
Udgivet eksterntJa

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