4.7 Article

A thermo-chemo--mechanically coupled constitutive model for curing of glassy polymers

期刊

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jmps.2018.04.001

关键词

Chemical reaction; chemo-mechanical processes; thermo-mechanical process; elastic-viscoplastic material; finite strain

资金

  1. Michigan Technological University Mechanical Engg.-Engg. Mechanics Department
  2. National Science Foundation [CMMI-1463121]
  3. ASME AMD Haythornthwaite Research Initiation Grant

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Curing of a polymer is the process through which a polymer liquid transitions into a solid polymer, capable of bearing mechanical loads. The curing process is a coupled thermo-chemo-mechanical conversion process which requires a thorough understanding of the system behavior to predict the cure dependent mechanical behavior of the solid polymer. In this paper, a thermodynamically consistent, frame indifferent, thermo-chemo-mechanically coupled continuum level constitutive framework is proposed for thermally cured glassy polymers. The constitutive framework considers the thermodynamics of chemical reactions, as well as the material behavior for a glassy polymer. A stress-free intermediate configuration is introduced within a finite deformation setting to capture the formation of the network in a stress-free configuration. This work considers a definition for the degree of cure based on the chemistry of the curing reactions. A simplified version of the proposed model has been numerically implemented, and simulations are used to understand the capabilities of the model and framework. (C) 2018 Elsevier Ltd. All rights reserved.

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