4.4 Article

A 3D multi-field element for simulating the electromechanical coupling behavior of dielectric elastomers

Journal

ACTA MECHANICA SOLIDA SINICA
Volume 30, Issue 4, Pages 374-389

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.camss.2017.07.005

Keywords

Dielectric elastomer; Electromechanical coupling; Implicit multi-field finite element method; Eigenvalue problem

Funding

  1. A*STAR SERC grant [132-183-0025]

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We propose a multi-field implicit finite element method for analyzing the electromechanical behavior of dielectric elastomers. This method is based on a four-field variational principle, which includes displacement and electric potential for the electromechanical coupling analysis, and additional independent fields to address the incompressible constraint of the hyperelastic material. Linearization of the variational form and finite element discretization are adopted for the numerical implementation. A general FEM program framework is developed using C++ based on the open-source finite element library deal. II to implement this proposed algorithm. Numerical examples demonstrate the accuracy, convergence properties, mesh-independence properties, and scalability of this method. We also use the method for eigenvalue analysis of a dielectric elastomer actuator subject to electromechanical loadings. Our finite element implementation is available as an online supplementary material. (C) 2017 Published by Elsevier Ltd on behalf of Chinese Society of Theoretical and Applied Mechanics.

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