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A staggered explicit-implicit finite element formulation for electroactive polymers

delete2018-08-01
delete17
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OA
AI
S
Saman Seifi
K
K. C. Park
H
Harold S. Park *
DOI:10.1016/j.cma.2018.03.028delete
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Abstract

Abstract

En 中文
Electroactive polymers such as dielectric elastomers (DEs) have attracted significant attention in recent years. Computational techniques to solve the coupled electromechanical system of equations for this class of materials have universally centered around fully coupled monolithic formulations, which while generating good accuracy requires significant computational expense. However, this has significantly hindered the ability to solve large scale, fully three-dimensional problems involving complex deformations and electromechanical instabilities of DEs. In this work, we provide theoretical basis for the effectiveness and accuracy of staggered explicit-implicit finite element formulations for this class of electromechanically coupled materials, and elicit the simplicity of the resulting staggered formulation. We demonstrate the stability and accuracy of the staggered approach by solving complex electromechanically coupled problems involving electroactive polymers, where we focus on problems involving electromechanical instabilities such as creasing, wrinkling, and bursting drops. In all examples, essentially identical results to the fully monolithic solution are obtained, showing the accuracy of the staggered approach at a significantly reduced computational cost. (C) 2018 Elsevier B.V. All rights reserved.
Keywords:
Staggered
Explicit-implicit
Creasing
Dielectric elastomer
Wrinkling
Surface tension
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Journal

Computer Methods in Applied Mechanics and Engineering cover
Computer Methods in Applied Mechanics and Engineering
IF:
7.3
Papers:
1.3W
Citations:
5.6W

Organization

University of Colorado System cover
University of Colorado System
Scholars:
6.3W
Papers: 5.5W
Citations: 1.8K
B
boston university
Scholars:
3.7W
Papers: 3.2W
Citations: 67