A reduced mixed finite-element formulation for modeling the viscoelastic response of electro-active polymers at finite deformation
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Publication:3304279
DOI10.1177/1081286518802419zbMath1440.74375OpenAlexW2898653756WikidataQ129021534 ScholiaQ129021534MaRDI QIDQ3304279
Dana Bishara, Mahmood Jabareen
Publication date: 5 August 2020
Published in: Mathematics and Mechanics of Solids (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1177/1081286518802419
Finite element methods applied to problems in solid mechanics (74S05) Electromagnetic effects in solid mechanics (74F15) Nonlinear constitutive equations for materials with memory (74D10)
Related Items (6)
A polyconvex transversely-isotropic invariant-based formulation for electro-mechanics: stability, minimisers and computational implementation ⋮ A numerical framework for the simulation of coupled electromechanical growth ⋮ A robust and computationally efficient finite element framework for coupled electromechanics ⋮ A convex multi-variable based computational framework for multilayered electro-active polymers ⋮ Viscoelastic up-scaling rank-one effects in in-silico modelling of electro-active polymers ⋮ A solid-shell formulation based on the assumed natural inhomogeneous strains for modeling the viscoelastic response of electro-active polymers
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