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Coupled nonlinear oscillation and stability evolution of viscoelastic dielectric elastomers

  • Junshi Zhang
  • , Hualing Chen
  • , Bo Li
  • , David McCoul
  • , Qibing Pei
  • Xi'an Jiaotong University
  • University of California at Los Angeles

Research output: Contribution to journalArticlepeer-review

53 Scopus citations

Abstract

This article describes the development of an analytical model to study the coupled nonlinear oscillation and stability evolution of viscoelastic dielectric elastomers (DEs) under non-equibiaxial tensile forces by utilizing the method of virtual work. Numerically calculated results are employed to predict this nonlinear dynamic behavior. The resonant frequency (where the amplitude-frequency response curve peaks) and the amplitude-frequency response of the deformation in both in-plane directions are tuned by varying the values of tensile force. The oscillation response in the two in-plane directions exhibits strong nonlinearity and coupling with each other, and is tuned by the changing tensile forces under a specific excitation frequency. By varying the values of tensile forces, the dynamic viscoelastic creep in a certain in-plane direction can be eliminated. Phase diagrams and Poincaré maps under several values of tensile forces are utilized to study the stability evolution of the DE system under non-equibiaxial tensile forces.

Original languageEnglish
Pages (from-to)7483-7493
Number of pages11
JournalSoft Matter
Volume11
Issue number38
DOIs
StatePublished - 10 Aug 2015

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