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A New Molecular Mechanism for Understanding the Actuated Strain of Dielectric Elastomers and Their Impacts

  • Beijing University of Chemical Technology
  • Chinese Academy of Sciences
  • Georgia Institute of Technology

科研成果: 期刊稿件文章同行评审

10 引用 (Scopus)

摘要

Dielectric elastomers (DEs) are a special material that deform responding to an electric field. The induced strain is known as actuated strain (AS). This phenomenon is totally different from electrostriction, for there is no crystal lattice in elastomers and the AS of DEs is much greater. The most accepted mechanism holds the view that the AS of DEs is induced by the Maxwell stress. According to this mechanism, materials exhibiting similar ratios of permittivity and Young's modulus should have similar ASs, while the experimental AS isn't relevant to the ideal value, contradicting this mechanism. The direction of uniaxial pre-strained DE's AS cannot be explained by this mechanism either. The electric field and DE are only regarded as a source of stress and a deformable body respectively in this mechanism, which ignores the interaction between those two. Recently, a new molecular mechanism for AS is proposed, in which the electric field first orient dipoles of chains, therefore the conformation of chains will be changed, finally leading to AS. With thermodynamical derivation and experiment, entropy-dominated elasticity is found to account for more during AS. This mechanism is systematically introduced in this perspective and presents current challenges and outlooks of DE.

源语言英语
文章编号2200315
期刊Macromolecular Rapid Communications
44
1
DOI
出版状态已出版 - 1月 2023
已对外发布

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