首页> 外文期刊>Journal of the Mechanics and Physics of Solids >Emergent electromechanical coupling of electrets and some exact relations - The effective properties of soft materials with embedded external charges and dipoles
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Emergent electromechanical coupling of electrets and some exact relations - The effective properties of soft materials with embedded external charges and dipoles

机译:驻极体的机电耦合及其精确关系-具有嵌入的外部电荷和偶极子的软材料的有效特性

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摘要

Soft robotics, energy harvesting, large-deformation sensing and actuation, are just some of the applications that can be enabled by soft dielectrics that demonstrate substantive electromechanical coupling. Most soft dielectrics including elastomers, however, are not piezoelectric and rely on the universally present electrostriction and the Maxwell stress effect to enable the aforementioned applications. Electrostriction is a one-way electromechanical coupling and the induced elastic strain scales as (∝E2) upon the application of an electric field,E. The quadratic dependence of electrostriction on the electric field and the one-way coupling imply that, (i) A rather high voltage is required to induce appreciable strain, (ii) reversal of an applied bias will not reverse the sign of the deformation, and (iii) since it is a one-way coupling i.e. electrical stimuli may cause mechanical deformation but electricitycannotbe generated by mechanical deformation, prospects for energy harvesting are rather difficult. An interesting approach for realizing anapparentpiezoelectric-like behavior is to dope soft dielectrics withimmobilecharges and dipoles. Such materials, called electrets, are rather unique composites where a secondary material (in principle) is not necessary. Both experiments and supporting theoretical work have shown that soft electrets can exhibit a very large electromechanical coupling including a piezoelectric-like response. In this work, we present a homogenization theory for electret materials and provide, in addition to several general results, variational bounds and closed-form expressions for specific microstructures such as laminates and ellipsoidal inclusions. While we consider the nonlinear coupled problem, to make analytical progress, we work within the small-deformation setting. The specific conditions necessary to obtain a piezoelectric-like response and enhanced electrostriction are highlighted. There are very few universal, microstructure-independentexactresults in the theory of composites. We succeed in establishing several such relations in the context of electrets.
机译:软机器人技术,能量收集,大变形感测和致动只是通过软电介质实现实质性机电耦合而可以实现的一些应用。然而,包括弹性体在内的大多数软电介质都不是压电的,而是依靠普遍存在的电致伸缩和麦克斯韦应力效应来实现上述应用。电致伸缩是一种单向机电耦合,在施加电场E时,诱发​​的弹性应变缩放为(∝E2)。电致伸缩对电场和单向耦合的二次依赖性表明:(i)需要相当高的电压来感应明显的应变,(ii)施加的偏压的反转不会使变形的迹象反转,并且(iii)由于它是单向耦合,即电刺激可能引起机械变形,但不能通过机械变形产生电,因此能量收集的前景相当困难。一种实现类似表观压电的行为的有趣方法是用固定电荷和偶极子掺杂软电介质。这种材料称为驻极体,是相当独特的复合材料,不需要辅助材料(原则上)。实验和理论支持工作都表明,软驻极体可以表现出很大的机电耦合,包括类似压电的响应。在这项工作中,我们提出了驻极体材料的均质化理论,除了提供一些一般性的结果之外,还提供了特定的微观结构(如层压板和椭圆形夹杂物)的变分界线和闭式表达式。当我们考虑非线性耦合问题时,为了使分析取得进展,我们在小变形环境下工作。突出了获得类压电响应和增强电致伸缩所需的特定条件。复合材料理论中很少有通用的,与微观结构无关的精确结果。我们成功地在驻极体的背景下建立了几种这样的关系。

著录项

  • 来源
  • 作者

    Liping Liu; Pradeep Sharma;

  • 作者单位

    Department of Mechanical Aerospace Engineering, Rutgers University,Department of Mathematics, Rutgers University;

    Department of Mechanical Engineering and The Materials Science and Engineering Program, University of Houston,Department of Physics, University of Houston;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 02:59:42

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