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Nonlinear electroelasticity: material properties continuum theory and applications

机译:非线性电弹性:材料特性连续理论和应用

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摘要

In the last few years, it has been recognized that the large deformation capacity of elastomeric materials that are sensitive to electric fields can be harnessed for use in transducer devices such as actuators and sensors. This has led to the reassessment of the mathematical theory that is needed for the description of the electromechanical (in particular, electroelastic) interactions for purposes of material characterization and prediction. After a review of the key experiments concerned with determining the nature of the electromechanical interactions and a discussion of the range of applications to devices, we provide a short account of the history of developments in the nonlinear theory. This is followed by a succinct modern treatment of electroelastic theory, including the governing equations and constitutive laws needed for both material characterization and the analysis of general electroelastic coupling problems. For illustration, the theory is then applied to two simple representative boundary-value problems that are relevant to the geometries of activation devices; in particular, (a) a rectangular plate and (b) a circular cylindrical tube, in each case with compliant electrodes on the major surfaces and a potential difference between them. In (a), an electric field is generated normal to the major surfaces and in (b), a radial electric field is present. This is followed by a short section in which other problems addressed on the basis of the general theory are described briefly.
机译:在过去的几年中,已经认识到,可以利用对电场敏感的弹性体材料的大变形能力来用于诸如致动器和传感器的换能器设备中。这导致了重新评估数学理论,这对于描述机电(尤其是电弹性)相互作用是必要的,以便进行材料表征和预测。在回顾了有关确定机电相互作用性质的关键实验并讨论了器件的应用范围之后,我们简要介绍了非线性理论的发展历史。其次是对电弹性理论的简洁现代处理,包括材料表征和一般电弹性耦合问题分析所需的控制方程和本构定律。为了说明起见,该理论随后应用于与激活设备的几何形状相关的两个简单的代表性边值问题。特别地,(a)矩形板和(b)圆柱形管,在每种情况下在主表面上具有顺应性电极并且它们之间的电位差。在(a)中,垂直于主表面产生电场,在(b)中,存在径向电场。紧随其后的是一小段,其中简要介绍了根据一般理论解决的其他问题。

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