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Micromechanics of ferroelectric polymer-based electrostrictive composites

机译:铁电聚合物基电致伸缩复合材料的微力学

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摘要

Elcctrostriclion refers to the strain induced in a dielectric by electric polarization, which is usually very small for practical application. In this paper, we present a micromechanical analysis on the effective electrostriction of a ferroelectric polyvinylidene fluoride trifluoroethylene [P(VDF-TrFE)] polymer-based composite, where the exact connections between the effective electrostrictive coefficients and effective elastic moduli are established, and numerical algorithm for the prediction of the effective electrostrictive coefficients of the composite in terms of its microstructural information is developed. From our calculations, enhanced electrostriction in the composite has been demonstrated, and optimal microstructure for electrostriction enhancement has been identified. Our analysis provides a mechanism for the electrostriction enhancement, where the electrostrictive strain several times higher than that of polymer matrix can be obtained, if the microstructure of the composites can be carefully tailored.
机译:静电是指通过电极化在电介质中引起的应变,对于实际应用而言,应变通常很小。在本文中,我们对铁电聚偏二氟乙烯三氟乙烯[P(VDF-TrFE)]聚合物基复合材料的有效电致伸缩进行了微力学分析,建立了有效电致伸缩系数与有效弹性模量之间的精确连接,并建立了数值模型。开发了一种根据复合材料的微结构信息预测其有效电致伸缩系数的算法。根据我们的计算,已经证明了复合材料中增强的电致伸缩,并且已经确定了用于增强电致伸缩的最佳微观结构。我们的分析提供了电致伸缩增强的机制,如果可以仔细定制复合材料的微观结构,则可以获得比聚合物基体高几倍的电致伸缩应变。

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