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Time dependence of piezoelectric d33 coefficient of cellular piezoelectret polypropylene film: Finite element modeling

机译:蜂窝压电压电聚丙烯薄膜的压电d33系数与时间的关系:有限元建模

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摘要

In this article, the effective piezoelectric d33 coefficient of cellular piezoelectret polymer film is simulated by means of the finite element method. The cellular piezoelectret film is regarded as a periodic material, where the almost ellipsoidal voids produced by biaxial stretch are considered to be scattered periodically. The hollow oblate tetrakaidecahedron is used to model the charged microvoids. The polymer is take to be isotropic and viscoelastic. Representative volume element is adopted and the periodic boundary conditions are implemented. The electrostatic field coupled to the stress through the Maxwell stress tensor is analyzed. The piezoelectric d33 coefficient in the film thickness direction is phenomenologically defined and numerically obtained. Time dependence of the effective piezoelectric d33 coefficient is presented for different void geometrical parameters.
机译:本文利用有限元方法模拟了多孔压电驻极体聚合物薄膜的有效压电d33系数。多孔压电驻极体膜被认为是周期性材料,其中通过双轴拉伸产生的几乎椭圆形的空隙被认为是周期性分散的。空心扁四十二面体用于模拟带电的微孔。该聚合物是各向同性的和粘弹性的。采用具有代表性的体积元素,并实现了周期性边界条件。分析了通过麦克斯韦应力张量耦合到应力的静电场。在现象学上定义并数值获得膜厚度方向上的压电d33系数。对于不同的空隙几何参数,给出了有效压电d33系数的时间依赖性。

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