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首页> 外文期刊>Journal of Advanced Mechanical Design, Systems, and Manufacturing >Measurement of Flexoelectric Effect in Lead Zirconate Titanate Ceramics
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Measurement of Flexoelectric Effect in Lead Zirconate Titanate Ceramics

机译:锆钛酸铅陶瓷中的挠电效应的测量

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摘要

Lead zirconate titanate (PZT) ceramics is usually used as a piezoelectric material. However it has characteristics of not only piezoelectricity but also flexoelectricity. Piezoelectricity is a phenomenon that electric polarization is induced by strain, and flexoelectricity is the one that the polarization is induced by strain gradient. In this study, flexoelectricity in poled soft PZT ceramics is measured. In order to eliminate influence of piezoelectricity, PZT ceramic thin plates are subjected pure bending using four-point bending experimental mechanism. Strain gradient along the direction of thickness in the plate is caused by the bending motion. Electric charge between two electrodes which is set on the center of the plate surface is measured under quasi-static sinusoidal load. Even though the polarization for piezoelectric effect is eliminated by the experimental setup, the influence of piezoelectric effect still remains since polarization by piezoelectricity is much larger than the one by flexoelectricity. So the influence of piezoelectricity is eliminated using qualitative difference between piezoelectricity and flexoelectricity for poling direction. Eventually, flexoelectric coefficient of the order of 10~(-5) C/m is measured.
机译:锆酸钛酸铅(PZT)陶瓷通常用作压电材料。但是,它不仅具有压电特性,而且具有柔电特性。压电是一种由于应变而引起极化的现象,而弯曲是因应变梯度而引起极化的现象。在这项研究中,对极化软PZT陶瓷中的挠曲电进行了测量。为了消除压电性的影响,使用四点弯曲实验机制对PZT陶瓷薄板进行纯弯曲。弯曲运动引起沿板厚度方向的应变梯度。在准静态正弦负载下测量设置在板表面中心的两个电极之间的电荷。即使通过实验设置消除了压电效应的极化,但压电效应的影响仍然存在,因为压电极化比挠曲极化大得多。因此,利用极化方向上的压电和柔电之间的质量差异,可以消除压电的影响。最终,测得的挠电系数约为10〜(-5)C / m。

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