Experimentally and Numerically Analyzed Piezoelectric Characteristics of PZT Ceramics

Lale Yang, Hirokazu Nagano, M. Okayasu
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引用次数: 2

Abstract

The electric generation characteristics of the PZT piezoelectric ceramics were examined experimentally and numerically. In this case, cyclic bending loading was applied to the PZT ceramics: bulk and thin-film membrane. Electric voltage increased with increasing the strain value. There was a sharp initial increase in positive voltage for the PZT ceramics as bending load was applied. Following this initial increase stage, a rapid fall to zero occurred. The reduction rate of the positive voltage was changed depending on the rigidly of the PZT ceramic: the higher the reduction rate, the higher the rigid of the ceramic. The electrical voltage from the circular membrane PZT ceramic during cyclic loading showed the higher level compared to that for the bulk one, in which the flexibility of the PZT ceramic was significant factor to obtain the high electric voltage. The variation of the electric voltages was estimated numerically, which was relatively in good agreement with the experimental one.
实验和数值分析了压电陶瓷的压电特性
对PZT压电陶瓷的发电特性进行了实验和数值研究。在这种情况下,循环弯曲加载应用于PZT陶瓷:本体和薄膜膜。电压随应变值的增大而增大。当施加弯曲载荷时,PZT陶瓷的正电压有一个急剧的初始增加。在这个最初的增长阶段之后,迅速下降到零。正电压的还原速率随PZT陶瓷的刚性而变化:还原速率越高,陶瓷的刚性越高。圆膜PZT陶瓷在循环加载过程中产生的电压比体膜PZT陶瓷高,其中PZT陶瓷的柔韧性是获得高电压的重要因素。数值估计了电压的变化,与实验结果比较吻合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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