Smart Energy Materials of PZT Ceramics

M. Okayasu
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引用次数: 1

Abstract

To better understand the material properties of lead zirconate titanate (PZT) ceramics, the domain-switching characteristics and electric power generation characteristics have been investigated during loading and unloading by using various experimental techniques. Furthermore, the influence of oscillation condition on the electrical power generation properties of lead zirconate titanate (PZT) piezoelectric ceramics has been investigated. It is found that the power generation is directly attributed to the applied load and wave mode. The voltage rises instantly to the maximum level under square-wave mode, although the voltage increases gradually under triangular-wave mode. After this initial increase, there is a rapid fall to zero, followed by generation of increasingly negative voltage as the applied load is removed for all wave modes. Variation of the electric voltage is reflected by the cyclic loading at higher loading frequencies. On the basis of the obtained experimental results for the wave modes, the electrical power generation characteristics of PZT ceramics are proposed, and the voltages generated during loading and unloading are accurately estimated. The electric generation value is decrease with increasing the cyclic number due to the material failure, e.g., domain switching and crack. The influence of domain switching on the mechanical properties PZT piezoelectric ceramics is clarified, and 90 degree domain switching occurs after the load is applied to the PZT ceramic directly. Note that, in this paper, our experimental results obtained in our previous works were introduced [1,2].
PZT陶瓷的智能能源材料
为了更好地了解锆钛酸铅(PZT)陶瓷的材料特性,采用多种实验技术研究了PZT陶瓷在加载和卸载过程中的畴开关特性和发电特性。此外,还研究了振荡条件对锆钛酸铅压电陶瓷发电性能的影响。结果表明,功率的产生直接归因于所施加的负载和波动模式。电压在方波模式下瞬间上升到最大值,而在三角波模式下电压逐渐上升。在这个初始的增加之后,有一个快速下降到零,随后产生越来越多的负电压,因为所有的波形模式的附加负载被移除。在较高加载频率下的循环加载反映了电压的变化。在得到的波模实验结果的基础上,提出了PZT陶瓷的发电特性,并准确估计了加载和卸载过程中产生的电压。随着循环次数的增加,由于材料的破坏(如畴切换和裂纹),发电值减小。阐明了畴切换对PZT压电陶瓷力学性能的影响,在载荷直接作用于PZT陶瓷后发生了90度的畴切换。需要注意的是,本文介绍了我们在前期工作中得到的实验结果[1,2]。
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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