无电极边界条件下PZT棒的机械激励压电特性- k31模态

Maryam Majzoubi, Yuxuan Zhang, E. Hennig, T. Scholehwar, K. Uchino
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引用次数: 0

摘要

我们介绍了一种先进的对部分电极样品进行机械激励的压电表征方法,该方法可以确定常规全电极电激励方法无法提供的额外物理参数。在矩形k31压电板的中心只放置10%电极的非电极样品,可以直接和精确地测量广泛的参数。本文首先推导了部分电极结构的精确解析解,其中包括部分非电极样品中10%的机械激励部分,用于计算其超声振动模态,以及复合杆样品的机械质量因子,用于获得广泛的弹性柔度和损失因子。结果表明,即使在k31模式样品中,中心电极面积高达40%的样品也可以获得几乎准确的值。第二个目标是比较三种不同的模拟(ATILA FEM,六端等效电路和解析解)。这种机械激励法的优点是可以测量IEEE标准电激励法无法直接获得的物理参数。关键词:直接损失计量;集约化和外延化参数;共振振动方式;压电陶瓷;机械质量因子;
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Piezoelectric Characterization with Mechanical Excitation in PZT Bar with Non-Electrode Boundary Condition–K31 Mode Case
We introduced an advanced piezoelectric characterization method with mechanical excitation on partial electrode samples, which can determine additional physical parameters the conventional full-electrode electrical excitation method cannot provide. A non-electrode sample with only 10% electrode at the center of a rectangular k31 piezoelectric plate has the benefits for measuring the extensive parameters directly and much precisely. In this paper, we derived first the exact analytical solutions on the partial electrode configuration, including the 10% mechanical excitation part in a partial non-electrode sample for calculating there sonance vibration mode and mechanical quality factors of the composite bar sample for obtaining the extensive elastic compliance and loss factor. The result suggests that the almost accurate values can be obtained even for a specimen with up to 40% center electrode area in the k31 mode samples. Second objective is to compare three different simulations (ATILA FEM, 6-terminal Equivalent Circuit and Analytical Solution). This mechanical excitation method has the benefit in measuring physical parameters which cannot be obtained directly from the IEEE Standard electrical excitation method. Keywords: Direct loss measurement; intensive and extensive parameters; resonance vibration mode; PZT; mechanical quality factor;
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