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A Modified Iterative Automatic Method for Characterization at Shear Resonance: Case Study of Ba0.85Ca0.15Ti0.90Zr0.10O3 Eco-Piezoceramics

机译:修正的剪切共振自动表征方法:Ba0.85Ca0.15Ti0.90Zr0.10O3生态压电陶瓷的案例研究

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摘要

Coupling between electrically excited electromechanical resonances of piezoelectric ceramics is undesirable for the purpose of their characterization, since the material models correspond to monomodal resonances. However, coupling takes place quite often and it is unavoidable at the shear resonance of standard in-plane poled and thickness-excited rectangular plates. The piezoelectric coefficient , the elastic compliance and the dielectric permittivity component for a piezoelectric ceramic can be determined, including all losses, using the automatic iterative method of analysis of the complex impedance curves for the shear mode of an appropriated resonator. This is the non-standard, thickness-poled and longitudinally excited, shear plate. In this paper, the automatic iterative method is modified. The purpose is to be able to deal with the analysis of the impedance curves of the non-standard plate as the periodic phenomena of coupling and decoupling of the main shear resonance and other resonances takes place. This happens when the thickness of the plate is reduced, and its aspect ratio (width of the excitation ( )/thickness for poling ( )) is increased. In this process, the frequency of the shear resonance also increases and meets those of other plate modes periodically. We aim to obtain the best approach for the shear properties of near coupling and to reveal both their validity and the limitations of the thus-obtained information. Finally, we use a plate of a Ba Ca Ti Zr O eco-piezoceramic as a case study.
机译:压电陶瓷的电激发机电共振之间的耦合出于其表征的目的是不希望的,因为材料模型对应于单峰共振。然而,耦合是经常发生的,并且在标准面内极化和厚度激励矩形板的剪切共振下是不可避免的。使用适用于谐振器的剪切模式的复阻抗曲线的自动迭代分析方法,可以确定压电陶瓷的压电系数,弹性柔度和介电常数,包括所有损耗。这是非标准的,具有厚度极化和纵向激励的剪切板。在本文中,对自动迭代方法进行了修改。目的是能够处理非标准板的阻抗曲线的分析,因为主剪切共振和其他共振会发生耦合和解耦的周期性现象。当减小板的厚度并增加其纵横比(激发的宽度()/极化的厚度())时,会发生这种情况。在此过程中,剪切共振的频率也会增加,并周期性地满足其他平板模式的频率。我们旨在为近耦合的剪切特性获得最佳方法,并揭示其有效性以及由此获得的信息的局限性。最后,我们以一块Ba Ca Ti Zr O生态微晶陶瓷板作为案例研究。

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