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Band Structures Analysis of Elastic Waves Propagating along Thickness Direction in Periodically Laminated Piezoelectric Composites

机译:在周期性层压压电复合材料中沿厚度方向传播弹性波的带结构分析

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摘要

Existing studies on elastic waves in periodically laminated piezoelectric structures mainly concerned the passive band properties, since the electrical boundaries in the considered structures cannot vary. This paper investigates the tuning of band properties of uncoupled primary and shear (P- and S-) waves along the thickness direction by actively varying the electrical field in periodically multilayered piezoelectric structures consisting of orthotropic materials. The alteration of the electrical field is realized in the multilayered unit cell here by either applying or switching four kinds of electrical boundary conditions, including the electric-open, applied electric capacitance, electric-short, and applied feedback voltage, to the constituent piezoelectric layer via the constituent electrode layers covering both its surfaces. First, the state space formalism is introduced to obtain the partial wave solution of any constituent orthotropic layer in the unit cell. Second, the traditional transfer matrix method is adopted to derive the dispersion equation of general, periodically laminated piezoelectric composites with unit cells consisting of an arbitrary number of piezoelectric layers with various boundaries and of elastic layers. Third, numerical examples are provided to verify the proposed analysis method, and to study the influences of electrode thickness as well as four electrical boundaries on the band structures. All the frequency-related dispersion curves are also illustrated by numerical examples to summarize the general dispersion characteristics of uncoupled P- and S-waves in periodically laminated piezoelectric composites. The main finding is that the innovative dispersion characteristic resulting from the negative capacitance may also be achieved via feedback control.
机译:在周期性层压的压电结构中对弹性波的现有研究主要涉及被动带性质,因为所考虑的结构中的电边界不能变化。本文通过在周期性的多层压电结构中主动改变电场,研究沿着厚度方向沿着厚度方向调谐沿厚度方向的带剪切(P和S-)波的带性能。这里通过施加或切换四种电边界条件,包括电开,施加的电容,电气短路和施加的反馈电压,在这里,在多层单元电池中实现电场的改变。通过构成电极层覆盖其表面。首先,引入状态空间形式主义以获得单位细胞中任何成分正交层的部分波溶液。其次,采用传统的转移矩阵方法来导出一般,周期性层压的压电复合材料的分散方程,其具有由具有各种边界和弹性层的任意数量的压电层组成的单元电池。第三,提供了数值例子以验证所提出的分析方法,并研究电极厚度以及带结构上的四个电边界的影响。所有频率相关的色散曲线也通过数值示例说明,以总结周期性层压的压电复合材料的未耦合的P&S波的一般色散特性。主要发现是,通过反馈控制也可以实现由负电容产生的创新分散特性。

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