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COUPLED BAND GAPS IN THE PIEZOELECTRIC COMPOSITE PLATE WITH INTERCONNECTED ELECTRIC IMPEDANCE

机译:压电复合板中的耦合带间隙,具有互连的电阻抗

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In this paper, we investigate the coupled band gaps created by the locking phenomenon between the electrical and flexural waves in piezoelectric composite plates. To do that, the distributed piezoelectric materials should be interconnected via a 'global' electric network rather than the respective 'local' impedance. Once the uncoupled electrical wave has the same wavelength and opposite group velocity as the uncoupled flexural wave, the desired coupled band gap emerges. The Wave Finite Element Method (WFEM) is used to investigate the evolution of the coupled band gap with respect to propagation direction and electric parameters. Further, the bandwidth and directionality of the coupled band gap are compared with the LR and Bragg gaps. An indicator termed ratio of single wave (RSW) is proposed to determine the effective band gap for a given deformation (electric, flexural, etc.). We show that the coupled band gap, despite directional, can be much wider than the LR gap with the same overall inductance. This might lead to an alternative to create sub-wavelength band gaps.
机译:在本文中,我们研究了压电复合板中的电气和弯曲波之间的锁定现象产生的耦合带隙。为此,分布式压电材料应通过“全球”电网而不是相应的“本地”阻抗互连。一旦未耦合的电波具有与未耦合弯曲波的相同波长和相反的群体速度,所需的耦合带隙就会出现。波有限元方法(WFEM)用于研究耦合带隙相对于传播方向和电参数的演变。此外,将耦合带隙的带宽和方向性与LR和布拉格间隙进行比较。提出了单波(RSW)的指示器的比例,以确定给定变形(电动,弯曲等)的有效带隙。我们表明,耦合带隙尽管有方向,可以比具有相同整体电感的LR间隙更宽。这可能导致创建子波长带空隙的替代方案。

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