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首页> 外文期刊>Journal of Sound and Vibration >Band-gap and pass-band classification for oblique waves propagating in a three-dimensional layered functionally graded piezoelectric phononic crystal
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Band-gap and pass-band classification for oblique waves propagating in a three-dimensional layered functionally graded piezoelectric phononic crystal

机译:用于在三维层叠功能梯形压电声子晶体中传播的倾斜波的带隙和通带分类

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摘要

Three-dimensional time-harmonic wave motion in a layered functionally graded (FG) piezoelectric periodic composite (phononic crystal) composed of a finite or an infinite number of unit-cells is considered. A longitudinal or transverse plane waves incident obliquely to the interfaces of a finite phononic crystal between two half-spaces is studied. The paper proposes a semi-analytical method to simulate and analyse the wave fields in a phononic crystal in the case of arbitrary angles of incidence. It is shown that the method is numerically stable for an arbitrary number of unit-cells in finite phononic crystals. Several kinds of pass-bands and band-gaps can be distinguished by employing the derived semi-analytical expressions: band-gaps, pass-bands, low transmission pass-bands, quasi-longitudinal and quasi-transverse band-gaps. Using the present approach a detailed parametric analysis of the influences of the type and incidence angle of an incident wave, and the material and geometrical parameters of the FG interlayers on wave propagation is conducted. (C) 2018 Elsevier Ltd. All rights reserved.
机译:考虑了由有限数或无限数量的单元电池组成的层状功能分级(FG)压电周期复合(封晶)中的三维时间谐波运动。研究了纵向或横向平面波在两个半空间之间的有限声子晶体的界面中入射的纵向或横向平面波。本文提出了一种半分析方法来模拟和分析声晶中的波形晶体中的波场。结果表明,该方法对于有限声子晶体中的任意数量的单位单元是数值稳定的。可以通过采用衍生的半分析表达式来区分几种通道和带间隙:带间隙,通带,低传输通道,准纵向和准横向带间隙。使用本方法的详细参数分析入射波的类型和入射角的影响,以及FG层间在波传播上的材料和几何参数。 (c)2018年elestvier有限公司保留所有权利。

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