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Shear horizontal wave propagation in periodically layered composites

机译:周期性层状复合材料中的水平剪切波传播

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The transverse resonance approach to guided wave analysis is applied to shear horizontal (SH) wave propagation in periodically layered composites. It is found for SH waves that at high values of the guided wavevector /spl beta/, the wave energy is trapped in the slower of the two media and propagates accordingly at the slower wavespeed. At low values of /spl beta/, however, the modes demonstrate a clustering behavior, indicative of the underlying Floquet wave structure. The number of modes in a cluster is observed to correlate with the number of unit cells in the layered plate. New physical insights into the behavior of these systems are obtained by analyzing the partial waves of the guided SH modes in terms of Floquet waves. We show that the fast and slow shear waves in the periodically layered composite play an analogous role to the longitudinal and shear partial waves comprising Lamb waves in a homogeneous plate.
机译:导波分析的横向共振方法适用于周期性分层复合材料中的水平剪切(SH)波传播。对于SH波,发现在导波矢量/ spl beta /的高值下,波能量被困在两种介质中较慢的位置,并相应地以较慢的波速传播。但是,在/ spl beta /的值较低时,这些模式表现出聚类行为,表明潜在的Floquet波结构。观察到簇中的模式数量与分层板中的晶胞数量相关。通过根据Floquet波分析引导的SH模式的部分波,可以获得有关这些系统行为的新的物理见解。我们表明,在周期性分层的复合材料中,快速剪切波和缓慢剪切波与均质板中包括兰姆波的纵向和剪切局部波起着相似的作用。

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