A blueprint for truncation resonance placement in elastic diatomic lattices with unit cell asymmetrya).

IF 1.2 Q3 ACOUSTICS JASA express letters Pub Date : 2024-07-01 DOI:10.1121/10.0027939
Hasan B Al Ba'ba'a, Hosam Yousef, Mostafa Nouh
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Abstract

Elastic periodic lattices act as mechanical filters of incident vibrations. By and large, they forbid wave propagation within bandgaps and resonate outside them. However, they often encounter "truncation resonances" (TRs) inside bandgaps when certain conditions are met. In this study, we show that the extent of unit cell asymmetry, its mass and stiffness contrasts, and the boundary conditions all play a role in the TR location and wave profile. The work is experimentally supported via two examples that validate the methodology, and a set of design charts is provided as a blueprint for selective TR placement in diatomic lattices.

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具有单元格不对称的弹性二原子晶格中的截断共振位置蓝图a)。
弹性周期晶格是入射振动的机械过滤器。总体而言,它们禁止波在带隙内传播,并在带隙外产生共鸣。然而,当满足某些条件时,它们经常会在带隙内遇到 "截断共振"(TRs)。在这项研究中,我们证明了单位晶胞的不对称程度、其质量和刚度对比以及边界条件都会对 TR 位置和波形产生影响。我们通过两个实例对这一方法进行了实验验证,并提供了一套设计图表,作为在二原子晶格中选择性放置 TR 的蓝图。
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