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Influence of Resonator Configuration on Band Gap Range in Acoustic Metamaterials

机译:谐振器配置对声学超材料带隙范围的影响

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In recent years study acoustic metamaterials have found great attention due to its enormous ability to guide and manipulate elastic wave in a medium. Frequency bandgap is a great feature that can be achieved by acoustic metamaterials. The bandgap is the frequency range at which the elastic wave doesn’t propagate through the medium. In another word, the frequency band gap offers wave isolation ability for a structure. An acoustic metamaterial usually consists of resonators and a host media. The frequency bandgap is mainly the result of brag scattering in the structure. The orientation and geometry of resonators in a unit cell possess a great influence on brag scattering. This study is dedicated to understanding the influence of resonators volume percentage in the frequency bandgap. Several resonator geometries of two different combinations are studied. Finally, comparing the outcome from both the combinations, a claim is made regarding the effect of volume fraction on frequency band gaps.
机译:近年来,研究声学超材料由于其巨大的引导和操纵介质而操纵弹性波而感到非常关注。频率带隙是可以通过声学超材料实现的一个很好的特征。带隙是弹性波不会通过介质传播的频率范围。在另一个单词中,频带隙提供了结构的波形隔离能力。声学超材料通常由谐振器和主体介质组成。频率带隙主要是结构中吹拂的结果。单元电池中谐振器的取向和几何形状对吹吹散射具有很大的影响。本研究致力于了解谐振器体积百分比在频率范围中的影响。研究了两个不同组合的几个谐振器几何形状。最后,将来自组合的结果进行比较,提出了关于体积分数对频带间隙的影响。

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