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首页> 外文期刊>Physica, B. Condensed Matter >Band structures of two dimensional solid/air hierarchical phononic crystals
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Band structures of two dimensional solid/air hierarchical phononic crystals

机译:二维固体/空气分层声子晶体的能带结构

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The hierarchical phononic crystals to be considered show a two-order hierarchical feature, which consists of square array arranged macroscopic periodic unit cells with each unit cell itself including four sub-units. Propagation of acoustic wave in such two dimensional solid/air phononic crystals is investigated by the finite element method (FEM) with the Bloch theory. Their band structure, wave filtering property, and the physical mechanism responsible for the broadened band gap are explored. The corresponding ordinary phononic crystal without hierarchical feature is used for comparison. Obtained results show that the solid/air hierarchical phononic crystals possess tunable outstanding band gap features, which are favorable for applications such as sound insulation and vibration attenuation.
机译:要考虑的分层声子晶体表现出二阶分层特征,其由正方形阵列排列的宏观周期性单位晶格组成,每个单位晶格本身包括四个子单元。利用Bloch理论,通过有限元方法(FEM)研究了声波在这种二维固体/空气声子晶体中的传播。探索了它们的能带结构,滤波特性以及导致能带隙扩大的物理机制。没有层次特征的相应普通声子晶体用于比较。所得结果表明,固体/空气分层声子晶体具有可调谐的,突出的带隙特征,有利于隔音和减振等应用。

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