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Research Progress of Locally Resonance Acoustic Metamaterials

机译:局部共振声学超材料的研究进展

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Bragg scattering phonon crystal and locally resonant acoustic metamaterials were introduced. In order to generate noise reduction, the lattice constant of Bragg scattering phonon crystal should be of the same order of magnitude as the wave length of the sound wave, therefore, its application field is limited. Locally resonant acoustic metamaterials consume sound energy by coupling its own resonant frequencies with those of sound waves at close range. Its size is two orders of magnitude smaller than the wavelength of sound wave; thus, the control of low-frequency noise by small-size acoustic metamaterials is realized. Locally resonant acoustic metamaterials have some extraordinary physical characteristic in the conventional medium for their special acoustic structural units, such as negative refraction and negative mass density. Especially in low frequency band, they have acoustic forbidden band in which the sound wave transmission is prohibited. Acoustic structural unit having resonant characteristics has been developed. Surface-mounted resonant element plate structures and thin film acoustic metamaterials are the normal types of locally resonant acoustic metamaterials. Their research and development provide a new method for low-frequency noise control.
机译:布拉格散射声子晶体并在本地谐振声学超材料进行了介绍。为了产生降噪,布拉格散射声子晶体的晶格常数应量值作为声波的波长的顺序相同的,因此,其应用领域受到限制。局域共振​​声学超材料通过与声波的近距离连接其自己的谐振频率消耗声能。其大小数量级比声波的波长小两个数量级;因此,低频噪声的由小尺寸的声超材料的控制得以实现。局域共振​​声学超材料具有在他们的特殊的声学结构单元,如负折射和负质量密度常规介质一些非凡物理特征。特别是在低频段,它们具有其中声波的发送被禁止声禁带。具有谐振特性的声学结构单元已经研制成功。表面安装谐振元件板的结构和薄膜声超材料是正常类型的局域共振声学超材料。他们的研究和开发提供了低频噪声控制的新方法。

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