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Multi-resonant scatterers in sonic crystals: Locally multi-resonant acoustic metamaterial

机译:声晶体中的多共振散射体:局部多共振声超材料

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An acoustic metamaterial made of a two-dimensional (2D) periodic array of multi-resonant acoustic scatterers is analyzed both experimentally and theoretically. The building blocks consist of a combination of elastic beams of low-density polyethylene foam (LDPF) with cavities of known area. Elastic resonances of the beams and acoustic resonances of the cavities can be excited by sound producing several attenuation peaks in the low frequency range. Due to this behavior the periodic array with long wavelength multi-resonant structural units can be classified as a locally multi-resonant acoustic metamaterial (LMRAM) with strong dispersion of its effective properties.The results presented in this paper could be used to design effective tunable acoustic filters for the low frequency range.
机译:从二维和二维的多共振声散射体的周期性阵列制成的声学超材料进行了实验和理论分析。构件由低密度聚乙烯泡沫(LDPF)的弹性梁与已知面积的空腔组成。光束的弹性共振和空腔的声共振可以通过声音在低频范围内产生几个衰减峰来激发。由于这种行为,具有长波长多共振结构单元的周期性阵列可以归类为具有有效特性分散性的局部多共振声超材料(LMRAM)。本文提出的结果可用于设计有效的可调谐器件低频范围的声学滤波器。

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