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Band Gaps and Transmission Characteristics Analysis on a Two-Dimensional Multiple-Scatter Phononic Crystal Structure

机译:二维多散射声子晶体结构的带隙和传输特性分析

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摘要

In this paper, a novel wrap-around multi-scattering phononic crystal (PC) structure is proposed. Band gaps (BGs) and transmission characteristics of the present structure are calculated using finite element method (FEM). Through the calculations of single-scattering prototype, three complete BGs which are exhibited at low frequency and the fourth wide BG at high frequency are discovered. The transmission features and resonant spectra represented by frequency response function (FRF) shows that apparent resonance directly cause the four specific BGs. By keeping the total area of scatterers unchanged, 2 × 2, 3 × 3 and 4 × 4 scatterers are designed to obtain the change rule of BGs. Furthermore, the size ratio of 2 × 2 scatterers, the number of connection beams are investigated to obtain the regular pattern of acoustic energy transmission and attenuation. The present investigation of multiple-scatter PC structure will provide a solid support on the future design of acoustical functional materials.
机译:本文提出了一种新颖的环绕式多散射声子晶体(PC)结构。使用有限元方法(FEM)计算本结构的带隙(BG)和传输特性。通过单散射原型的计算,发现了三个完整的低频BG和高频的第四宽带BG。频率响应函数(FRF)表示的传输特征和共振谱表明,表观共振直接引起这四个特定的BG。通过保持散射体的总面积不变,设计2×2、3×3和4×4散射体以获得BG的变化规律。此外,研究了2×2散射体的尺寸比,连接束的数量,以获得声能传输和衰减的规律模式。目前对多散射PC结构的研究将为声学功能材料的未来设计提供坚实的支持。

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