Band Gap and Waveguide Characteristics of Petal-Shaped Scatterer Phononic Crystals

Lin Liao, Yang Xiang, Wenbo Wang, W. Du
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Abstract

In this study, the Bragg petal-shaped scatterer (PS) phononic crystal (PnC) model is built to expand the width of band gap (BG). The BG characteristics of the PSPnC, square, circular, octagonal, and the "+" shaped scatterer PnC are compared using the finite element method (FEM). This study investigates the effects of the internal and external diameter ratio and the number of petals of single-layer petals, double-layer petals and the application of pre-deformation without changing their structure on the BG characteristics of PnCs for the transmission characteristics of supercell structures. Moreover, two different waveguides (WGs) are built with pre-deformed unit cells as the defects. As revealed by the results, the PSPnC exhibited better vibration isolation performance than PnCs with other shapes. More BGs will appear at a higher frequency with the decrease in the ratio of inner and outer diameter of petals and the increase in the number of petals. In addition, the double-layer PSPnC has high performance, and the dislocation arrangement of PS can enhance the vibration isolation performance of PSPnC. Furthermore, the WG structure is capable of guiding the energy, which provides a new insight into the establishment of the filter.
花瓣形散射声子晶体的带隙和波导特性
在本研究中,建立了Bragg花瓣形散射体(PS)声子晶体(PnC)模型来扩展带隙宽度(BG)。采用有限元法对PSPnC、方形、圆形、八角形和“+”形散射体PnC的BG特性进行了比较。本研究考察了单层、双层花瓣的内外直径比、花瓣数以及不改变其结构的预变形应用对超级单体结构透射特性的pnc BG特性的影响。此外,还构建了两种不同的波导(WGs),并将预变形的单元胞作为缺陷。结果表明,PSPnC比其他形状的pnc具有更好的隔振性能。随着花瓣内径与外径之比的减小和花瓣数量的增加,BGs的出现频率也会增加。此外,双层PSPnC具有良好的性能,PS的位错排列可以提高PSPnC的隔振性能。此外,WG结构具有引导能量的能力,为滤波器的建立提供了新的思路。
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