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Band structures of metacomposite based phononic crystals in quasi-Sierpinski fractals

机译:准谢尔宾斯基分形中基于元复合的声子晶体的能带结构

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摘要

In this paper, we investigated the bandgaps of two-dimensional phononic crystals with quasi-Sierpinski carpet unit cells in a metacomposite based solid-solid phononic crystal. Finite element method was used to analyze the properties of two-dimensional phononic bandgaps (2D PBGs) in a quasi-fractal structure. Two new types of quasi-Sierpinski fractal unit cells whose constituents are homogeneous and isotropic were proposed to obtain larger full bandgaps. The results show that the PBGs of the proposed quasi-Sierpinski fractals are suitable to tune the PBG's without changing the size of the phonic crystal. The new quasi-Sierpinski fractals also retain the self-similarity as in the third-order Sierpinski fractal unit cell. The investigated quasi-fractals can be easily modified to increase the filling fraction of the constituents, which can be effectively used to enlarge existing PBG by preserving degree of serf-similarity structure.
机译:本文研究了基于元复合固-固声子晶体的二维声子晶体与准谢尔宾斯基地毯晶胞的带隙。采用有限元方法分析了准分形结构中二维声子带隙(2D PBGs)的性质。提出了两种新型的准谢尔宾斯基分形晶胞,其成分是均匀的和各向同性的,以获得更大的全带隙。结果表明,所提出的准谢尔宾斯基分形的PBG适合在不改变语音晶体尺寸的情况下调谐PBG。新的准谢尔宾斯基分形也保留了与三阶谢尔宾斯基分形晶胞一样的自相似性。所研究的准分形可以很容易地被修改以增加成分的填充分数,这可以通过保持农奴相似性结构的程度来有效地扩大现有的PBG。

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