Point defect states of bending waves in phononic crystal thin plates

Z. Yao, Gui-Lan Yu, Yuesheng Wang, Z. Shi
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引用次数: 2

Abstract

The band structures of bending waves propagating in the phononic crystal thin plates with point defect are explored based on the supercell technique combined with the improved plane wave expansion method. The plate is composed of a periodic array of circular crystalline Al2O3 cylinders embedded in the epoxy matrix for square lattice. The point defect is introduced by changing one of the cylinders' radii. The results show that the defect modes exist in the first band gap, the frequencies and the numbers of the defect modes are strongly dependent on the defect filling fraction and the filling fraction. All the flat defect bands appearing in the first band gap are nondegenerate. For a given defect filling fraction, there are up to five nondegenerate defect bands emerging inside the first band gap, and the frequencies of defect bands increase with the filling fraction increases. The defect bands disappear at very low or very high filling fractions. For a given filling fraction, three nondegenerate defect bands appearing near the upper edge of the gap move to the middle as the defect filling fraction is reduced, and the edges of the first band gap remain hardly changed. The study of the displacement distributions associated with the three defect modes shows that the flat bands correspond to the special localized frequencies of the waves. For the two lower defect modes, the displacement amplitudes around the defect are much bigger than that at or far away from the defect. However, for the higher defect mode, the displacement amplitude reaches the maximum at the location of the defect and decays rapidly with the distance away from that. Obviously, the bending waves correspond to such three modes are so localized at or near the defect that they can not escape into the surrounding phononic crystals. That is, the point defect behaves like a resonant vacant.
声子晶体薄板弯曲波的点缺陷态
利用超级单体技术结合改进平面波展开法,研究了弯曲波在带点缺陷声子晶体薄板中的能带结构。该板由嵌入方形晶格的环氧树脂基体中的周期性圆形Al2O3圆柱体晶体阵列组成。点缺陷是通过改变其中一个圆柱体的半径来引入的。结果表明,缺陷模存在于第一带隙中,缺陷模的频率和数量与缺陷填充率和填充率有密切关系。在第一个带隙中出现的所有扁平缺陷带都是非简并的。对于给定的缺陷填充分数,在第一个带隙内出现多达5个非简并缺陷带,并且缺陷带的频率随着填充分数的增加而增加。缺陷带在非常低或非常高的填充分数时消失。对于给定的填充分数,随着缺陷填充分数的减小,出现在间隙上边缘附近的三个非简并缺陷带向中间移动,而第一带隙的边缘几乎没有变化。对三种缺陷模的位移分布的研究表明,平带对应于波的特定局域频率。对于两种低缺陷模态,缺陷周围的位移幅值远大于缺陷处或远离缺陷处的位移幅值。而对于较高缺陷模态,位移幅值在缺陷位置处达到最大值,并随着距离缺陷位置的增加而迅速衰减。显然,与这三种模式相对应的弯曲波是如此局限于缺陷或缺陷附近,以至于它们无法逃逸到周围的声子晶体中。也就是说,点缺陷表现为谐振空穴。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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