声学超材料
超材料
材料科学
宽带
带隙
波传播
干扰(通信)
声学
剪切(地质)
横波
光学
光电子学
复合材料
物理
计算机科学
电信
频道(广播)
作者
Wenlong Liu,Bing Yi,Gil Ho Yoon,Hyunggyu Choi
标识
DOI:10.1002/adem.202000645
摘要
Metamaterials that can be used in manipulating wave propagation have been shown in previous research. However, existing methods for controlling the propagation of shear waves remain a challenge. By combining the principle of wave destructive interference and the design concept of the gradient‐index phononic crystals, here new functionally graded phononic crystals with broadband gap for controlling shear wave propagation are presented. The proposed functionally graded phononic crystals are formed by an array of unit cells with different topological geometries, where the topological geometries of the unit cell are tailored to obtain the frequency bandgap guided by the wave destructive interference. Meanwhile, the frequency bandgap with a target width is obtained by combining the design concept of the gradient‐index phononic crystals. This work presents an approach to control the propagation of shear waves, and the advantages of the method reported in this work can be useful in engineering applications, such as bridges, railways, and buildings.
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