Propagation behavior and low frequency band gap of transverse shear-horizontal interface waves in two perfectly-bonded functionally-graded half-spaces

Xiaoshan Cao, Yixun Niu, Jun Shi
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Abstract

An analytical solution is carried out on the propagation of the transverse shear-horizontal interface waves in the perfect interface of two functionally graded half-spaces in which the bulk shear wave velocities at the positive and the negative infinite point are different. The dispersion curves results reveal a special phenomenon that the low frequency shear-horizontal waves cannot propagate in the structure but the high frequency shear-horizontal waves can. By analyzing the amplitude of the displacement, it is found that the energy hardly concentrate on the interface in this structure. The theoretical foundation of the transverse shear interface waves and their low frequency band gaps can serve as a basis for graded material characterization and for designing novel acoustic devices.
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横向剪切-水平界面波在两个完全键合的功能梯度半空间中的传播特性和低频带隙
本文给出了横向剪切-水平界面波在正无穷点和负无穷点体横波速度不同的两个功能梯度半空间完美界面中的传播解析解。频散曲线结果揭示了一个特殊现象,即低频横切波不能在结构中传播,而高频横切波却能在结构中传播。通过对位移幅值的分析,发现在这种结构中能量几乎没有集中在界面上。横向剪切界面波及其低频带隙的理论基础可以作为梯度材料表征和设计新型声学器件的基础。
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