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Bleustein-Gulyaev waves in a transversely isotropic piezoelectric layered structure with an imperfectly bonded interface

机译:界面不完全键合的横观各向同性压电层状结构中的Bleustein-Gulyaev波

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摘要

Bleustein-Gulyaev (BG) waves in a transversely isotropic piezoelectric substratelayer structure with an imperfectly bonded interface are investigated, and the dispersion equations with respect to the phase velocity are obtained for both electrically open and shorted conditions. The phase velocity achieves a value that is small relative to the BG wave velocity of the piezoelectric layer when the interface is imperfect. Meanwhile, the imperfect interface has a strong influence on the electromechanical coupling factor. The effect of the imperfect interface on the particular BG wave, which can only propagate in the layer, is investigated, with the aim of reducing the penetration depth of BG waves. The outcome is widely applicable, and it can be utilized in the design of surface acoustic wave devices with high performance.
机译:研究了界面不完全键合的横向各向同性压电基底层结构中的Bleustein-Gulyaev(BG)波,并针对电断开和短路条件获得了相对于相速度的色散方程。当界面不完美时,相速度获得的值相对于压电层的BG波速而言较小。同时,不完善的界面对机电耦合系数有很大的影响。为了减少BG波的穿透深度,研究了不完善的界面对仅在层中传播的特定BG波的影响。结果是广泛适用的,并且可以用于高性能表面声波装置的设计中。

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