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Excitation and propagation of shear horizontal waves in a piezoelectric layer imperfectly bonded to a metal or elastic substrate

机译:不完全结合到金属或弹性基材上的压电层中的水平剪切波的激发和传播

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摘要

The performance of shear horizontal waves excited by an external voltage imposed on the surface of a transversely isotropic piezoelectric sensitive layer imperfectly bonded to a metal or elastic substrate is investigated. The phase velocity, electromechanical coupling factor, temperature coefficient of delay, mass loading sensitivity, and displacement distribution along the thickness direction for the propagation of free waves, resonance frequency, and displacement signal and input admittance for the forced vibration are considered. Numerically, the SH wave speed smaller than Bleustein-Gulyaev wave velocity of a piezoelectric layer can be achieved for electrically open and shorted conditions when the interface is imperfect, which is totally different from the case of perfect interface. The imperfect interface evidently improves the energy transformation ratio, temperature stability, and mass sensitivity of the composite structure. The viscoelastic damping parameter has no relationship with resonance frequencies, and it only decreases the amplitudes of displacement signal and input admittance. The outcome is widely applicable and can be used to design high-performance surface acoustic wave devices.
机译:研究了由施加在不完全粘结到金属或弹性基板上的横向各向同性压电敏感层表面上的外部电压激发的水平剪切波的性能。考虑了相速度,机电耦合因数,延迟温度系数,质量载荷敏感性以及自由波传播沿厚度方向的位移分布,共振频率,位移信号和强迫振动的输入导纳。在数值上,当界面不完美时,在电断开和短路的情况下,可以实现小于压电层Bleustein-Gulyaev波速的SH波速,这与完美界面的情况完全不同。不完善的界面明显改善了复合结构的能量转化率,温度稳定性和质量敏感性。粘弹性阻尼参数与共振频率无关,它仅减小位移信号和输入导纳的幅度。结果广泛适用,可用于设计高性能表面声波器件。

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