Wu Bowei, Kang Pengfei, Ma Tingfeng, Yao Yuming, Gan Ning, Li Peng, Qian Zhenghua, Kuznetsova Iren, Nedospasov Ilya, Hu Wenhui
School of Mechanical Engineering and Mechanics, Ningbo University, Ningbo 315211, China.
Keli Sensing Technology (Ningbo) Co., Ltd., Ningbo 315033, China.
Micromachines (Basel). 2023 Nov 27;14(12):2162. doi: 10.3390/mi14122162.
In this work, high-frequency forced vibrations of lateral field excitation (LFE) devices with stepped electrodes based on monoclinic crystals GdCOB are modeled, and the influence laws of the device parameters (the step number, size, and thickness of the stepped electrodes) on the energy-trapping effects of the device are revealed. The results show that the step number has a significant effect on the energy-trapping effect of the device: with the increase in the step number, the stronger energy-trapping effect of the device can be obtained; with the increase in the thickness difference of two layers of electrodes, the energy-trapping effect of the device becomes stronger; with the increase in the difference of the electrode radius, the energy-trapping effect of the device is enhanced gradually. The results of this work can provide an important theoretical basis for the design of stepped-electrode LFE resonators and sensors with high-quality factors based on monoclinic crystals.
在这项工作中,对基于单斜晶体GdCOB的具有阶梯状电极的横向场激励(LFE)器件的高频强迫振动进行了建模,并揭示了器件参数(阶梯状电极的阶数、尺寸和厚度)对器件能量俘获效应的影响规律。结果表明,阶数对器件的能量俘获效应有显著影响:随着阶数的增加,可以获得器件更强的能量俘获效应;随着两层电极厚度差的增加,器件的能量俘获效应变强;随着电极半径差的增加,器件的能量俘获效应逐渐增强。这项工作的结果可为基于单斜晶体的高品质因数阶梯状电极LFE谐振器和传感器的设计提供重要的理论依据。