夹紧
传感器
解耦(概率)
轮缘
超声波传感器
声学
压电
有限元法
铰链
材料科学
结构工程
物理
机械工程
工程类
复合材料
控制工程
作者
F. J. Wang,H. J. Zhang,Cunman Liang,Yanling Tian,Xingyu Zhao,D. W. Zhang
摘要
This work presents the flexure-mechanism based decoupling design between high frequency piezoelectric ultrasonic transducers and their clamping connections to improve ultrasonic energy transmission efficiency. The ring, prismatic beam, and circular notched hinge based flanges were presented, and the crucial geometric dimensions of the transducers with the flexure decoupling flanges were determined. Finite element analysis (FEA) was carried out to investigate the dynamic characteristics of the transducers. Finally, experiments were conducted to examine and verify the effects of the proposed decoupling flanges. FEA and experimental results show that smaller frequency deviations and larger tip displacement amplitudes have been achieved by using the transducers with the flexure flanges compared with the transducer with a rigid ring-type flange, and thus the ultrasonic transmission efficiency can be improved through the flexure flanges.
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