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扭转-弯曲复合振动模式的预应力夹心压电陶瓷超声换能器研究

Study on the prestressed sandwich piezoelectric ceramic ultrasonic transducer of torsional-flexural composite vibrational mode.

作者信息

Shuyu Lin

机构信息

Applied Acoustics Institute, Shaanxi Normal University, Xian, People's Republic of China.

出版信息

J Acoust Soc Am. 2002 Aug;112(2):511-7. doi: 10.1121/1.1492819.

Abstract

Based on the classical torsional and flexural vibrational theory of a slender rod, the prestressed sandwich torsional-flexural composite mode piezoelectric ceramic ultrasonic transducer is studied. This type of transducer consists of the slender metal rods and the longitudinally and tangentially polarized piezoelectric ceramic rings. The resonance frequency equations for the torsional and flexural vibrations in the transducers are derived. The simultaneous resonance of the torsional and flexural vibrations in the transducer is acquired by correcting the length of the metal slender rods resulting from the piezoelectric ceramic elements. The experimental results show that the measured resonance frequencies of the transducers are in good agreement with the computed ones, and the measured resonance frequencies of the torsional and the flexural vibrations in the composite transducers are also in good agreement with each other.

摘要

基于细长杆的经典扭转和弯曲振动理论,对预应力夹心扭转 - 弯曲复合模态压电陶瓷超声换能器进行了研究。这种类型的换能器由细长金属杆和纵向及切向极化的压电陶瓷环组成。推导了换能器中扭转和弯曲振动的共振频率方程。通过校正由压电陶瓷元件引起的金属细长杆的长度,实现了换能器中扭转和弯曲振动的同时共振。实验结果表明,换能器的实测共振频率与计算值吻合良好,复合换能器中扭转和弯曲振动的实测共振频率也相互吻合良好。

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