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具有良好固体耦合性能的PZT微加工压电超声换能器的设计、特性表征及分析

Design, Characterization, and Analysis of PZT Micromachined Piezoelectric Ultrasonic Transducers With Good Coupling to Solids.

作者信息

Xing Zhanqiang, Ji Weiliang, Sun Xiangyu, Chen Yu, Du Yijia, Li Xiaoshi, Liu Lifang

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2020 Oct;67(10):2135-2141. doi: 10.1109/TUFFC.2020.2995424. Epub 2020 May 19.

Abstract

This article presents the piezoelectric micromachined ultrasonic transducer (PMUT) and its arrays that were based on a sputtered PZT/Si diaphragm structure and prototyped from an SOI substrate. Due to the high piezoelectric coefficient of PZT, polarization tuning pretreatment, and membrane thickness optimization, the PMUT shows high transmitting sensitivity in air and good coupling capability to liquid and solid. The PMUT transmitter exhibited a high sensitivity of 809, 190, and 135 nm/V at a resonant frequency of 0.450, 0.887, and 1.689 MHz, respectively, in air. The 5 ×5 array of 0.5-MHz PMUTs' acoustic output in water was measured as 42.4 Pa at a distance of 3 cm with a 10.0- [Formula: see text] input. Thickness-measuring ability in solids was evaluated with an 8 ×8 array of 1-MHz PMUTs as transmitter providing 8.0- [Formula: see text] input and another single PMUT of identical frequency response as receiver showing 0.2 [Formula: see text] (after 20 times magnification) output when the acoustic wave was transmitted through a 5-cm-thick graphite plate. Meanwhile, the time response of the receiver through different thicknesses of graphite plates is in reasonable agreement with predication from the analytical calculation. This high-performance PMUT with good coupling to solids will be utilized in various applications for solid-state sensing and detecting or as an alternative to the bulk piezoelectric ceramic transducers in the near future.

摘要

本文介绍了基于溅射PZT/Si膜片结构并由SOI衬底制作原型的压电微机械超声换能器(PMUT)及其阵列。由于PZT的高压电系数、极化调谐预处理和膜厚优化,该PMUT在空气中表现出高发射灵敏度,并且对液体和固体具有良好的耦合能力。在空气中,PMUT发射器在0.450、0.887和1.689 MHz的共振频率下分别表现出809、190和135 nm/V的高灵敏度。5×5阵列的0.5 MHz PMUT在水中,在3 cm距离处,10.0 - [公式:见原文]输入时的声学输出测量为42.4 Pa。用8×8阵列的1 MHz PMUT作为发射器提供8.0 - [公式:见原文]输入,以及另一个频率响应相同的单个PMUT作为接收器,当声波透过5 cm厚的石墨板时,评估固体中的厚度测量能力,接收器输出为0.2 [公式:见原文](放大20倍后)。同时,接收器通过不同厚度石墨板的时间响应与解析计算的预测结果合理吻合。这种与固体具有良好耦合的高性能PMUT在不久的将来将用于各种固态传感和检测应用,或作为块状压电陶瓷换能器的替代品。

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