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用于空气耦合超声应用的集成匹配层的表征与评估

Characterization and assessment of an integrated matching layer for air-coupled ultrasonic applications.

作者信息

Kelly Stephen P, Hayward Gordon, Alvarez-Arenas Tomás E Gómez

机构信息

Mitsui Babcock, Renfrew, Scotland PA4 8DJ.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2004 Oct;51(10):1314-23. doi: 10.1109/tuffc.2004.1350960.

Abstract

A novel ultrasonic matching layer for improving coupling between piezoelectric transducers and an air load is presented and the results of a theoretical and experimental program of work are provided. A combination of a porous material that has very low acoustic impedance with a low-density rubber material forms the basis of the approach. These matching layers were first analyzed experimentally using scanning electron and optical microscopy to determine the microscopic structure. Air-coupled resonance measurements were then performed to reveal the acoustic parameters of the individual layers that were identified within this multilayered structure. These data were then incorporated into a conventional linear model, and this has been verified and used to study performance and produce designs. Close correlation between experiment and theory is demonstrated. The most efficient designs have been implemented in a pitch/catch air-coupled system, and an improvement in received signal amplitude of 30 dB was achieved when compared with the unmatched case.

摘要

提出了一种用于改善压电换能器与空气负载之间耦合的新型超声匹配层,并给出了理论和实验研究结果。该方法的基础是将具有极低声阻抗的多孔材料与低密度橡胶材料相结合。首先使用扫描电子显微镜和光学显微镜对这些匹配层进行实验分析,以确定其微观结构。然后进行空气耦合共振测量,以揭示该多层结构中各层的声学参数。这些数据随后被纳入传统的线性模型,该模型已得到验证并用于研究性能和进行设计。实验与理论之间呈现出密切的相关性。最有效的设计已应用于一个收发分离式空气耦合系统中,与未匹配的情况相比,接收信号幅度提高了30 dB。

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