Evaluation of gallium-indium alloy as an acoustic couplant for high-impedance, high-frequency applications

M. Culjat, Rahul S. Singh, S. White, R. Neurgaonkar, E. Brown
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引用次数: 12

Abstract

Materials are investigated for coupling ultrasound between solid piezoelectric transducers and solid targets having acoustic impedances ranging between 10–20 MRayl. The majority of available acoustic couplants have impedances below 5 MRayl, leading to large surface reflections and acoustic losses. The desired couplant is preferably liquid or semiliquid with good conformability and low attenuation. This study examines the acoustic properties of various couplants, including gallium–indium alloys. Transmission tests were conducted at 19 MHz, concluding that these alloys are most appropriate for the stated application, with low attenuation, high acoustic impedance (17.4 MRayl), and a measured compressional velocity of 2740 m/s.
镓铟合金作为高阻抗、高频应用的声学耦合剂的评价
研究了声阻抗在10 - 20mrayl之间的固体压电换能器和固体目标之间的超声耦合材料。大多数可用的声学耦合器的阻抗低于5mrayl,导致大的表面反射和声学损失。所期望的耦合剂优选为液体或半液体,具有良好的一致性和低衰减。本研究考察了各种耦合剂的声学特性,包括镓铟合金。在19 MHz的频率下进行了传输测试,得出的结论是,这些合金最适合上述应用,具有低衰减、高声阻抗(17.4 MRayl)和测量的压缩速度为2740 m/s。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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