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Acoustic impedance matching of piezoelectric transducers to the air

机译:压电换能器与空气的声阻抗匹配

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摘要

The purpose of this work is threefold: to investigate material requirements to produce impedance matching layers for air-coupled piezoelectric transducers, to identify materials that meet these requirements, and to propose the best solution to produce air-coupled piezoelectric transducers for the low megahertz frequency range. Toward this end, design criteria for the matching layers and possible configurations are reviewed. Among the several factors that affect the efficiency of the matching layer, the importance of attenuation is pointed out. A standard characterization procedure is applied to a wide collection of candidate materials to produce matching layers. In particular, some types of filtration membranes are studied. From these results, the best materials are identified, and the better matching configuration is proposed. Four pairs of air-coupled piezoelectric transducers also are produced to illustrate the performance of the proposed solution. The lowest two-way insertion loss figure is -24 dB obtained at 0.45 MHz. This increases for higher frequency transducers up to -42 dB at 1.8 MHz and -50 at 2.25 MHz. Typical bandwidth is about 15-20%.
机译:这项工作的目的是三方面的:研究材料要求以生产用于空气耦合压电换能器的阻抗匹配层,确定满足这些要求的材料,并提出生产低兆赫兹频率的空气耦合压电换能器的最佳解决方案范围。为此,对匹配层的设计标准和可能的配置进行了审查。在影响匹配层效率的几个因素中,指出了衰减的重要性。将标准的表征过程应用于大量候选材料以产生匹配层。特别地,研究了某些类型的过滤膜。从这些结果中,可以确定出最好的材料,并提出了更好的匹配配置。还生产了四对空气耦合压电传感器,以说明所提出解决方案的性能。最低的双向插入损耗数字是在0.45 MHz处获得的-24 dB。对于更高频率的换能器,在1.8 MHz时可达-42 dB,在2.25 MHz时可达-50,这会增加。典型的带宽约为15-20%。

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