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Characterizing ultra-thin matching layers of high-frequency ultrasonic transducer based on impedance matching principle

机译:基于阻抗匹配原理的高频超声换能器超薄匹配层

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摘要

The quarter-wavelength (/spl lambda//4) acoustic matching layer is a vital component in medical ultrasonic transducers, which can compensate for the large acoustic impedance mismatch between the piezoelectric material and the human body. At high frequencies (/spl sim/100 MHz), the /spl lambda//4 matching layers become extremely thin, and the characterization of their properties becomes very challenging. We report a method to measure the phase velocity and attenuation of ultra-thin layers using the /spl lambda//4 matching principle, in which the acoustic impedance of the thin layer is between the substrate and water. The method has been successfully used to characterize epoxy films on glass substrate. The experimental results show good agreement in the phase-velocity measurement between our proposed method and the conventional ultrasonic spectroscopy method, but the attenuation measurement is sensitive to the properties of the substrate and water medium as well as the alignment of the sample.
机译:四分之一波长(/ SPL Lambda // 4)声学匹配层是医用超声换能器中的重要组件,其可以补偿压电材料和人体之间的大声阻抗失配。在高频(/ SPL SIM / 100 MHz)时,/ SPL Lambda // 4匹配层变得非常薄,其性质的表征变得非常具有挑战性。我们报告了使用/ SPL Lambda // 4匹配原理测量超细层的相速度和衰减的方法,其中薄层的声阻抗在基板和水之间。该方法已成功地用于在玻璃基板上表征环氧薄膜。实验结果表明我们所提出的方法和传统超声波谱法之间的相位速度测量良好的一致性,但衰减测量对基板和水介质的性质敏感,以及样品的比对。

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