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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Effect on High-Intensity Fields of a Tough Hydrophone With Hydrothermal PZT Thick-Film Vibrator and Titanium Front Layer
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Effect on High-Intensity Fields of a Tough Hydrophone With Hydrothermal PZT Thick-Film Vibrator and Titanium Front Layer

机译:含热液PZT厚膜振子和钛前层的强韧水听器对高强度场的影响

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A novel tough hydrophone was fabricated by depositing hydrothermally synthesized lead zirconate titanate polycrystalline film on the back-side surface of a titanium plate. Our developed tough hydrophone resisted damage in a high-pressure field (15 MPa) at a focal point of a sinusoidal continuous wave driven by a concave high-intensity focused ultrasound (HIFU) transducer with up to 50 W of power input to the sound source. The hydrophone was suitable for the HIFU field, even though the hydrophone has a flat-shape tip of 3.5 mm diameter, which is slightly larger than the wavelength of a few megahertz. In this paper, experiments are performed to assess the effect on the HIFU field of changing the shape of the tough hydrophone, with the aim of developing a tough hydrophone. The spatial distribution of the acoustic bubbles around the focal point was visualized by using ultrasonic diagnostic equipment with the tough hydrophone located at the focal point of the HIFU transducer. From the visualization, the trapped acoustic bubbles were seen to arise from the standing wave, which implies that the acoustic pressure is reduced by this cloud of acoustic bubbles that appeared during hydrophone measurement. Although cavitation and acoustic bubbles may be unavoidable when using high-intensity ultrasound, the estimated result of evaluating acoustic fields without misunderstanding by acoustic bubbles can be obtained by the aid of visualizing bubbles around the tough hydrophone.
机译:通过在钛板的背面上沉积水热合成的锆钛酸钛酸铅多晶膜来制造新颖的强力水听器。我们开发的坚固水听器可抵抗由凹形高强度聚焦超声(HIFU)换能器驱动的正弦连续波焦点处高压场(15 MPa)的损坏,该功率最高可将50 W功率输入到声源。即使该水听器具有直径为3.5 mm的扁平形尖端(略大于几兆赫兹的波长),也适合HIFU领域。在本文中,进行实验以评估改变硬水听器的形状对HIFU领域的影响,目的是开发硬水听器。通过使用超声诊断设备将坚固的水听器置于HIFU换能器的焦点上,可以观察到焦点周围声泡的空间分布。从可视化中可以看出,捕获的声气泡是由驻波产生的,这意味着声压会因水听器测量期间出现的声气泡云而降低。尽管在使用高强度超声时可能会不可避免地发生气蚀和声气泡,但借助可视化坚硬水听器周围的气泡,可以获得评估声场而不会被声气泡误解的估计结果。

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