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Fundamental Study on High-Frequency Ultrasound Probes Fabricated by Aerosol Deposition Method and Hydrothermal Method

机译:气溶胶沉积法和水热法制备高频超声探头的基础研究

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The ultrasound probes utilized in this study were fabricated using lead zirconium titanate (PZT), which was deposited using two different methods-the aerosol deposition (AD) method and the hydrothermal method. The fabricated ultrasound probes had the same structure wherein an electrode and an acoustic backing block were attached to each transducer. In this study, we have compared the acoustic characteristics of a high-frequency ultrasound probe fabricated by the AD method with those of a probe fabricated using the hydrothermal method; further, we have studied and hence determined the optimal process that can be used in the fabrication of high-frequency ultrasound probes with a resonance frequency of 40 MHz. As a result, when the pickup voltage was compared, the ultrasound probes fabricated by the AD method exhibited a value 9.5 times higher than that of the probes fabricated by the hydrothermal method. Moreover, the ultrasound probes fabricated by the AD method were found to transmit pulses at resonance frequencies of 28 MHz, 45-50 MHz, and 82-88 MHz.
机译:本研究中使用的超声探头是用钛酸铅锆(PZT)制成的,钛酸锆的沉积使用两种不同的方法进行沉积-气溶胶沉积(AD)方法和水热法。所制造的超声探头具有相同的结构,其中在每个换能器上连接了一个电极和一个声衬板。在这项研究中,我们比较了用AD法制造的高频超声探头和使用水热法制造的探头的声学特性。此外,我们已经研究并确定了可用于制造谐振频率为40 MHz的高频超声探头的最佳工艺。结果,当比较拾取电压时,通过AD法制造的超声探头的值比通过水热法制造的超声探头的值高9.5倍。此外,发现通过AD方法制造的超声探头以28MHz,45-50MHz和82-88MHz的共振频率发射脉冲。

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