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Experimental study of underwater transmission characteristics of high-frequency 30 MHz polyurea ultrasonic transducer

机译:30 MHz高频聚脲超声换能器水下传输特性的实验研究

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摘要

In this paper, we present the transmission characteristics of a polyurea ultrasonic transducer operating in water. In this study, we used a polyurea transducer with fundamental resonance at approximately 30 MHz. Firstly, acoustic pressure radiated from the transducer was measured using a hydrophone, which has a diameter of 0.2 mm. The transmission characteristics such as relative bandwidth, pulse width, and acoustic sensitivity were calculated from the experimental results. The results of the experiment showed a relative bandwidth of 50% and a pulse width of 0.061 μs. The acoustic sensitivity was 0.60 kPa/V with good linearity, where the correlation coefficient R in the fitting calculation was 0.996. A maximum pressure of 13.1 kPa was observed when the transducer was excited at a zero-to-peak voltage of 21 V. Moreover, we experimentally verified the results. The results of the pulse/echo experiment showed that the estimated diameters of the copper wires were 458 and 726 μm, where the differences between the actual and measured values were 15% and 4%, respectively. Acoustic streaming was also observed so that a particle velocity map was estimated by particle image velocimetry (PIV). The sound pressure calculated from the particle velocity obtained by PIV showed good agreement with the acoustic pressure measured using the hydrophone, where the differences between the calculated and measured values were 12-19%.
机译:在本文中,我们介绍了在水中运行的聚脲超声换能器的传输特性。在这项研究中,我们使用了具有大约30 MHz基本共振的聚脲换能器。首先,使用直径为0.2mm的水听器测量从换能器辐射的声压。从实验结果计算出传输特性,例如相对带宽,脉冲宽度和声学灵敏度。实验结果表明相对带宽为50%,脉冲宽度为0.061μs。声学灵敏度为0.60 kPa / V,线性良好,拟合计算中的相关系数R为0.996。当以21 V的零峰电压激励换能器时,观察到最大压力为13.1 kPa。此外,我们通过实验验证了结果。脉冲/回波实验的结果表明,铜线的估计直径为458和726μm,实际值与测量值之间的差异分别为15%和4%。还观察到声流,从而通过粒子图像测速(PIV)估计了粒子速度图。由PIV获得的粒子速度计算出的声压与使用水听器测得的声压显示出良好的一致性,其中,计算值与测量值之差为12-19%。

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