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Self-propelled Swimmer Propulsion System using SAW and BAW

机译:使用锯和斜拉的自推进游泳运动员推进系统

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Many researches on self-propelled swimmer actuators using ultrasonic vibrators have been discussed with acoustic streaming. However we suggest that this is due to the acoustic radiation force caused by the acoustic impedance difference. In this research, we make two kinds of swimmers using surface acoustic wave (SAW) that generates 9.6MHz Rayleigh wave and bulk acoustic wave (BAW) that generates 1.6MHz Bulk wave, and compare the thrust of swimmers calculated acoustic radiation force from vibration velocity and measure using digital force gauge. The results show that the order of thrusts of SAW and BAW are much different. The movement of the interface between the ultrasonic transducer and the liquid is required to discuss more strictly.
机译:已经讨论了使用超声波振动器的自推进游泳器执行器的许多研究,声学流媒体已经讨论过。然而,我们建议这是由于声阻抗差异引起的声学辐射力。在这项研究中,我们使用表面声波(SAW)制作两种游泳运动员,所述表面声波(SAW)产生9.6MHz RAYLEIGH波和散装声波(BAW),产生1.6MHz散装波,并比较游泳者计算出从振动速度计算的声学辐射力的推力并使用数字力量计措施。结果表明,锯和斩波的推动顺序很大。需要更严格地讨论超声换能器和液体之间的界面的运动。

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