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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >An Ultrasonic Tweezer With Multiple Manipulation Functions Based on the Double-Parabolic-Reflector Wave-Guided High-Power Ultrasonic Transducer
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An Ultrasonic Tweezer With Multiple Manipulation Functions Based on the Double-Parabolic-Reflector Wave-Guided High-Power Ultrasonic Transducer

机译:一种基于双抛物反射波引导大功率超声换能器的多种操纵功能的超声波镊子

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摘要

The development of ultrasonic tweezers with multiple manipulation functions is challenging. In this work, multiple advanced manipulation functions are implemented for a single-probe-type ultrasonic tweezer with the double-parabolic-reflector wave-guided high-power ultrasonic transducer (DPLUS). Due to strong high-frequency (1.49 MHz) linear vibration at the manipulation probe’s tip, which is excited by the DPLUS, the ultrasonic tweezer can capture microobjects in a noncontact mode and transport them freely above the substrate. The captured microobjects that adhere to the probe’s tip in the low-frequency (154.4 kHz) working mode can be released by tuning the working frequency. The results of the finite-element method analyses indicate that the manipulations are caused by the acoustic radiation force.
机译:具有多种操作功能的超声波镊子的开发是具有挑战性的。在这项工作中,为单抛抛光反射波引导大功率超声换能器(DPLUS)的单探头型超声波镊子实现了多种高级操作功能。由于探测器尖端的强大高频(1.49 MHz)线性振动,这是由DPLUS兴奋的,超声波镊子可以以非接触模式捕获微型机制,并在基板上方自由运输。通过调整工作频率,可以通过调整工作频率来释放粘附在低频(154.4 kHz)工作模式中的探头尖端的捕获的微型目标。有限元方法分析的结果表明操纵是由声学辐射力引起的。

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