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Hydrodynamic Tweezers: Trapping and Transportation in Microscale Using Vortex Induced by Oscillation of a Single Piezoelectric Actuator

机译:流体动力学镊子:使用单个压电执行器振荡引起的涡流引起的微尺度捕获和运输

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摘要

The demand for a harmless noncontact trapping and transportation method in manipulation and measurement of biological micro objects waits to be met. In this paper, a novel micromanipulation method named “Hydrodynamic Tweezers” using the vortex induced by oscillating a single piezoelectric actuator is introduced. The piezoelectric actuator is set between a micropipette and a copper beam. Oscillating the actuator at a certain frequency causes the resonance of the copper beam and extend 1D straight oscillation of the piezoelectric actuator to 2D circular oscillation of the micropipette, which induces a micro vortex after putting the micropipette into fluid. The induced vortex featuring low pressure in its core area can trap the object nearby. A robotic micromanipulator is utilized to transport the trapped objects together with the micropipette. Experiments of trapping and transportation microbeads are carried out to characterize the key parameters. The results show that the trapping force can be controlled by adjusting peak-peak voltage of the sinusoidal voltage input into the piezoelectric actuator.
机译:在操纵和测量生物微对象中对无害的非接触捕获和运输方法的需求等待满足。在本文中,引入了使用通过振荡振荡振荡振荡引起的涡流的“流体动力镊子”的新型微操纵方法。压电致动器设置在微移液管和铜束之间。以一定频率振荡致动器导致铜光束的谐振并将压电致动器的延伸1D直线振荡延伸到微型插脚的2D圆形振荡,这在将微型管放入流体之后诱导微涡流。其核心区域中具有低压的诱导涡流可以捕获附近的物体。机器人微操纵器用于将捕获的物体与微移液管一起运输。进行捕获和运输微珠的实验,以表征关键参数。结果表明,可以通过将输入输入的正弦电压的峰值峰值电压调节到压电致动器中来控制捕获力。

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