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Generation of swirl flow by needle vibration for micro manipulation

机译:通过针头振动产生旋流,用于微操作

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Recently micro manipulation techniques for cell or microorganism has attracted attention in life sciences. In this paper, non-contact manipulation method using water stream is proposed. Water stream is generated by a glass needle vibration that is actuated by a piezoelectric actuator. The stream is controlled by changing input voltage or frequency to the actuator. An accuracy of the motion of a piezoelectric actuator is in nano-meter order, so the stream is considered to be controlled precisely. The manipulator works in 3 dimensional space, that means water stream is generated in 3d space. We focused on the rotational stream generated by the glass needle 2-dimensional circular vibration. By using the resonance in a structure of the manipulator and the actuator's vibration, circular vibration can be generated by only one actuator. There is no need to use two actuators for generating circular vibration, so the structure of the manipulator is quite simple. In this paper rotational stream around the glass needle is also analyzed in 3d space using micro beads. This manipulator has the similar characteristics to the existing research of contact manipulation, so we think our method also have the capability to conduct contact manipulation.
机译:最近,用于细胞或微生物的微操作技术在生命科学中引起了人们的注意。本文提出了一种利用水流的非接触式操纵方法。水流是由压电致动器致动的玻璃针振动产生的。通过改变执行器的输入电压或频率来控制流。压电致动器的运动精度为纳米量级,因此认为该流被精确地控制了。机械手在3维空间中工作,这意味着在3d空间中会产生水流。我们专注于玻璃针二维圆周振动产生的旋转流。通过利用机械手的结构中的共振和致动器的振动,仅一个致动器就可以产生圆形振动。不需要使用两个致动器来产生圆形振动,因此机械手的结构非常简单。在本文中,还使用微珠在3d空间中分析了玻璃针周围的旋转流。该操纵器具有与现有接触操纵研究相似的特征,因此我们认为我们的方法也具有进行接触操纵的能力。

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