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Design and Initial Experiments of A Micro Vibration Based Micromanipulator

机译:基于微振动的微操纵器的设计与初步实验

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摘要

A high-frequency and micro-amplitude vibration based micromanipulator is proposed, which is composed of a micro-motion parallel mechanism having three pure translational degrees of freedom and a micro-vibration unit having one degree of freedom. The micro-vibration unit is fixed on movable platform of the parallel mechanism, and an glass operational needle is connected with the micro-vibration unit The needle can perform micro operational tasks while the movable platform of parallel mechanism moves in a large region and the unit vibrates with high frequency and micro amplitude. The kinematic and structural parameters of the micro-motion mechanism and vibration unit are designed, the PZT actuators are chosen, and a micromanipulator prototype is fabricated. An experiment system is set up in which the micromanipulator is adopted as a main module. The performance of micromanipulator is validated through two initial operational experiments, one is the vibrational injection of cow oocyte, another is the windowing of cow oocyte membrane, the results of experiments show that the micromanipulator can complete these operations successfully.
机译:提出了一种基于高频和微振幅振动的微操纵器,其由具有三个纯平移自由度的微运动并联机构和具有一个自由度的微振动单元组成。微振动单元固定在并联机构的可移动平台上,并且玻璃操作针与微振动单元连接。当并联机构的可移动平台在大范围内移动时,该针可以执行微操作任务。以高频和微振幅振动。设计了微运动机构和振动单元的运动学和结构参数,选择了PZT致动器,并制造了微操纵器原型。建立了以微操纵器为主要模块的实验系统。通过两个初始操作实验验证了微操纵器的性能,一个是对牛卵母细胞的振动注射,另一个是牛卵母细胞膜的开窗,实验结果表明,该微操纵器可以成功完成这些操作。

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