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使用压电双晶片开发微型夹爪。

Development of a micro-gripper using piezoelectric bimorphs.

机构信息

Department of Biomedical Engineering, Faculty of Engineering, University of Malaya, Kuala Lumpur 50603, Malaysia.

出版信息

Sensors (Basel). 2013 May 7;13(5):5826-40. doi: 10.3390/s130505826.

Abstract

Piezoelectric bimorphs have been used as a micro-gripper in many applications, but the system might be complex and the response performance might not have been fully characterized. In this study the dynamic characteristics of bending piezoelectric bimorphs actuators were theoretically and experimentally investigated for micro-gripping applications in terms of deflection along the length, transient response, and frequency response with varying driving voltages and driving signals. In addition, the implementation of a parallel micro-gripper using bending piezoelectric bimorphs was presented. Both fingers were actuated separately to perform mini object handling. The bending piezoelectric bimorphs were fixed as cantilevers and individually driven using a high voltage amplifier and the bimorph deflection was measured using a non contact proximity sensor attached at the tip of one finger. The micro-gripper could perform precise micro-manipulation tasks and could handle objects down to 50 µm in size. This eliminates the need for external actuator extension of the microgripper as the grasping action was achieved directly with the piezoelectric bimorph, thus minimizing the weight and the complexity of the micro-gripper.

摘要

压电双晶片在许多应用中被用作微夹爪,但系统可能比较复杂,并且响应性能可能尚未完全表征。在这项研究中,从挠度沿长度、瞬态响应和频率响应等方面,针对微夹持应用,理论和实验研究了弯曲压电双晶片致动器的动态特性,其驱动电压和驱动信号有所变化。此外,还提出了一种使用弯曲压电双晶片的并行微夹爪。两个手指分别被驱动以执行小型物体的处理。弯曲的压电双晶片被固定为悬臂梁,并使用高压放大器单独驱动,并且使用附接到一个手指尖端的非接触式接近传感器测量双晶片的挠度。微夹爪可以执行精确的微操作任务,并且可以处理尺寸小至 50 µm 的物体。这消除了对外置致动器的微夹爪的扩展的需求,因为夹持动作是直接通过压电双晶片实现的,从而最小化了微夹爪的重量和复杂性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f3a0/3690032/a6882e99c6ff/sensors-13-05826f1.jpg

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