DocumentCode :
742408
Title :
Design of a Piezoelectric-Actuated Microgripper With a Three-Stage Flexure-Based Amplification
Author :
Fujun Wang ; Cunman Liang ; Yanling Tian ; Xingyu Zhao ; Dawei Zhang
Author_Institution :
Sch. of Mech. Eng., Tianjin Univ., Tianjin, China
Volume :
20
Issue :
5
fYear :
2015
Firstpage :
2205
Lastpage :
2213
Abstract :
This paper presents a novel microgripper mechanism for micromanipulation and assembly. The microgripper is driven by a piezoelectric actuator, and a three-stage flexure-based amplification has been designed to achieve large jaw displacements. The kinematic, static and dynamic models of the microgripper have been established and optimized considering the crucial parameters that determine the characteristics of the microgripper. Finite element analysis was conducted to evaluate the characteristics of the microgripper, and wire electro discharge machining technique was utilized to fabricate the monolithic structure of the microgripper mechanism. Experimental tests were carried out to investigate the performance of the microgripper and the results show that the microgripper can grasp microobjects with the maximum jaw motion stroke of 190 μm corresponding to the 100-V applied voltage. It has an amplification ratio of 22.8 and working mode frequency of 953 Hz.
Keywords :
electrical discharge machining; finite element analysis; grippers; industrial manipulators; manipulator dynamics; manipulator kinematics; micromanipulators; optimisation; piezoelectric actuators; robotic assembly; assembly; dynamic model; finite element analysis; jaw motion stroke; kinematic model; large jaw displacements; microgripper mechanism; micromanipulation; microobject grasping; monolithic structure fabrication; optimization; piezoelectric actuator; piezoelectric-actuated microgripper design; static model; three-stage flexure-based amplification; wire electro discharge machining technique; Actuators; Couplings; Equations; Fasteners; Force; Grasping; Grippers; Flexure-based amplification; microgripper; modeling; optimization design;
fLanguage :
English
Journal_Title :
Mechatronics, IEEE/ASME Transactions on
Publisher :
ieee
ISSN :
1083-4435
Type :
jour
DOI :
10.1109/TMECH.2014.2368789
Filename :
6971202
Link To Document :
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