DocumentCode :
3259242
Title :
A piezoelectric inchworm actuator based on the principle of flexible amplification
Author :
Li Ma ; Chenyang Jiang ; Jintao Xiao ; Kun Wang ; Wei Xie ; Bo Liu
Author_Institution :
Sch. of Mechatron. Eng. & Autom., Shanghai Univ., Shanghai, China
fYear :
2013
fDate :
26-30 Aug. 2013
Firstpage :
201
Lastpage :
206
Abstract :
Piezoelectric inchworm actuators have a wide application in the field of Nano positioning and ultra-precision detecting instruments which depend on the characteristics of large stroke, high resolution and rigidity, quick response speed, small size, high driving force, low power consumption, not being affected by electromagnetic interference, and so on. A new piezoelectric inchworm actuator based on the principle of flexible amplification is developed in this paper. In the moving mechanism of the actuator, its clamping mechanism adopts symmetrical lever amplification structure, and its middle drive mechanism uses compound bridge structure. Theoretical analysis and finite element analysis are carried out to design the hinge structure which has influences on the properties of the moving mechanism. High precision cross roller guide ways are utilized to improve the positioning accuracy of the actuator. The laboratory platform of the piezoelectric inchworm actuator is built. A controlling program of the actuator is compiled by Lab-VIEW. Then, the properties of the actuator are tested. The experimental results show that the working stroke of the actuator is 50 mm, the minimum step pitch is 60 μm the maximum step pitch is 105 μm the fast speed is 2.04 mm/s, the maximum clamping force is 21 N, the maximum dead load is 500 g, and the average speed of the actuator can reach 1.47 mm/s when the driving frequency is 50 Hz and the load is 1 kg.
Keywords :
finite element analysis; nanopositioning; piezoelectric actuators; clamping force; clamping mechanism; compound bridge structure; finite element analysis; flexible amplification; frequency 50 Hz; high precision cross roller guide ways; hinge structure; nanopositioning; piezoelectric inchworm actuator; symmetrical lever amplification structure; ultraprecision detecting instrument; Actuators; Ceramics; Clamps; Finite element analysis; Force; Stress; Testing; finite element analysis; flexible hinge; inchworm; piezoelectric actuators;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Manipulation, Manufacturing and Measurement on the Nanoscale (3M-NANO), 2013 International Conference on
Conference_Location :
Suzhou
Print_ISBN :
978-1-4799-1210-0
Type :
conf
DOI :
10.1109/3M-NANO.2013.6737414
Filename :
6737414
Link To Document :
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