DocumentCode :
1784304
Title :
Design of a variable stiffness flexure mechanism for micromanipulation tasks
Author :
Zhao Su ; Iwasa, Tadayoshi ; Lim Zhen Yi ; Shee Cheng Yap ; Chen Silu ; Ang Wei Tech
Author_Institution :
Singapore Inst. of Manuf. Technol., Agency for Sci., Technol. & Res. (A*STAR), Singapore, Singapore
fYear :
2014
fDate :
8-11 July 2014
Firstpage :
949
Lastpage :
954
Abstract :
In micromanipulation tasks, the interaction force between the manipulator and an object or environment is difficult to control. In the traditional approach, force control is achieved by controlling the displacement of the end-effector during contact with an object, and therefore controlling of force and displacement cannot be decoupled. In this work, we propose to achieve interaction force control by varying the stiffness of the actuating mechanism. To achieve varying stiffness, a flexure mechanism with infinite resolution and no backlash is installed between the end-effector and actuators. The stiffness of a slender flexure element is varied by controlling its internal stress through piezoelectric actuators. The design procedure of the proposed variable stiffness mechanism is presented. Finite element analysis and experiments are conducted to evaluate the performance of the design. The stiffness of the prototype can be precisely controlled within the range of 5 to 25 kN/m.
Keywords :
bending; displacement control; elasticity; end effectors; finite element analysis; force control; mechanical contact; micromanipulators; piezoelectric actuators; actuating mechanism; displacement control; end-effector; finite element analysis; infinite resolution; interaction force control; micromanipulation tasks; piezoelectric actuators; slender flexure element; variable stiffness flexure mechanism; variable stiffness mechanism; Finite element analysis; Force; Force control; Piezoelectric actuators; Springs; Stress;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Advanced Intelligent Mechatronics (AIM), 2014 IEEE/ASME International Conference on
Conference_Location :
Besacon
Type :
conf
DOI :
10.1109/AIM.2014.6878202
Filename :
6878202
Link To Document :
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