DocumentCode
1456301
Title
Thermally Actuated Omnidirectional Walking Microrobot
Author
Erdem, E. Yegân ; Chen, Yu-Ming ; Mohebbi, Matthew ; Suh, John W. ; Kovacs, Gregory T A ; Darling, Robert B. ; Böhringer, Karl F.
Author_Institution
Mech. Eng. Dept., Univ. of Washington, Seattle, WA, USA
Volume
19
Issue
3
fYear
2010
fDate
6/1/2010 12:00:00 AM
Firstpage
433
Lastpage
442
Abstract
We describe a walking microrobot that is propelled by cilialike thermal bimorph actuator arrays. The robot consists of two actuator array chips, each having an 8 × 8 array of “motion pixels,” which are composed of four orthogonally oriented cilia. Each group of unidirectional cilia is controlled independently for each chip, which provides planar motion with three degrees of freedom (x, y, θ). The robot is approximately 3 cm in length, 1 cm in width, and 0.9 mm in height and has a mass of 0.5 g. By varying the actuation frequency and motion gait strategy, the direction and velocity of the motion can be controlled. In this paper, we present the system architecture, control mechanism, and modeling of the robot, as well as experimental results, during linear and rotary motion. The robot can carry loads up to seven times its own mass, and it can operate at speeds up to 250 μm/s with step sizes from 1 to 4 μm.
Keywords
actuators; microrobots; mobile robots; motion control; actuator array chips; cilialike thermal bimorph actuator arrays; motion gait strategy; motion pixels; omnidirectional walking microrobot; orthogonally oriented cilia; planar motion; system architecture; thermally actuated microrobot; Actuator array; bimorph; cilia; microelectromechanical systems (MEMS); microrobot; thermal actuators;
fLanguage
English
Journal_Title
Microelectromechanical Systems, Journal of
Publisher
ieee
ISSN
1057-7157
Type
jour
DOI
10.1109/JMEMS.2010.2041897
Filename
5439779
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