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DESIGN AND GAIT ANALYSIS OF A TWO-LEGGED MINIATURE ROBOT WITH PIEZOELECTRIC-DRIVEN FOUR-BAR LINKAGE
Conference proceeding

DESIGN AND GAIT ANALYSIS OF A TWO-LEGGED MINIATURE ROBOT WITH PIEZOELECTRIC-DRIVEN FOUR-BAR LINKAGE

Audelia G. Dharmawan, Hassan H. Hariri, Gim Song Soh, Shaohui Foong, Kristin L. Wood and ASME
Proceedings of the ... ASME Design Engineering Technical Conferences, Vol.5, p.V05BT08A003
Proceedings of the ASME Design Engineering Technical Conferences
01/01/2017

Abstract

Engineering Engineering, Mechanical Robotics Science & Technology Technology
This paper presents the design and development of a new type of piezoelectric-driven robot, which consists of a piezoelectric unimorph actuator integrated as part of the structure of a four-bar linkage to generate locomotion. The unimorph actuator replaces the input link of the four-bar linkage and motion is generated at the coupler link due to the actuator deflection. A dimensional synthesis approach is proposed for the design of four-bar linkage that amplifies the small displacement of the piezoelectric actuator at the coupler link. The robot consists of two such piezo-driven four-bar linkages and its gait cycle is described. The robot speed is derived through kinematic modelling and experimentally verified using a fabricated prototype. This result will be important for developing a motion planning control strategy for the robot locomotion, which will be part of future work.

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