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Published on: August 2, 2016
Self-induced large pitch artificial muscles with giant stroke for soft robotic applications
Boyi Xu1, Feihu Song1, Yuanwu Feng1
1Shien-Ming Wu School of Intelligent Engineering, South China University of Technology, Guangzhou 510641, People's Republic of China.
Abstract:
Achieving large initial coil pitches and contractile strokes in twisted and coiled polymer artificial muscles often requires complex and multi-step fabrication processes. We present a self-induced large-pitch (SLiP) method for producing polymer muscles with large and stable initial coil pitches through a single-step annealing process, which can be tuned by only adjusting the annealing temperature and duration. The resulting muscles demonstrate contractile and tensile strains of 95.1% and 560%, respectively, under different chiral configurations, as well as a maximum specific power of 3.5 kW kg-1and a contractile stroke rate of 40% s-1. SLiP muscles are used in various biomimetic and soft robotic prototypes, including a biomimetic arm, large-deformation tentacles, a crawling robot, and a biomimetic hand. This method offers a practical route for realizing polymer muscles with giant stroke and preload-free actuation in soft robotics.
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