Switching backdrivability of a planetary gear by vibration: design parameter setting and excited force estimation
Satsuya Noda,
Ryo Igari,
Kensuke Endo
et al.
Abstract:Switching backdrivability according to use status is important to attain energy-saving and compliance in co-worker robots. Authors have proposed switching backdrivability by exciting gear surface, eliminating the need for sensors while switching. We have confirmed that exciting 2K-H planetary gear can switch its backdrivability. To systematically design the switching backdrivable 2K-H planetary gear, this study reveals less back-drive condition and the required torque for a vibrator. In the less-backdrivable c… Show more
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