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Low-Cost, Continuously Variable, Strain Wave Transmission Using Gecko-Inspired Adhesives

Nicholas D. Naclerio, Capella F. Kerst, David A. Haggerty, Srinivasan A. Suresh, Sonali Singh, Kenichi Ogawa, Susumu Miyazaki, Mark R. Cutkosky, Elliot W. Hawkes

Year
2019
Citations
16

Abstract

In robotics, high gear reductions are often required when using an electromagnetic motor to drive revolute joints, as in a humanoid robot. Strain wave gears (SWGs), also known as harmonic drives, are often used. However, these transmissions are relatively expensive and have a fixed gear ratio. Here, we present a low-cost transmission that maintains the high reduction of the SWG and enables a continuously variable gear ratio. We achieve this by, first, replacing the teeth of an SWG with a smooth frictional contact to enable continuous gear variation and, second, inverting the gear elements to enable high frictional torque transfer with a low preload via the capstan effect. We choose a gecko-inspired dry adhesive as the frictional material because it has high friction at low normal forces, and is not inherently tacky. We present a model describing the transmission, as well as experimental data gathered from a prototype device that verifies this model and establishes a proof of concept. Our transmission expands the possibilities for low-cost robotic systems.

Keywords

BacklashContinuously variable transmissionTransmission (telecommunications)Worm driveReduction (mathematics)TorqueRobotEngineeringRevolute jointRobotics

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