2020/11/03 by Hiromi Yasuda, Yasuda, Hiromi, Kyle Johnson +9
Computer Science · #FOS: Computer and information sciences #Robotics (cs.RO) #cs.RO
paper · pdf · doi:10.48550/arxiv.2011.01428
arxiv created 2020/11/03 · arxiv updated 2020/11/04
The leaf-like origami structure was inspired by geometric patterns found in nature, exhibiting unique transitions between open and closed shapes. With a bistable energy landscape, leaf-like origami is able to replicate the autonomous grasping of objects observed in biological systems like the Venus flytrap. We show uniform grasping motions of the leaf-like origami, as well as various non-uniform grasping motions which arise from its multi-transformable nature. Grasping motions can be triggered with high tunability due to the structure's bistable energy landscape. We demonstrate the self-adaptive grasping motion by dropping a target object onto our paper prototype, which does not require an external power source to retain the capture of the object. We also explore the non-uniform grasping motions of the leaf-like structure by selectively controlling the creases, which reveals various unique grasping configurations that can be exploited for versatile, autonomous, and self-adaptive robotic operations.