A Novel Articulated Soft Robot Capable of Variable Stiffness through Bistable Structure
Yong Zhong, Ruxu Du, Liao Wu, Haoyong Yu
Abstract
Soft robot has demonstrated promise in unstructured and dynamic environments due to unique advantages, such as safe interaction, adaptiveness, easy to actuate, and easy fabrication. However, the highly dissipative nature of elastic materials results in small stiffness of soft robot which limits certain functions, such as force transmission, position accuracy, and load capability. In this paper, we present a novel articulated soft robot with variable stiffness. The robot is constructed by rigid joints and compliant bistable structures in series. Each joint can be independently locked through triggering the bistable structure to touch the mechanical constrain. Thus, the bending stiffness of the joint can be magnified which increases the stiffness of the articulated soft robot. Through this construction method, even driven by only one servomotor, the robot demonstrates variable workspace and stiffness which have the potential of dexterous manipulation and maintaining shape under tip load.
BibTeX
@inproceedings{icra2020_anovelarticulate,
title = {A Novel Articulated Soft Robot Capable of Variable Stiffness through Bistable Structure},
author = {Yong Zhong and Ruxu Du and Liao Wu and Haoyong Yu},
booktitle = {ICRA 2020},
year = {2020}
}