A Variable Stiffness Actuator Based on Second-order Lever Mechanism and Its Manipulator Integration
Zhangxing Liu, Hongzhe Jin, Hui Zhang, Yubin Liu, Yilin Long, Xiufang Liu, Jie Zhao
Abstract
This paper presents a new variable stiffness actuator based on a second-order lever mechanism which has wide stiffness regulation range. By employing a novel symmetric structure design and improving the load capacity of the stiffness regulation module, the proposed actuator also shows well performance in load capacity, stiffness regulation response, and elastic hysteresis. On this basis, a variable stiffness actuated manipulator is developed. The experimental results demonstrate that the presented manipulator possesses abilities in fast stiffness tracking, shock-absorbing and explosive movement. It is also verified that the manipulator can withstand accidental impact, which illustrates the structure stability of the proposed design.
BibTeX
@inproceedings{icra2021_avariablestiffne,
title = {A Variable Stiffness Actuator Based on Second-order Lever Mechanism and Its Manipulator Integration},
author = {Zhangxing Liu and Hongzhe Jin and Hui Zhang and Yubin Liu and Yilin Long and Xiufang Liu and Jie Zhao},
booktitle = {ICRA 2021},
year = {2021}
}