Development of Variable Viscoelastic Joint Module Performance Evaluation and Proposal of Application Examples

Author:

Fujita Tetsuhito,Shimoda Yusuke,Machida Katsuki,Okui Manabu,Nishihama Rie,Nakamura TaroORCID

Abstract

With the diversification of robots, modularization of robots has been attracting attention. In our previous study, we developed a robot that mimics the principle of human joint drive using a straight-fiber-type pneumatic rubber artificial muscle (“artificial muscle”) and a magnetorheological fluid brake (“MR brake”). The variable viscoelastic joints have been modularized. Therefore, this paper evaluates the basic characteristics of the developed Joint Module, characterizes the variable viscoelastic joint, and compares it with existing modules. As basic characteristics, we confirmed that the Joint Module has a variable viscoelastic element by experimentally verifying the joint angle, stiffness, viscosity, and tracking performance of the generated torque to the command value. As a characteristic evaluation, we verified the change in motion and response to external disturbances due to differences in driving methods through simulations and experiments and proved the strength of the variable viscoelastic joint against external disturbances, which is a characteristic of variable viscoelastic joints. Based on the results of the basic characterization and the characterization of the variable viscoelastic drive joint, we discussed what kind of device the Joint Module is suitable to be applied to and clarified the position of the variable viscoelastic joint as an actuator system.

Publisher

MDPI AG

Subject

Control and Optimization,Control and Systems Engineering

Reference18 articles.

1. YASKAWAhttps://www.yaskawa.co.jp/product/robotics

2. CYBERDYNEhttps://www.cyberdyne.jp/products/HAL/index.html

3. SoftBankhttps://www.softbank.jp/robot/pepper/

4. Fundamental characteristic of novel actuation system with variable viscoelastic joints and magneto-rheological clutches for human assistance

5. A Magneto-Thermo-Static Study of a Magneto-Rheological Fluid Damper: A Finite Element Analysis

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Design of An Integrated Magnetorheological Fluid Brake Axial Flux Permanent Magnet Machine;IEEE Transactions on Transportation Electrification;2023

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