Design and Control of Lightweight Bionic Arm Driven by Soft Twisted and Coiled Artificial Muscles

执行机构 滑轮 人工肌肉 过程(计算) 工程类 控制工程 控制系统 机器人 肘部 机械臂 接头(建筑物) 计算机科学 模拟 机械工程 人工智能 结构工程 电气工程 操作系统 外科 医学
作者
Sang Yul Yang,Kihyeon Kim,Jeong U Ko,Sungwon Seo,Seong Taek Hwang,Jae‐Hyeong Park,Ho Sang Jung,Young Jin Gong,Ji Won Suk,Hugo Rodrigue,Hyungpil Moon,Ja Choon Koo,Jae‐Do Nam,Hyouk Ryeol Choi
出处
期刊:Soft robotics [Mary Ann Liebert]
卷期号:10 (1): 17-29 被引量:7
标识
DOI:10.1089/soro.2021.0058
摘要

Twisted and coiled actuators (TCAs), which are light but capable of producing significant power, were developed in recent times. After their introduction, there have been numerous improvements in performance, including development of techniques such as actuation strain and heating methods. However, the development of robots using TCA is still in its early stages. In this study, a bionic arm driven by TCAs was developed for light and flexible operation. The aim of this study was to gain a foothold in the future of robot development using TCA, which is considered as the appropriate artificial muscle. The main developments were with regard to the design (from actuator design to system design), system configuration for control, and control method. First, a process technology for repeatedly manufacturing TCA, which can be used practically and delivers sufficient performance, was developed. Based on the developed actuator, a joint was designed to move the elbow and hand. The final bionic arm was developed by integrating the TCA, pulley joint, and control system. It moved the elbow up to 100° and allowed the hand to move in three degrees of freedom. Using the control method for each joint, we were able to show the movement by using the hand and elbow.
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