A novel passive shoulder exoskeleton for assisting overhead work.

IF 3.4 Q2 ENGINEERING, BIOMEDICAL
Wearable technologies Pub Date : 2023-03-02 eCollection Date: 2023-01-01 DOI:10.1017/wtc.2023.1
Shuo Ding, Anaya Reyes Francisco, Tong Li, Haoyong Yu
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引用次数: 0

Abstract

Shoulder exoskeletons (SEs) can assist the shoulder joint of workers during overhead work and are usually passive for good portability. However, current passive SEs face the challenge that their torque generators are often attached to the human arm, which adds a significant amount of weight to the user's arms, resulting in additional energy consumption of the user. In this paper, we present a novel passive SE whose torque generator is attached to the user's back and assists the shoulder joint through Bowden cables. Our approach greatly reduces the weight on the user's arms and can accommodate complex shoulder joint movements with simple and lightweight mechanical structure based on Bowden cables. In addition, to match the nonlinear torque requirements of the shoulder joint, a unique spring-cam mechanism is proposed as the torque generator. To verify the effectiveness of the device, we conducted a usability test based on muscle activations of 10 healthy subjects. When assisting overhead work, the SE significantly reduced the mean and maximum electromyography signals of the shoulder-related muscles by up to 25%. The proposed SE contributes to further research on passive SE design to improve usability, especially in terms of reducing weight on human arms.

一种用于辅助头顶工作的新型被动肩部外骨骼
摘要肩部外骨骼(SE)可以在高空作业中帮助工人的肩关节,并且通常是被动的,具有良好的便携性。然而,当前的被动SE面临的挑战是,它们的扭矩发生器通常连接在人的手臂上,这会给用户的手臂增加大量重量,从而导致用户的额外能量消耗。在本文中,我们提出了一种新型的被动SE,其扭矩发生器连接在用户的背部,并通过Bowden电缆辅助肩关节。我们的方法大大减轻了用户手臂上的重量,并可以通过基于Bowden电缆的简单轻便的机械结构来适应复杂的肩关节运动。此外,为了满足肩关节的非线性扭矩要求,提出了一种独特的弹簧凸轮机构作为扭矩发生器。为了验证该设备的有效性,我们对10名健康受试者的肌肉激活情况进行了可用性测试。当辅助头顶工作时,SE显著降低了肩部相关肌肉的平均和最大肌电图信号,降幅高达25%。所提出的SE有助于进一步研究被动SE设计,以提高可用性,特别是在减轻人类手臂重量方面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
5.80
自引率
0.00%
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0
审稿时长
11 weeks
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