School of Mechanical Engineering, Sichuan University, Chengdu, China.
Ergonomics. 2024 Dec;67(12):2138-2152. doi: 10.1080/00140139.2024.2372460. Epub 2024 Aug 1.
Passive exoskeleton chairs can alleviate fatigue, enhance efficiency, and reduce the risk of musculoskeletal diseases for workers standing for prolonged hours and have gradually been applied in recent years. In this study, by strategically distributing elastic and non-elastic fabrics, physical interfaces of the attachment system for the exoskeleton chair were revised to better adapt to bodily deformations and movements. We conducted an experiment using motion capture systems and subjective questionnaires to evaluate the performance of the initial and revised attachment systems of an exoskeleton chair worn by participants while performing multiple simulated assembly tasks. The results indicated that when wearing the revised one, some adverse effects on gait were significant reduced, as was the relative displacement of straps and discomfort in lumbar and abdominal, and system usability was improved, all of which were considered to be helpful in design to improve the performance of the attachment system in the future.
被动式外骨骼座椅可以减轻长时间站立的工人的疲劳,提高工作效率,降低肌肉骨骼疾病的风险,近年来逐渐得到应用。在这项研究中,通过战略性地分配弹性和非弹性织物,修改了外骨骼座椅的附着系统的物理接口,以更好地适应身体变形和运动。我们使用运动捕捉系统和主观问卷进行了一项实验,以评估参与者在执行多个模拟装配任务时佩戴的外骨骼座椅初始和修订后的附着系统的性能。结果表明,佩戴改良后的外骨骼座椅时,步态的一些不良影响显著降低,肩带和腰部及腹部的相对位移以及不适感也有所减轻,系统可用性得到提高,这些都被认为有助于设计,以提高未来附着系统的性能。