可穿戴外骨骼椅的机械框架设计与实验验证

Bin Han, Zihao Du, Tiantian Huang, Tao Zhang, Zhiyuan Li, Ou Bai, Xuedong Chen
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引用次数: 4

摘要

在这项研究中,开发了一个人椅模型,作为可穿戴椅子设计的基础。一个原型椅子HUST-EC被制造和评估。利用内点罚函数下的优化,实现了最低椅高运行模式的优化仿真。利用Solidworks中嵌入的有限元分析程序建立实体模型,结果表明设计的椅子对使用者的支撑是稳定的。开发了一个肌电(EMG)测试平台,由四个肌电传感器、基于matlab的采集软件和加载背心组成。4名健康受试者参与评价实验,采集不同负荷和椅角下股直肌、股二头肌、股内侧肌和股外侧肌群的肌电图。实验数据表明:(1)HUST-EC在各种载荷和弯曲角度下都能显著降低肌肉激活;(2)在相同载荷下,随着弯曲角度的增大,肌肉激活度略有降低;(3)在相同弯曲角度下,随着负荷的增加,肌肉激活度略有增加。结果表明,所设计的椅子可以有效减轻工人的身体负担,提高工作效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanical Framework Design with Experimental Verification of a Wearable Exoskeleton Chair
In this study, a human-chair model was developed as the basis for a wearable chair design. A prototype chair, HUST-EC, was fabricated and evaluated. Employing the optimization under an inner point penalty function, an optimized simulation of the operating mode with the lowest chair height was implemented. The solid models were established by using the finite element analysis program embedded in Solidworks, which revealed that the support from the designed chair was steady to the user. An electromyography (EMG) test platform has been developed, consisting of four EMG sensors, a MATLAB-based acquisition software, and a loaded vest. Four healthy subjects participated in the evaluation experiment, in which EMGs were collected from the muscle groups of rectus femoris, biceps femoris, vastus medialis, and vastus lateralis under different loads and chair angles. The experimental data demonstrate that (1) the HUST-EC can greatly reduce muscle activation at a variety of loads and bending angles; (2) under the same load, the muscle activation decreases slightly with an increased bending angle; and (3) at the same bending angle, muscle activation increases slightly with an increased load. The results show that the designed chair can effectively reduce the physical burden in workers and may improve work efficiency.
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