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柔性外骨骼中鲍登线在人体上的力传递分析与优化

Force Transmission Analysis and Optimization of Bowden Cable on Body in a Flexible Exoskeleton.

作者信息

Li Xin, Liu Jinkang, Li Weihao, Huang Yijing, Zhan Gan

机构信息

School of Mechanical and Materials Engineering, North China University of Technology, Beijing 100144, China.

School of Mechatronics Engineering, Beijing Institute of Technology, Beijing 100081, China.

出版信息

Appl Bionics Biomech. 2022 Jul 28;2022:5552166. doi: 10.1155/2022/5552166. eCollection 2022.

Abstract

The Bowden cable is a significant force transmission equipment for a flexible exoskeleton. However, the previous researches of Bowden cable had emphasized on the data from experimenting test board, instead of on human body, which produced the inaccurate assisting analysis of the flexible exoskeleton. In this paper, a flexible exoskeleton for assisting knee extension was proposed, which provided an on-body condition. Then, the friction force and its influencing factors between the wire rope and sheath of the Bowden cable from the motor to the anchor of knee have been analyzed. The segment models of force transmission with the concern of three kinds of friction modes were established, and the relationship between various lengths and bending angles of Bowden cable was fitted to the equations of curve. Furthermore, the association rule between the force transmission and the lengths of Bowden cable was obtained, based on which, the optimal force transmission efficiency was 78.68% when the length value of the Bowden cable was 475 mm. A flexible exoskeleton prototype was assembled; then, the experiments with force transmission and metabolic cost have been developed. The results showed that the force transmission efficiency had strong association with the lengths of Bowden cable, instead of the transmission velocities. Furthermore, this knee assistance exoskeleton reduced the net metabolic cost of the testees during walking. These experiments results corroborated the force transmission modeling and simulation of the Bowden cable on body we proposed in this paper.

摘要

鲍登线是柔性外骨骼的一种重要力传递设备。然而,以往对鲍登线的研究主要侧重于实验测试板的数据,而非人体数据,这导致了对柔性外骨骼的辅助分析不准确。本文提出了一种用于辅助膝关节伸展的柔性外骨骼,提供了一种人体佩戴条件。然后,分析了从电机到膝盖固定点的鲍登线钢丝绳与护套之间的摩擦力及其影响因素。建立了考虑三种摩擦模式的力传递分段模型,并将鲍登线的各种长度和弯曲角度之间的关系拟合为曲线方程。此外,得到了力传递与鲍登线长度之间的关联规则,在此基础上,当鲍登线长度值为475 mm时,最佳力传递效率为78.68%。组装了一个柔性外骨骼原型;然后,开展了力传递和代谢成本的实验。结果表明,力传递效率与鲍登线的长度密切相关,而与传输速度无关。此外,这种膝关节辅助外骨骼降低了受试者行走过程中的净代谢成本。这些实验结果证实了本文所提出的鲍登线在人体上的力传递建模与仿真。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8748/9352506/f58b050a6946/ABB2022-5552166.001.jpg

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