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用于跑步辅助的带有扭线驱动的脚踝外骨骼设计。

Design of an ankle exoskeleton with twisted string actuation for running assistance.

作者信息

Tan Guan Rong, Collins Steven H

机构信息

Department of Mechanical Engineering, Stanford University, Stanford, CA, USA.

出版信息

Wearable Technol. 2025 Jul 22;6:e34. doi: 10.1017/wtc.2025.10010. eCollection 2025.

Abstract

Exoskeletons that make running easier could increase users' physical activity levels and provide related health benefits. In this paper, we present the design of a portable, powered ankle exoskeleton that assists running and uses lightweight and compact twisted string actuators. It has limited durability at this stage of development, but preliminary results of its power to mass density and potential for reducing the metabolic cost of running are promising. The exoskeleton can provide high peak power of 700 W per leg, 7 times more than prior twisted-string devices, and high peak torques of 43 Nm. Kinetostatic and dynamic models were used to select mass-optimal components, producing a device that weighs 1.8 kg per leg and 2.0 kg in a backpack. We performed preliminary tests on a single participant to evaluate the exoskeleton performance during both treadmill running and outdoor running. The exoskeleton reduced metabolic energy use by 10.8% during treadmill running tests and reduced cost of transport by 7.7% during outdoor running tests compared to running without the device. Unfortunately, the twisted string wore out quickly, lasting an average of 4 min 50 s before breaking. This exoskeleton shows promise for making running easier if string life challenges can be addressed.

摘要

能让跑步更轻松的外骨骼装置可以提高使用者的身体活动水平,并带来相关的健康益处。在本文中,我们展示了一种便携式电动脚踝外骨骼的设计,该外骨骼助力跑步,并采用了轻巧紧凑的扭线式致动器。在当前的研发阶段,其耐用性有限,但在功率质量密度以及降低跑步代谢成本潜力方面的初步结果很有前景。该外骨骼每条腿可提供700瓦的高峰值功率,是此前扭线式装置的7倍,峰值扭矩高达43牛米。使用运动静力学和动力学模型来选择质量最优的部件,制成的装置每条腿重1.8千克,加上背包共重2.0千克。我们对一名参与者进行了初步测试,以评估该外骨骼在跑步机跑步和户外跑步过程中的性能。与不使用该装置跑步相比,在跑步机跑步测试中,外骨骼使代谢能量消耗降低了10.8%,在户外跑步测试中,使运输成本降低了7.7%。不幸的是,扭线磨损很快,平均在4分50秒后就会断裂。如果能解决扭线寿命的问题,这种外骨骼在让跑步更轻松方面显示出了潜力。

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