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被动式外骨骼对温带和寒冷环境中人体热反应的影响。

The Effects of a Passive Exoskeleton on Human Thermal Responses in Temperate and Cold Environments.

作者信息

Liu Yang, Li Xiaoling, Lai Jiarui, Zhu Aibin, Zhang Xiaodong, Zheng Ziming, Zhu Huijin, Shi Yueyang, Wang Long, Chen Zhangyi

机构信息

School of Mechanical Engineering, Xi'an Jiaotong University, Xi'an 710000, China.

出版信息

Int J Environ Res Public Health. 2021 Apr 8;18(8):3889. doi: 10.3390/ijerph18083889.

Abstract

The exoskeleton as functional wearable equipment has been increasingly used in working environments. However, the effects of wearing an exoskeleton on human thermal responses are still unknown. In this study, 10 male package handlers were exposed to 10 °C (COLD) and 25 °C (TEMP) ambient temperatures while performing a 10 kg lifting task (LIFTING) and sedentary (REST) both with (EXO) and without the exoskeleton (WEXO). Thermal responses, including the metabolic rate and mean skin temperature (MST), were continuously measured. Thermal comfort, thermal sensation and sweat feeling were also recorded. For LIFTING, metabolic heat production is significant decrease with the exoskeleton support. The MST and thermal sensation significantly increase when wearing the exoskeleton, but thermal discomfort and sweating are only aggravated in TEMP. For REST, MST and thermal sensation are also increased by the exoskeleton, and there is no significant difference in the metabolic rate between EXO and WEXO. The thermal comfort is significantly improved by wearing the exoskeleton only in COLD. The results suggest that the passive exoskeleton increases the local clothing insulation, and the way of wearing reduces the "pumping effect", which makes a difference in the thermal response between COLD and TEMP. Designers need to develop appropriate usage strategies according to the operative temperature.

摘要

外骨骼作为功能性可穿戴设备已在工作环境中得到越来越广泛的应用。然而,穿戴外骨骼对人体热反应的影响仍不明确。在本研究中,10名男性包裹搬运工在10℃(寒冷)和25℃(常温)的环境温度下,分别在穿戴外骨骼(EXO)和不穿戴外骨骼(WEXO)的情况下,执行10千克的搬运任务(LIFTING)和久坐(REST)。持续测量包括代谢率和平均皮肤温度(MST)在内的热反应。还记录了热舒适度、热感觉和出汗感觉。对于搬运任务,在外骨骼的支撑下代谢产热显著降低。穿戴外骨骼时,平均皮肤温度和热感觉显著升高,但仅在常温环境下热不适和出汗会加剧。对于久坐状态,外骨骼也会使平均皮肤温度和热感觉升高,且穿戴外骨骼和未穿戴外骨骼时的代谢率没有显著差异。仅在寒冷环境下,穿戴外骨骼可显著改善热舒适度。结果表明,被动式外骨骼增加了局部服装隔热,且穿戴方式减少了“泵送效应”,这使得寒冷和常温环境下的热反应有所不同。设计者需要根据操作温度制定合适的使用策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6250/8067969/f5fc335ac847/ijerph-18-03889-g001.jpg

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