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Experimental investigation on the thermal and moisture mapping of cricket helmets using microsensor technology

机译:使用微传感器技术的板球头盔热和水分测绘的实验研究

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摘要

Based on microsensor technology, a novel test rig was developed for the first time to measure real-time multi-point temperatures and relative humidities inside a cricket helmet worn by a human subject for obtaining the corresponding thermal and moisture mapping. Two types of helmets with and without ventilation openings were investigated to visualise the hot and wet spots clearly inside the helmet. The results show the clear influence of ventilation openings on effective reduction of the temperature as well as the relative humidity inside the helmet. Also, the subjective data were linked to the digital temperature and relative humidity measurements for possible assisting design of helmet with improved thermal comfort. The technology developed is a useful measurement approach to other head gears such as safety, fire fighter and motorcycle helmets, and further to study microclimate environments in close contact with human body. (C) 2019 Elsevier Ltd. All rights reserved.
机译:基于微传感器技术,首次开发了一种新型试验台,以测量由人类受试者佩戴的蟋蟀头盔内的实时多点温度和相对湿度,以获得相应的热和水分测绘。 研究了有两种类型的头盔,有没有通风开口的头盔,以在头盔内清楚地显示热和湿斑。 结果表明,通风开口对有效降低温度的影响以及头盔内部的相对湿度。 此外,主观数据与数字温度和相对湿度测量相关联,以实现具有改进的热舒适性的头盔的辅助设计。 该技术开发是一种有用的测量方法,包括其他头部齿轮,如安全,消防员和摩托车头盔,以及研究与人体密切接触的小气候环境。 (c)2019年elestvier有限公司保留所有权利。

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