Suen Wing Sze, Huang Guanghan, Kang Zhanxiao, Gu Yuheng, Fan Jintu, Shou Dahua
Institute of Textiles and Clothing, The Hong Kong Polytechnic University, Kowloon, Hong Kong, China.
Build Environ. 2021 Nov;205:108236. doi: 10.1016/j.buildenv.2021.108236. Epub 2021 Aug 8.
A mask that creates a physical barrier to protect the wearer from breathing in airborne bacteria or viruses, reducing the risk of infection in polluted air and potentially contaminated environments, has become a daily necessity for the public especially as COVID-19 has exploded around the world. However, the use of masks often causes soaring temperatures and thick humid air, leading to thermal and wear discomfort and breathing difficulties for a number of people, and further increasing the elevated risk of heat illnesses including heat stroke and heat exhaustion. When wearers become highly active or work under high tension, the excess sweat generated negatively affects the functionality of masks. Here, we report on an innovative design of an air-conditioned mask (AC Mask) system, facilitating thermoregulation in the mask microclimate, ease of breathing, and wear comfort. The AC Mask system is developed by integrating a cost-effective and lightweight thermoelectric (TE) and ventilation unit in a wearable 3D printed mask device, compatible with existing disposable masks, to protect end users safely against toxic particles such as viruses. A wind-guided tunnel has been developed for quick and efficient ventilation of cooling air. Based on a human trial, reductions in the apparent microclimate temperature and the humidity by 3.5 °C and 50%, respectively, have been achieved under a low voltage. With the excellent thermal management properties, the AC Mask will find also wide application among professional end-users such as construction workers, firefighters, and medical personnel.
一种能形成物理屏障以保护佩戴者免受空气中细菌或病毒侵害、降低在污染空气和潜在污染环境中感染风险的口罩,已成为公众的日常必需品,尤其是在新冠疫情全球大爆发的情况下。然而,佩戴口罩常常会导致温度飙升和空气湿度过大,给许多人带来热感和佩戴不适以及呼吸困难,进而增加包括中暑和热衰竭在内的热疾病风险。当佩戴者剧烈活动或在高压下工作时,产生的过多汗水会对口罩的功能产生负面影响。在此,我们报告一种空调口罩(AC口罩)系统的创新设计,该系统有助于调节口罩微环境的温度、使呼吸更顺畅并提升佩戴舒适度。AC口罩系统是通过将一个经济高效且轻便的热电(TE)和通风单元集成到一个可穿戴的3D打印口罩装置中开发而成,该装置与现有的一次性口罩兼容,以安全保护终端用户免受病毒等有毒颗粒的侵害。已开发出一个导风通道用于快速高效地通风冷却空气。基于人体试验,在低电压下已分别实现口罩微环境温度降低3.5摄氏度和湿度降低50%。凭借出色的热管理性能,AC口罩在建筑工人、消防员和医务人员等专业终端用户中也将有广泛应用。