Xu Susan S, Pollard Jonisha, Zhao Weihuan
National Personal Protective Technology Laboratory, National Institute for Occupational Safety and Health, USA.
Gregg Wadley College of Science & Health Professions, Northeastern State University, USA.
Int J Occup Saf Ergon. 2025 Mar;31(1):214-230. doi: 10.1080/10803548.2024.2424043. Epub 2024 Dec 4.
Transient three-dimensional (3D) heat and moisture transfer simulations were conducted to analyze the thermal performances of the entire phase change material (PCM) integrated into firefighters' gloves. PCM was broken down into several segments to cover the back and palm of the hand but to avoid finger joints to keep hand functions. Parametric studies were performed to explore the effects of PCM melting temperatures, PCM locations in the glove and PCM layer thicknesses on the overall thermal performance improvement of firefighters' gloves. The study found that PCM segments could extend the time for hand skin surfaces (areas covered or not covered by PCM) to reach second-degree burn injury (60 °C) by 1.5-2 times compared to conventional firefighters' gloves without PCM. Moreover, PCM segments could help mitigate the temperature increase on hand skin and glove surface after fire exposure.
进行了瞬态三维(3D)热湿传递模拟,以分析集成到消防员手套中的整个相变材料(PCM)的热性能。PCM被分解成几个部分,覆盖手背和手掌,但避开手指关节以保持手部功能。进行了参数研究,以探讨PCM熔化温度、PCM在手套中的位置以及PCM层厚度对消防员手套整体热性能提升的影响。研究发现,与没有PCM的传统消防员手套相比,PCM部分可使手部皮肤表面(被PCM覆盖或未被覆盖的区域)达到二度烧伤(60°C)的时间延长1.5至2倍。此外,PCM部分有助于减轻火灾暴露后手部皮肤和手套表面的温度升高。