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镀铝织物对近火防护服材料辐射防护性能的影响。

Effect of aluminized fabrics on radiant protective performance of fire proximity suit materials.

作者信息

Jin Lu, Park Pyoung Kyu, Hong Kyoung A, Yoon Kee Jong

机构信息

Department of Fiber System Engineering, Dankook University, Jukjeon-ro, Yongin-si, Gyeonggi-do 448-701, Korea Personal Protective Equipment Center, Dankook University, Jukjeon-ro, Yongin-si, Gyeonggi-do 448-701, Korea.

Technical Research Institute, Sancheong, Jungbudae-ro, Yongin-si, Gyeonggi-do 449-823, Korea.

出版信息

Ann Occup Hyg. 2015 Mar;59(2):243-52. doi: 10.1093/annhyg/meu081. Epub 2014 Oct 16.

Abstract

Radiant heat may be a significant component of heat exposure in the case of proximity firefighting. To combat high levels of radiant heat, fire proximity suits made of aluminized fabrics (Al-Fb) are commonly used due to their proven radiant protective performance (RPP). In this study RPP of various Al-Fb prepared using different aluminized films (Al-Fl) such as double-sided aluminized film and single-sided aluminized film and different base fabrics such as woven, knit, and nonwoven fabrics are compared. The effect of flexing on RPP and flame protective performance (FPP) of Al-Fb is also examined. The results show that RPP of Al-Fl is affected by the protective film to protect against mechanical or physical damages, and also by their structure such as whether the second reflective aluminum layer is present or not. In addition RPP of Al-Fb is also influenced by the base fabric, especially its surface roughness. The increased surface roughness combined with the damage caused to the aluminum layer after flexing result in reduction of RPP of Al-Fb. The contribution of Al-Fl to FPP of Al-Fb is not as significant as to RPP. Finally, based on the results, some points that may be important in developing and designing fire proximity suits are recommended.

摘要

在近距离灭火的情况下,辐射热可能是热暴露的一个重要组成部分。为了抵御高强度的辐射热,由镀铝织物(Al-Fb)制成的消防隔热服因其已被证实的辐射防护性能(RPP)而被广泛使用。在本研究中,比较了使用不同镀铝膜(Al-Fl)(如双面镀铝膜和单面镀铝膜)以及不同基布(如机织物、针织物和非织造布)制备的各种Al-Fb的RPP。还研究了弯曲对Al-Fb的RPP和火焰防护性能(FPP)的影响。结果表明,Al-Fl的RPP受保护膜防止机械或物理损伤的影响,也受其结构(如是否存在第二反射铝层)的影响。此外,Al-Fb的RPP也受基布的影响,尤其是其表面粗糙度。表面粗糙度的增加以及弯曲后铝层受到的损伤导致Al-Fb的RPP降低。Al-Fl对Al-Fb的FPP的贡献不如对RPP的贡献显著。最后,基于这些结果,推荐了一些在开发和设计消防隔热服时可能重要的要点。

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