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Aerogel nonwoven as reinforcement and batting material for firefighter's protective clothing: a comparative study

机译:Airgel非织造织物作为消防员防护服的加固和击球材料:比较研究

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摘要

Aerogel, the most insulated solid known to modern science, is gradually expanding its field of application from space shuttle to normal clothing. So far, apparel use of aerogel nonwoven has been successfully commercialized in case of cold weather clothing. Use of aerogel in high heat protective clothing is much complex as it requires to balance comfort with protection. This paper studied the protective performance of aerogel nonwoven in a high heat protective apparel, firefighter's protective clothing (FPC). An investigation was carried out to justify its use as reinforcement material and/or batting in thermal liner or moisture barrier of FPC. Impressive results were observed in case of reducing the risk of burn injury, increasing comfort and enhancing protection. It was observed that aerogel nonwoven can provide eight times more thermal resistance than existing commercial reinforcement material and existing thermal batting material. When the aerogel nonwoven layer was used as thermal liner, it offered five times more resistance to heat than existing thermal liner and three times more resistance than combined performance of existing thermal liner and moisture barrier. The possible burn injury under 49 N compressive load was predicted on a 200 A degrees C heated surface. It was found that the temperature behind the commercial reinforcement material quickly raised above 70 A degrees C within 30 s of contact, while it took more than 4 min to reach the same temperature for proposed aerogel reinforcement material. This indicates that a firefighter will receive instant burn on contact in 30 s if only the commercial reinforcement material is used. It was measured that, without any reinforcement material even when only the aerogel nonwoven is used instead of current batting material, a firefighter will have 86 s before feeling any pain, 107 s before receiving first-degree burn and will have 2 and half minutes before theoretically receiving second-degree burn at the same condition. Thus, a firefighter will gain more than 1 min of escape time to withdraw from a danger situation, where it is only 5 s for existing thermal liner and reinforcement material. Performance was also evaluated against fabric thickness and weight, air permeability, resistance to one-way liquid transfer, moisture management, moisture vapour transfer and degree of evaporative cooling. The advantages and disadvantages of proposed combination have been discussed and it was concluded that the use of aerogel reinforcement can significantly increase the protective performance of FPC.Aerogel nonwoven (A) showed superior performance over existing reinforcement material (Rinf) and thermal liner (F+B1) for firefighter's protective clothing. In particular, aerogel nonwoven has
机译:Airgel是现代科学所熟知的最具绝缘的固体,逐步扩展其从航天飞机到正常服装的应用领域。到目前为止,在寒冷的天气衣物的情况下,Airgel Nonwoven的服装使用已经成功地商业化。使用气凝胶在高热防护服中的使用很复杂,因为它需要平衡保护。本文研究了气凝胶非织造织物在高热防火服,消防员的防火服(FPC)中的保护性能。进行了调查,以证明其用作钢筋材料和/或在FPC的热衬垫或水分屏障中击球。在减少烧伤风险的情况下,观察到令人印象深刻的结果,提高舒适性和增强保护。观察到气凝胶非织造织物可以提供比现有的商用加强材料和现有的热击球材料更多的热阻耗材八倍。当气凝胶非织造层用作热衬里时,它提供了比现有的热衬里更耐热的五倍,并且比现有的热衬里和防潮屏障的组合性能更多。在200℃加热的表面上预测了49 n压缩载荷下的可能烧伤损伤。结果发现,商业增强材料后面的温度在接触的30秒内快速升高到70℃以上,同时需要4分钟以达到所提出的气凝胶加强材料的相同温度。这表明如果仅使用商用加固材料,则消防员将在30秒内接触即可接触。已经测量了,即使仅使用气凝胶非织造材料代替电流弯曲材料,在没有电流击球材料的情况下,在接受一度烧伤之前感到任何疼痛之前,消防员将有86秒,并将有2个半分钟理论上以相同条件接收二度烧伤。因此,消防员将获得超过1分钟的逃生时间来退出危险情况,即现有的热衬里和加强材料仅为5秒。还评估了织物厚度和重量,透气性,耐一次性液体转移,水分管理,水分蒸汽转移和蒸发冷却程度的性能。已经讨论了拟合组合的优点和缺点,并得出结论,使用气凝胶增强件可以显着提高FPC.Aerogel非织造(A)的保护性能,显示出对现有增强材料(RINF)和热衬里的优异性能(F + B1)为消防员的防护服。特别是,Airgel非织造有

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