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Thermal protective performance of protective clothing used for low radiant heat protection

机译:用于低辐射热防护的防护服的热防护性能

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摘要

A laboratory simulation was performed to study the thermal protective performance of fabric systems under low level thermal hazards in the range of 6.3-8.3 kW/m^sup 2^. Two approaches were used. The first used a method similar to the ASTM F 1939, radiant heat resistance test, while the second used a modification designed to capture the contribution to skin burn injury due to energy stored in the test specimens being released after the direct exposure had ended. Both dry and wet specimens were tested. In order to accommodate the prolonged exposure time a water cooled heat flux sensor was used to calibrate the radiant heat source and measure the energy directly transmitted through during the exposure and discharged later from the fabric systems. The Henriques Burn Integral (HBI) was adopted and programmed with a three layer skin model to predict the time required to achieve a second degree skin burn injury. The study investigated the thermal protection provided by the clothing with different layering and examined the effect of moisture under low level radiant heat exposures. In addition, the physiological burden associated with wearing the clothing was predicted and compared. The results obtained show the difference in measured protection level under low radiant heat from these two approaches and demonstrate that the stored thermal energy released from the clothing system significantly lowers the measured thermal protective performance.
机译:进行了实验室模拟以研究织物系统在6.3-8.3 kW / m ^ sup 2 ^范围内的低水平热危害下的热防护性能。使用了两种方法。第一种使用类似于ASTM F 1939的抗辐射热测试方法,第二种使用经过改进的设计,以捕获由于直接暴露结束后释放在测试样品中的能量而导致的皮肤灼伤伤害。干和湿样品都经过测试。为了适应延长的曝光时间,使用了水冷式热通量传感器来校准辐射热源,并测量在曝光过程中直接传输通过并随后从织物系统中排出的能量。采用Henriques Burn Integral(HBI),并使用三层皮肤模型进行编程,以预测达到二级皮肤烧伤所需的时间。该研究调查了具有不同分层的衣物提供的热防护,并研究了低辐射热暴露下水分的影响。另外,可以预测并比较与穿衣服有关的生理负担。获得的结果表明,这两种方法在低辐射热下测得的防护等级有所不同,并表明从衣服系统释放的存储热能显着降低了测得的热防护性能。

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