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Effect of nano silver coating on thermal protective performance of firefighter protective clothing

机译:纳米银涂层对消防员防护服热防护性能的影响

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The main aim of this experimental work is to find out possible improvement in thermal protective performance of firefighter protective clothing when subjected to different level of radiant heat flux density. Firefighter protective clothing normally consists of three layers: outer shell, moisture barrier and thermal liner. When thermal protective performance of firefighter protective clothing is enhanced, the time of exposure against radiant heat flux is increased, which will provide extra amount of time to firefighter to carry on their work without suffering from severe skin burn injuries. In this study, the exterior side of outer shell was coated with nano-silver metallic particle through magnetron sputtering technology. Coating of outer shell with nano-silver particles was performed at three level of thickness, i.e. 1, 2 and 3 mu m, respectively. All the uncoated and silver coated specimens were then characterized on air permeability tester, Permetest and radiant heat transmission machine. It was observed that coating has insignificant difference on the air and water vapor permeability of specimen and a significant decline was recorded for the value of transmitted heat flux density Q(c) (kW/m(2)) and percentage transmission factor (%TF Q(o)) as compared to uncoated specimen when subjected to 10 kW/m(2) and 20 kW/m(2) indicating improvement of thermal protective performance. These values go on further reduction with increase in thickness of coating layer of nano-silver particles.
机译:该实验工作的主要目的是发现当辐射热通量密度不同时,消防员防护服的热防护性能可能得到改善。消防员防护服通常由三层组成:外壳,防潮层和隔热衬里。当提高消防员防护服的热防护性能时,暴露于辐射热通量的时间会增加,这将为消防员提供更多的时间进行工作,而不会遭受严重的皮肤灼伤。在这项研究中,外壳的外侧通过磁控溅射技术涂覆了纳米银金属颗粒。用纳米银颗粒在外壳上进行涂覆的厚度分别为三个水平,即1、2和3μm。然后在透气性测试仪,Permetest和辐射传热机上对所有未镀膜和镀银的样品进行表征。观察到涂层在样品的空气和水蒸气渗透率上没有显着差异,并且记录的传热通量密度Q(c)(kW / m(2))和百分传递系数(%TF)的值显着下降。 Q(o))与10 kW / m(2)和20 kW / m(2)的未涂层样品相比表明热保护性能有所提高。随着纳米银颗粒涂层厚度的增加,这些值进一步降低。

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