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Effect of Fabric Deformation on Thermal Protective Performance of Clothing in a Cylindrical Configuration

机译:织物变形对圆筒形衣物热防护性能的影响

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Firefighting protective clothing is designed to provide thermal protection for firefighters in fire extinguishing or rescuing operations. However, fabric deformation and stretching due to body movement and different postures could change the clothing's thermal protective performance. Current gaps in our knowledge with regard to fabric deformation often resulted in biased predictions of the thermal protective level that personal protective equipment (PPE) can provide, highlighting the need to improve our understanding in this field. In this study, we developed a device that can be connected to a cylindrical copper calorimeter to simulate fabric deformation due to body movement and different postures and simultaneously measure the fabric's thermal properties. Stretching forces of varying magnitudes (of 0,1.2, 2.1, and 3.1 psi) were applied to study the effect of fabric deformation on the thermal protective performance of clothing under low- and high-intensity heat exposures. In addition, we analyzed skin burn times with different stretching forces and fabric properties. The selected fabrics were stretched by approximately 15 % under a stretching force of 3.1 psi. Fabric deformation led to a significant reduction of the predicted thermal protective performance of fabrics, mainly due to changes in fabric thickness, porosity, and mass per unit area. Predicted skin burn times decreased for increasing stretching forces, although the decrease was less pronounced under high-intensity heat exposure as a result of fabric shrinkage and degradation. The findings from this study further advance our current understanding of the thermal protective performance of clothing and may lead to the development of a new test to characterize clothing performance under more realistic usage situations.
机译:消防防护服旨在为灭火或救援操作中的消防员提供热防护。但是,由于人体运动和不同姿势引起的织物变形和拉伸可能会改变衣服的隔热性能。我们目前在织物变形方面的知识空白经常导致对个人防护设备(PPE)所能提供的热防护等级的预测有偏差,这突出了需要提高我们对该领域的了解。在这项研究中,我们开发了一种可以连接到圆柱形铜量热仪的设备,以模拟由于人体运动和不同姿势而导致的织物变形,并同时测量织物的热性能。应用不同幅度的拉伸力(分别为0、1.2、2.1和3.1 psi)来研究织物变形对低强度和高强度热暴露下衣服的热防护性能的影响。此外,我们分析了具有不同拉伸力和织物特性的皮肤燃烧时间。在3.1psi的拉伸力下将所选的织物拉伸约15%。织物变形导致预测的织物热防护性能显着降低,这主要是由于织物厚度,孔隙率和单位面积质量的变化。尽管由于织物收缩和降解而导致的高强度热暴露下,皮肤燃烧时间的减少随着拉伸力的增加而减小,但减少的幅度并不明显。这项研究的结果进一步提高了我们目前对服装的热防护性能的了解,并可能导致开发一种新的测试来表征更现实的使用情况下的服装性能。

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