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The effect of air permeability characteristics of protective garments on the induced physiological strain under exercise-heat stress

机译:运动热应激下防护服的透气特性对诱发生理应变的影响

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Objectives:The high values of thermal resistance (Rct) and/or vapor resistance (Ret) of chemical protective clothing (CPC) induce a considerable thermal stress. The present study compared the physiological strain induced by CPCs and evaluates the relative importance of the fabrics' Rct, Ret, and air permeability in determining heat strain.Methods:Twelve young (20-30 years) healthy, heat-acclimated male subjects were exposed fully encapsulated for 3h daily to an exercise-heat stress (35°C and 30% relative humidity, walking on a motor-driven treadmill at a pace of 5 km h1 and a 4% inclination, in a work-rest cycle of 45min work and 15min rest). Two bipack CPCs (PC1 and PC2) were tested and the results were compared with those attained by two control suits - a standard cotton military BDU (CO1) and an impermeable material suit (CO2).Results:The physiological burden imposed by the two bilayer garments was within the boundaries set by the control conditions. Overall, PC2 induced a lower strain, which was closer to CO1, whereas PC1 was closer to CO2. Air permeability of the PC2 cloth was almost three times higher than that of PC1, enabling a better heat dissipation and consequently a lower physiological strain. Furthermore, air permeability characteristic of the fabrics, which is associated with its construction and weave, significantly correlated with the physiological strain, whereas the correlation with Rct, Ret, and weight was poor.Conclusions:The results emphasize the importance of air permeability in reducing the physiological strain induced by CPCs.
机译:目标:化学防护服(CPC)的高热阻(Rct)和/或耐蒸汽性(Ret)值会引起相当大的热应力。本研究比较了CPCs引起的生理应变,并评估了织物的Rct,Ret和透气性在确定热应变中的相对重要性。方法:暴露了十二名(20-30岁)健康,适应热的男性受试者每天完全密封3小时,以承受运动热应力(35°C和30%相对湿度),在电动跑步机上以5 km h1的速度和4%的倾斜度行走,在45分钟的工作休息周期中和15分钟的休息时间)。测试了两个双包装的CPC(PC1和PC2),并将结果与​​两种对照服(标准棉质军用BDU(CO1)和不渗透性材料套装(CO2))获得的结果进行了比较。结果:两种双层施加的生理负担服装在控制条件设定的范围内。总体而言,PC2引起的应变更低,更接近CO1,而PC1则更接近CO2。 PC2布的透气性几乎是PC1的三倍,从而实现了更好的散热效果,从而降低了生理张力。此外,织物的透气性特征与织物的结构和织法有关,与生理张力显着相关,而与Rct,Ret和重量的相关性较差。结论:结果强调了透气性在减少织物中的重要性CPC引起的生理压力。

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