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消防员服装材料包上的印刷标识和反光条纹在低辐射暴露下的局部影响。

Local effects of printed logos and reflective striping fixed to firefighter clothing material packages under low radiation exposure.

机构信息

NACB, Netherland Institute for Public Safety (NIPV), The Netherlands.

Department of Design Sciences, Lund University, Sweden.

出版信息

Ind Health. 2023 Sep 22;61(5):357-367. doi: 10.2486/indhealth.2022-0126. Epub 2022 Sep 28.

Abstract

Notifications that related 1st degree burns to reflective striping and impermeable clothing elements did reach the investigators, while the mechanisms behind this phenomenon are still unclear. Material tests for thermal and evaporative resistance, and for heat transmission under dry and wet conditions at low radiation levels were done to evaluate the performance of protective clothing with and without printed logos or reflective striping. The results under the specified conditions showed reduction of heat loss capacity under impermeable elements from dry to wet conditions. Reflective surfaces, even when more impermeable, showed still lower heat transmission through the textile package than materials without striping under tested moisture and radiation combinations. It can be expected that the reported 1st degree burns were related to clothing design and tightness/fit rather than to reflective striping. However, due to the fine balance between clothing thermal and evaporative resistance, outer material emissivity, moisture quantity and location in clothing and applied radiation level, a different setup could lead to different results.

摘要

有关反射条和防水透气服元件导致 1 度烧伤的通知确实到达了调查人员手中,尽管造成这一现象的机制仍不清楚。对有和没有印刷标识或反射条的防护服进行了热阻和蒸发阻力以及低辐射水平下干、湿条件下热传递的材料测试,以评估其性能。在规定条件下的结果表明,从干燥条件到潮湿条件,防水元件的热损失能力降低。即使更不透水,反射表面的热传递仍然低于测试的水分和辐射组合下没有条纹的材料。可以预期,报告的 1 度烧伤与服装设计以及紧度/合身有关,而不是与反射条有关。然而,由于服装热阻和蒸发阻力、外材料发射率、服装内水分数量和位置以及应用辐射水平之间的精细平衡,不同的设置可能会导致不同的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d70/10542473/52884cf58a3c/indhealth-61-357-g001.jpg

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