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用于森林灭火的多层防护织物的热防护性能与透气性

Thermal Protective Properties and Breathability of Multilayer Protective Woven Fabrics for Wildland Firefighting.

作者信息

Kalazić Ana, Brnada Snježana, Kiš Ana

机构信息

Department of Textile Design and Management, Faculty of Textile Technology, University of Zagreb, Prilaz baruna Filipovića 28a, 10000 Zagreb, Croatia.

Vertiv Croatia d.o.o., 10000 Zagreb, Croatia.

出版信息

Polymers (Basel). 2022 Jul 21;14(14):2967. doi: 10.3390/polym14142967.

Abstract

A firefighter in the wildland fields spends an average of 8 to 16 h during which he encounters enormous physical effort and very demanding outdoor conditions of high temperatures. Research shows that the most common injuries are due to the occurrence of heat stress, and not due to lack of protection against burns. Therefore, for this very specific field of firefighting, it is necessary to provide clothing that will, in addition to adequate flame protection, provide good comfort properties such as lightweight suits, good porosity and breathability, so that gaseous sweat and heat generated by body heating can be released into the environment. The aim of this study was to determine the influence of structural parameters of multi-weft woven fabrics on two mutually contradictory properties-breathability and thermal protection. When designing fabrics, the goal was to produce a structure with a high proportion of volume pores, which, regardless of the increased volume of the fabric, insure the fabric mass would be acceptably small. Volume pores in the fabric have two roles-as a heat insulator and as an inhibitor of the breathability of the material. The analysis of the obtained results showed that the thickness and mass of the fabric have a greater influence on the water vapor resistance, while the heat transmission property is more affected by the thickness, porosity and fiber content.

摘要

野外消防员平均要工作8到16小时,在此期间,他们会面临巨大的体力消耗以及高温等极具挑战性的户外环境。研究表明,最常见的受伤原因是热应激的发生,而非缺乏防烧伤保护。因此,对于这个非常特殊的消防领域,除了提供足够的防火保护外,还需要提供具有良好舒适性能的服装,比如轻便的套装、良好的孔隙率和透气性,以便身体发热产生的气态汗液和热量能够散发到环境中。本研究的目的是确定多纬机织物的结构参数对透气性和热防护这两个相互矛盾的性能的影响。在设计织物时,目标是生产一种具有高比例体积孔隙的结构,这样,无论织物体积增加多少,都能确保织物质量小到可以接受。织物中的体积孔隙有两个作用——作为隔热体和作为材料透气性的抑制剂。对所得结果的分析表明,织物的厚度和质量对水汽阻力的影响更大,而热传递性能则更多地受厚度、孔隙率和纤维含量的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/91ce/9317430/04cdffefa416/polymers-14-02967-g001.jpg

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