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Development of firefighters#039; protective jacket for female firefighters offering improved thermal comfort through modification of materials, garment design, construction and fit

机译:开发消防员'女性消防员的防护夹克,通过改变材料,服装设计,结构和合身,提供更好的热舒适性

摘要

Fire-fighters’ protective garments consist of a layered material assembly which typically include a flame-resistant outer shell and functional inner layers. The inner layers are generally composed of a moisture barrier and a thermal barrier or liner. When a firefighter is performing a task in a fire, the heat and perspiration generated from the body becomes trapped inside the protective clothing and may cause heat stress to the wearer. At the moment, in Australia there are no particular designs of firefighters’ protective ensembles specifically developed for female fire-fighters. The female firefighters utilize exactly the same protective jacket as male fire-fighters. In the present research, different commercial textile materials that are most commonly used for skin layer garments and for firefighters’ protective clothing were evaluated for their thermal and sensorial comfort attributes. The best performing materials combination offering enhanced thermal comfort attributes for skin layer garments and for the firefighters’ protective jacket were selected for use in the firefighters’ protective jacket in existing design and fit and in new and improved design and fit suitable for female firefighters. 3D body scanning technology was used to analyse the existing design, construction and fit of the existing firefighters’ protective jacket as relevant to female body form. Thermal manikin Newton was used to determine the influence of jacket design, size and fit on thermal attributes as relevant to male and female form of the manikin. Findings of the research demonstrate that, size, construction and fit of protective clothing have a considerable impact on the thermal comfort attributes of the clothing regardless of the materials used. In addition, the existing design, construction and fit of the protective jacket need to be modified to better suit female firefighters. Their body geometry should be taken into consideration when designing the protective jackets for them. The results of the present research are encouraging for the future development of new firefighters’ protective jackets for Australian female firefighters. The results also reveal that there is a need for anthropometric studies of female Australian firefighters. The availability of a relevant anthropometric database would greatly help to inform the protective clothing engineers and manufacturers enabling the most functional to produce the protective clothing that is of best function and fit, and that offers enhanced thermal comfort properties along with adequate protection.
机译:消防员防护服由分层材料组件组成,该组件通常包括耐火外壳和功能性内层。内层通常由防潮层和隔热层或衬里组成。当消防员在火中执行任务时,身体产生的热量和汗水会被困在防护服内,并可能对穿着者造成热应激。目前,在澳大利亚,没有特殊的消防员设计。专为女性消防员开发的防护服。女消防员使用与男消防员完全相同的防护外套。在本研究中,最常用于皮层服装和消防员的不同商业纺织品材料对防护服的热和感官舒适性进行了评估。性能最佳的材料组合可为表层服装和消防员提供增强的热舒适性。选择了用于消防员的防护外套。现有设计和款式的防护夹克,以及经过改进的新设计和款式的防护夹克,适合女性消防员。使用3D人体扫描技术来分析现有消防员的现有设计,构造和配合情况。与女性身体形态有关的防护外套。牛顿热人体模型用于确定夹克设计,尺寸和合身性与人体模型的男性和女性形式有关的热属性的影响。研究结果表明,防护服的尺寸,结构和合身性对防护服的热舒适性都有重要影响,而与所使用的材料无关。另外,防护夹克的现有设计,构造和合身性需要进行修改,以更好地适合女性消防员。在为其设计防护夹克时应考虑其身体几何形状。本研究的结果对于新型消防员的未来发展是令人鼓舞的。澳大利亚女消防员的防护服。结果还表明,有必要对澳大利亚女消防员进行人体测量研究。相关人体测量数据库的可用性将极大地帮助告知防护服工程师和制造商,使功能最强大的人员能够生产出功能和合身性最佳的防护服,并提供增强的热舒适性以及足够的防护。

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    Nawaz N;

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  • 年度 2013
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