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Thermophysiological comfort analysis of aerogel nanoparticle incorporated fabric for fire fighter#039;s protective clothing

机译:用于消防员防护服的气凝胶纳米颗粒结合织物的热生理舒适性分析

摘要

The paper discusses the thermophysiological comfort of a newly developed fabric potentially for firefighter's protective clothing. The fabrics were developed by incorporating super hydrophobic silica aerogel nanoparticles in 65/35 wool-Aramid blended fabric. Then the theromophysiological comfort was analyzed by determining air, moisture and heat transfer performance. It has been found that only 2% coating of aerogel nanoparticle increases thermal resistance by up to 68.64% and can reduce air permeability by up to 45.46% whereas 4% aerogel coating can reduce 61.76% air permeability. Moisture management properties of the aerogel coated fabric have also been investigated and discussed in details. In brief, it can be said that the thickener that was used for the coating, has a positive impact on moisture transportation and overall moisture management property of the fabric. Again aerogel coated next-to-skin layer and aerogel coated outer layer acted differently on the same fabric. It was observed that, the coated fabric acts as more likely as a moisture management fabric when the coating was applied on next-to-skin surface.
机译:本文讨论了一种潜在用于消防员防护服的新型面料的热生理舒适性。通过在65/35羊毛-芳纶混合织物中掺入超疏水二氧化硅气凝胶纳米颗粒来开发织物。然后通过确定空气,水分和传热性能来分析热生理舒适性。已经发现,仅2%的气凝胶纳米颗粒涂层将耐热性提高高达68.64%,并且可以降低高达45.46%的透气性,而4%的气凝胶涂层可以降低61.76%的透气性。还已经对气凝胶涂覆的织物的水分控制性能进行了研究和详细讨论。简而言之,可以说用于涂料的增稠剂对织物的水分输送和总体水分管理性能具有积极的影响。同样,气凝胶涂覆的邻近皮肤层和气凝胶涂覆的外层在同一织物上的作用不同。观察到,当将涂层施用于皮肤表面时,涂层织物更像水分控制织物。

著录项

  • 作者

    Shaid A; Fergusson M; Wang L;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 入库时间 2022-08-20 21:55:59

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