首页> 外文期刊>Journal of Applied Polymer Science >Microintumescent mechanism of flame-retardant water-based chitosan-ammonium polyphosphate multilayer nanocoating on cotton fabric
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Microintumescent mechanism of flame-retardant water-based chitosan-ammonium polyphosphate multilayer nanocoating on cotton fabric

机译:棉织物上阻燃水性壳聚糖-聚磷酸铵多层纳米涂层的微膨胀机理

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摘要

Layer-by-layer (LbL) assembly of nanocoatings on fabric substrates has been very successful in terms of reduction of flammability. In particular, an LbL system comprised ammonium polyphosphate as the polyanion and chitosan as the polycation, applied to cotton fabric, dramatically reduced cotton flammability. At this point, the fire-retardant (FR) mechanism of action of this system has never been fully elucidated. Sonicated and nonsonicated coated cotton fabrics were evaluated using a vertical flame test and mass loss calorimeter. Coating morphology was investigated before and after burning. Thermal analyses and chemical analyses in the condensed phase (and in the gas phase) were conducted to reveal the FR mechanism of action. At the cotton surface, a combination of both condensed (formation of aromatic char) and gas phase (release of water and highly flammable gases) mechanisms impart the FR behavior, promoting a kind of "microintumescence" phenomenon. (C) 2016 Wiley Periodicals, Inc.
机译:就降低可燃性而言,纳米涂层在织物基材上的逐层(LbL)组装非常成功。特别是,将LbL系统包含多磷酸铵作为聚阴离子和壳聚糖作为聚阳离子,应用于棉织物上,可大大降低棉的可燃性。在这一点上,该系统的阻燃(FR)作用机理尚未完全阐明。使用垂直火焰测试和质量损失量热仪评估超声处理和非超声处理的棉织物。在燃烧之前和之后研究涂层的形态。进行了冷凝相(和气相)的热分析和化学分析,以揭示FR的作用机理。在棉花表面,凝结(形成芳香炭)和气相(释放水和高度易燃气体)的机制共同赋予FR行为,从而促进了一种“微膨胀”现象。 (C)2016威利期刊公司

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