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首页> 外文期刊>Journal of Materials Science >Intumescing multilayer thin film deposited on clay-based nanobrick wall to produce self-extinguishing flame retardant polyurethane
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Intumescing multilayer thin film deposited on clay-based nanobrick wall to produce self-extinguishing flame retardant polyurethane

机译:在粘土基纳米砖壁上注入多层薄膜以产生自熄性阻燃聚氨酯

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摘要

Significant loss of life and property results each year from fires fueled by polyurethane found in household furnishings. Established layer-by-layer flame retardant systems were combined to produce a stacked nanocoating for flame retarding polyurethane foam. A bilayer system of chitosan (CH) and vermiculite provides a nanobrick wall exoskeleton, protecting the polyurethane long enough for an intumescing system of CH and ammonium polyphosphate to activate and form a bubbled char layer. Stacking these two recipes allows the foam to self-extinguish when exposed to a butane torch without any flame spread or shrinking of the foam, two things commonly observed with either coating alone. Cone calorimetry revealed a significant peak heat release rate reduction of 66 % relative to the uncoated foam. This study demonstrates the ability to combine flame retardant mechanisms sequentially. This nanocoating acts as an environmentally benign template for flame retarding various complex substrates, especially those found in household furnishings.
机译:每年在家具中发现的聚氨酯引发的火灾均会导致重大的生命和财产损失。结合已建立的逐层阻燃系统,以生产用于阻燃聚氨酯泡沫的堆叠纳米涂料。壳聚糖(CH)和ver石的双层体系提供了纳米砖壁外骨骼,可以保护聚氨酯足够长的时间,以使CH和聚磷酸铵的浸润体系活化并形成气泡状炭层。将这两种配方叠加在一起,可以使泡沫在暴露于丁烷火炬时自动熄灭,而不会引起火焰的蔓延或收缩,这是单独使用两种涂料时通常会观察到的两种情况。锥量热法显示,相对于未涂覆的泡沫,峰值放热率显着降低了66%。这项研究证明了顺序组合阻燃机制的能力。这种纳米涂层可作为环境友好的模板,用于阻燃各种复杂的基材,尤其是在家用家具中发现的基材。

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