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High-performance fire-resistant polymeric nanocomposite for aerospace applications

机译:航空航天应用的高性能耐火聚合物纳米复合材料

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摘要

This investigation essentially highlights development of novel high-performance fire-resistant polymeric nanocomposite with respect to its orientation towards future generation aviation. Therefore, an attempt has been made to increase thermal stability and fire resistivity of phenolic/cotton fabric reinforced polymer composite, which is desirable for aircraft interiors. There is considerable increase in adhesion characteristics of phenolic fabric reinforced polymer composite due to atmospheric pressure plasma treatment. The phenolic fabric reinforced polymer is subsequently coated with nanosized calcium silicate reinforced polybenzimidazole composite in order to increase thermal stability and fire resistance property. Thermogravimetric analysis reveals that polybenzimidazole-coated fabric reinforced polymer shows significantly better thermal stability than the uncoated phenolic fabric reinforced polymer. There is a significant increase in the limiting oxygen index characteristics of polybenzimidazole-coated fabric reinforced polymer when compared to the uncoated phenolic composite resulting in considerable improvement in fire resistivity of the polymers.
机译:这项研究从本质上突出了新型高性能耐火聚合物纳米复合材料在面向下一代航空方面的发展。因此,已经尝试增加酚醛/棉织物增强的聚合物复合材料的热稳定性和耐火性,这是飞机内部所期望的。由于常压等离子体处理,酚醛织物增强的聚合物复合材料的粘合特性有了很大的提高。酚醛织物增强的聚合物随后涂覆有纳米尺寸的硅酸钙增强的聚苯并咪唑复合材料,以提高热稳定性和耐火性。热重分析表明,聚苯并咪唑涂层的织物增强聚合物比未涂层的酚醛织物增强聚合物表现出明显更好的热稳定性。当与未涂覆的酚醛复合材料相比时,聚苯并咪唑涂覆的织物增强的聚合物的极限氧指数特性显着增加,导致聚合物的耐火性显着提高。

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