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Carbon nanotube buckypaper to improve fire retardancy of high-temperature/high-performance polymer composites

机译:碳纳米管布基纸提高高温/高性能聚合物复合材料的阻燃性

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Mixed single-walled and multi-walled carbon nanotube membrane (buckypaper) was incorporated onto the surface of polyimide/carbon fibre composites via a compression moulding process. Flammability was investigated by cone calorimeter tests under an external radiant heat flux of 50kWm~(- 2). The burning residue was analysed with scanning electron microscopy and thermogravimetric analysis. The buckypaper survived the burning test and decreased the peak heat release rate by 40%, reduced the total heat release by 26%, produced 82% less smoke release and resulted in 33% less mass loss. The directly mixed carbon nanotubes (5wt% multi-walled carbon nanotubes) yielded 38% less peak heat release rate, only 3.7% less total heat release, 28% more smoke release and no change in mass loss. Compared to direct mixing of carbon nanotubes into the resin, the use of buckypaper is more efficient in fire retardancy improvement; it yielded further delay of ignition, lower heat release rate, further reduced heat release, lower mass loss and less smoke release. The buckypaper worked as an excellent physical barrier, obstructing the flow of heat and oxygen to the inner polymer resin. The as-prepared buckypaper greatly improved the fire retardancy of polyimide matrix carbon fibre composites.
机译:通过压缩模制工艺将混合的单壁和多壁碳纳米管膜(巴克纸)结合到聚酰亚胺/碳纤维复合材料的表面上。通过锥形量热仪测试在50kWm〜(-2)的外部辐射热通量下的可燃性。用扫描电子显微镜和热重分析法分析燃烧的残余物。巴基纸在燃烧试验中幸存下来,峰值放热率降低了40%,总放热降低了26%,烟雾释放量减少了82%,质量损失减少了33%。直接混合的碳纳米管(5wt%的多壁碳纳米管)产生的峰值热释放率降低38%,总热释放仅降低3.7%,烟气释放增加28%,质量损失不变。与将碳纳米管直接混合到树脂中相比,使用布基纸可以更有效地提高阻燃性。它导致了进一步的点火延迟,更低的放热率,进一步降低了放热,降低了质量损失并减少了烟雾释放。布基纸起到了很好的物理屏障的作用,阻止了热量和氧气向内部聚合物树脂的流动。所制备的巴克纸极大地提高了聚酰亚胺基碳纤维复合材料的阻燃性。

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