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Fabrication of flame-retardant and smoke-suppressant isocyanate-based polyimide foam modified by silica aerogel thermal insulation and flame protection layers

机译:用二氧化硅气凝胶绝热和火焰保护层制备阻燃剂和烟雾抑制剂异氰酸酯的聚酰亚胺泡沫的制备

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摘要

Because of containing urea groups, flame resistance and smoke releasing behaviors of isocyanate-based polyimide foam (IBPIF) produced using free foaming technology require further improvement. In this work, silica aemgel layers were incorporated into cells of IBPIF through an in situ growth process of silica sol (SS). Compared with silica aemgel particles directly mixed into the foaming slurry, the silica aemgel layers that firmly attached to the pores and surfaces of cells not only provided exceptional thermal insulation and flame protection, but also kept original cellular structure. With increase in ratio of SS mass to IBPIF volume, silica aemgel incorporation dosage was gradually increased. Accompanied by flame resistance was obviously improved and smoke releasing behavior was effectively suppressed. Those were indicated by the improved limiting oxygen index (LOI), decreased heat release rate (HRR), peak of HRR, and specific optical density of smoke (Ds) in trials with pilot flames. Compared with pure IBPIF, when the ratio reached to 5/15 g/cm(3), it resulted in LOI increasing from 22.0% to 33.0%, peak of HRR, total smoke production (TSP), and maximum value of Ds decreasing from 174 to 72 kW/m(2), 1.11 to 0.37 m(2)/m(2), 45.90 to 17.45, respectively.
机译:由于含有脲基,采用自由发泡技术生产的异氰酸酯基聚酰亚胺泡沫(IBPIF)的阻燃性和发烟性能需要进一步改进。在这项工作中,通过硅溶胶(SS)的原位生长过程,将硅胶层并入IBPIF的细胞中。与直接混合到发泡浆料中的硅胶颗粒相比,牢固附着在微孔和表面的硅胶层不仅提供了优异的隔热和防火性能,而且保持了原始的微孔结构。随着SS质量与IBPIF体积比的增加,硅胶掺入量逐渐增加。阻燃性能明显提高,烟气释放行为得到有效抑制。在引燃火焰试验中,极限氧指数(LOI)的提高、热释放率(HRR)的降低、HRR峰值和烟雾比光密度(Ds)的降低表明了这一点。与纯IBPIF相比,当比例达到5/15g/cm(3)时,LOI从22.0%增加到33.0%,HRR峰值、总烟气量(TSP)和Ds最大值分别从174下降到72kw/m(2)、1.11下降到0.37m(2)/m(2)、45.90下降到17.45。

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