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Highly Efficient Flame Retardant Polyurethane Foam with Alginate/Clay Aerogel Coating

机译:海藻酸钠/粘土气凝胶涂层的高效阻燃聚氨酯泡沫

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Highly efficient flame retardant polyurethane foams with alginate/clay aerogel coatings were fabricated using a freeze-drying method. The microstructure and the interaction of the samples were characterized with scanning electron and optical microscopy (SEM) and (OM). The results show that PU foam has a porous structure with pore sizes of several hundred microns, and that of aerogel ranges from 10 to 30 mu m. The PU foam matrix and the aerogel coatings have strong interactions, due to the infusion of aerogel into the porous structure of the foam and the tension generated during the freeze-drying process. Both the PU foam and the aerogel exhibit good thermal stabilities, with onset decomposition temperatures above 240 degrees C. Combustion parameters, including LOI, TTI, HRR, TSR, FIGRA, CO, and CO2, all indicate significantly reduced fire risk. Total heat release of all but one of the samples was maintained, indicating that the flame retardant mechanism is to decrease flame spread rate by forming a heat, oxygen, and smoke barrier, rather than by reducing fuel content. This facile and inexpensive post-treatment of PU foam could expand its fire safe applications.
机译:使用冷冻干燥方法制造了具有藻酸盐/粘土气凝胶涂层的高效阻燃聚氨酯泡沫。用扫描电子和光学显微镜(SEM)和(OM)表征样品的微观结构和相互作用。结果表明,PU泡沫具有孔径为几百微米的多孔结构,并且气凝胶的孔径为10至30μm。由于气凝胶注入泡沫的多孔结构中以及在冷冻干燥过程中产生的张力,PU泡沫基质和气凝胶涂层之间具有很强的相互作用。 PU泡沫和气凝胶均表现出良好的热稳定性,起始分解温度高于240摄氏度。燃烧参数(包括LOI,TTI,HRR,TSR,FIGRA,CO和CO2)均表明火灾风险显着降低。除一个样品外,所有样品均保持了总的热量释放,这表明阻燃机理是通过形成热量,氧气和烟气屏障而不是通过减少燃料含量来降低火焰扩散速率。 PU泡沫的这种简便且廉价的后处理可以扩展其防火应用。

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