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Expansion behaviour and thermal degradation of tri(acryloyloxyethyl) phosphate/methacrylated phenolic melamine intumescent flame retardant system

机译:磷酸三(丙烯酰氧乙基)/甲基丙烯酸酚醛三聚氰胺膨胀型阻燃体系的膨胀行为和热降解

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摘要

Tri(acryloyloxyethyl) phosphate (TAEP) was blended with methacrylated phenolic melamine (MAPM) in different ratios to obtain a series of UV curable intumescent flame retardant resins. The cured TAEP/MAPM samples greatly expanded when burning. Their expansion behaviour and flame retardance of the cured resins were characterized by the volume ratio after and before combustion, and by limiting oxygen index. A distinct synergistic effect was found between TAEP and MAPM. TAEP—0.30MAPM sample showed the highest expansion degree (104) and the highest LOI value (41) among all resins. The degradation was monitored by thermogravimetric analysis and in-situ Fourier-transform infrared spectroscopy. A degradation mechanism is suggested in which the phosphate group in TAEP first degraded to form poly(phosphoric acid)s, which further catalysed the degradation of the material to form char with emission of nitrogen volatiles from MAPM, leading to the formation of expanding char. The morphologic structures of crusts of the formed chars were observed by scanning electron microscopy, demonstrating the synergistic effect between TAEP and MAPM.
机译:将三(丙烯酰氧基乙基)磷酸酯(TAEP)与甲基丙烯酸酚三聚氰胺(MAPM)按不同比例混合,以获得一系列可紫外固化的膨胀型阻燃树脂。燃烧后,固化的TAEP / MAPM样品会大大膨胀。固化后树脂的膨胀行为和阻燃性由燃烧前后的体积比和极限氧指数来表征。在TAEP和MAPM之间发现了明显的协同作用。 TAEP—0.30MAPM样品在所有树脂中均显示出最高的膨胀度(104)和最高的LOI值(41)。通过热重分析和原位傅立叶变换红外光谱法监测降解。提出了一种降解机理,其中TAEP中的磷酸基团首先降解形成聚磷酸,这进一步催化了材料的降解以形成焦炭,同时从MAPM中释放出了氮挥发物,从而导致了膨胀炭的形成。通过扫描电子显微镜观察了形成的炭的结壳的形态结构,证明了TAEP和MAPM之间的协同作用。

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