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Synthesis of a novel flame retardant containing phosphazene and triazine groups and its enhanced charring effect in poly(lactic acid) resin

机译:合成含磷磷腈和三嗪基团的新型阻燃剂及其增强的聚(乳酸)树脂炭化作用

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摘要

A novel flame retardant heax-[N,N',N ''-tris-(2-amino-ethyl)-[1,3,5] triazine-2,4,6-triamine] cyclotriphosphazene (HTTCP) containing phosphazene and triazine groups was synthesized and characterized by Fourier transform infrared spectroscopy (FTIR), solid-state H-1 and C-13 nuclear magnetic resonance (NMR) spectroscopy. HTTCP was applied to PLA matrix. The results of thermal gravimetric analysis (TGA), the limited oxygen index (LOI), and cone calorimeter test indicated that the HTTCP enhanced the thermal stability and flame retardant properties of PLA. When the mass fraction of HTTCP was 25 wt %, the PLA composite acquired a LOI value of 25.2% and the lower pk-HRR at 290 kW/m(2). The excellent flame retardancy of HTTCP was attributed to the group synergistic effect between phosphazene and triazine groups. However, when combined HTTCP with APP (the total amount remaining 25 wt %, the ratio of HTTP to APP are 1:1 and 1:2), high values of LOI (over 40%) and UL94 V-0 rating without dripping reached simultaneously. Meanwhile, the heat release rate, total heat release and mass loss rate were all decreased dramatically. Scanning electron microscopy (SEM) demonstrated that HTTCP/APP system benefited to the formation of more intumescent, dense, compact char layer on the materials surface which could effectively prevent the underlying material from degradation during burning. (C) 2016 Wiley Periodicals, Inc.
机译:一种新型阻燃性Hex-[N,N',N'' - - (2-氨基 - 乙基) - [1,3,5]三嗪-2,4,6-三胺]含磷磷腈(HTTCP)和通过傅里叶变换红外光谱(FTIR),固态H-1和C-13核磁共振(NMR)光谱,合成三嗪基团并表征。 HTTCP应用于PLA矩阵。热重度分析(TGA),有限氧指数(LOI)和锥形量热计试验结果表明HTTCP增强了PLA的热稳定性和阻燃性能。当HTTCP的质量分数为25wt%时,PLA复合物在290kW / m(2)时获得了25.2%的LOI值和下部PK-HRR。 HTTCP的出色阻燃性归因于磷腈和三嗪基团之间的群体协同效应。但是,当使用APP组合HTTCP(剩余的总量25wt%时,HTTP到APP的比率为1:1和1:2),LOI的高值(超过40%)和UL94 V-0等级而不达到滴度同时。同时,热释放率,总热释放和质量损失率全部急剧下降。扫描电子显微镜(SEM)证明HTTCP / APP系统有利于在材料表面上形成更多膨胀,密集,紧凑的炭层,这可以有效地防止底层材料在燃烧期间降解。 (c)2016 Wiley期刊,Inc。

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