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Study of the flame retardancy and thermal properties of unsaturated polyester resin via incorporation of a reactive cyclic phosphorus-containing monomer

机译:通过掺入反应性环状含磷单体研究不饱和聚酯树脂的阻燃性和热性能

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摘要

A reactive cyclic phosphorus-containing monomer (ethyl acrylate cyclic glycol phosphate; EACGP) was synthesized in a facile way and various amounts of EACGP were combined with unsaturated polyester by radical bulk polymerization. The resulting flame-retardant unsaturated polyester resin (UPR) samples were investigated using thermogra-vimetric analysis, limiting oxygen index (LOI), and microscale combustion calorimetry tests. Due to the high phosphorus content of EACGP, incorporation of this monomer led to a marked decrease in the peak heat release rate and the total heat release, an increase in the LOI and the combustion char formation. Furthermore, real-time Fourier transform infrared spectroscopy was employed to investigate the thermooxidative degradation behavior of UPRs and the charring effect of EACGP as well as the UPR char morphology was studied, illustrating the flame retardancy mechanism in UPR.
机译:一种反应性的环状含磷单体(丙烯酸乙酯环状乙二醇磷酸酯; EACGP)可以很容易地合成,然后通过自由基本体聚合将各种量的EACGP与不饱和聚酯结合。使用热重分析,极限氧指数(LOI)和微量燃烧量热测试对所得的阻燃性不饱和聚酯树脂(UPR)样品进行了研究。由于EACGP中的高磷含量,这种单体的掺入导致峰值放热速率和总放热显着降低,LOI和燃烧炭的形成增加。此外,采用实时傅里叶变换红外光谱技术研究了UPR的热氧化降解行为,研究了EACGP的炭化作用以及UPR的炭形态,阐明了UPR的阻燃机理。

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