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首页> 外文期刊>Iranian polymer journal >Thermal and combustion behavior of phosphorus-nitrogen and phosphorus-silicon retarded epoxy
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Thermal and combustion behavior of phosphorus-nitrogen and phosphorus-silicon retarded epoxy

机译:磷氮和磷硅延迟环氧树脂的热和燃烧行为

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A novel trizine ring-based phosphorus-nitrogen flame retardant, 1,3,5-tris(3-(diphenylphosphoryl) propyl)-1,3,5-triazinane-2,4,6-trione (PN), was synthesized by the reaction of diphenylphosphine oxide and triallyl isocyanurate with triethylborane as catalyst. Chemical structure of the target compound was confirmed by Flourier transform infrared spectrum, nuclear magnetic resonances, matrix-assisted laser desorption/ionization time-of-flight mass spectrum measurements. The newly developed PN was used in the flame retardancy of o-cresol novolac epoxy/phenolic novolac hardener system. For comparison, another analogous phosphorus-silicon flame retardant, [(1,1,3,3-tetramethyl-1,3-disiloxanediyl)-di-2,1-ethanediyl]-bis(diphenylphosphine oxide) (PSi), was also applied in the same system. Experimental results revealed that PN showed superior flame retardant efficiency to that of PSi. In addition, the incorporation of flame retardants was in favor of the char formation during the thermal degradation process of epoxy thermosets. With the same flame retardant content, the char residue of epoxy thermosets with PSi was higher than that of epoxy thermosets with PN at 750 degrees C. Cone calorimeter results indicated that PN contributed to gas phase flame retardancy while PSi was more likely to take part in flame retardancy in the condense phase. X-ray photoelectron spectroscopy data revealed that the binding energies of phosphorus changed in different ways in PN and PSi after combustion. This implied that phosphorus exhibited different combustion behaviors when combined with nitrogen or silicon.
机译:合成了一种新型的基于三嗪环的磷氮阻燃剂1,3,5-三(3-(二苯基磷酰基)丙基)-1,3,5-三嗪烷-2,4,6-三酮(PN)二苯膦氧化物与三烯丙基异氰脲酸酯在三乙基硼烷的催化下反应通过Flourier变换红外光谱,核磁共振,基质辅助激光解吸/电离飞行时间质谱测定法确认了目标化合物的化学结构。新开发的PN用于邻甲酚酚醛清漆环氧/酚醛清漆固化剂体系的阻燃性。为了比较,另一种类似的磷硅阻燃剂,[[(1,1,3,3-四甲基-1,3-二硅氧烷二基)-二-2,1-乙二基]-双(二苯基氧化膦)(PSi)应用于同一系统。实验结果表明,PN的阻燃效率优于PSi。另外,阻燃剂的加入有利于在环氧热固性塑料的热降解过程中形成炭。在相同的阻燃剂含量下,在750摄氏度时,带有PSi的环氧树脂热固性塑料的炭渣含量高于带有PN的环氧树脂热固性塑料的炭渣。锥量热仪结果表明,PN有助于气相阻燃性,而PSi更有可能参与冷凝阶段的阻燃性。 X射线光电子能谱数据表明,燃烧后PN和PSi中磷的结合能以不同的方式变化。这暗示磷与氮或硅结合时表现出不同的燃烧行为。

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