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Flame-Retardant Glass Fiber-Reinforced Epoxy Resins with Phosphorus-Containing Bio-Based Benzoxazines and Graphene

机译:含磷生物基苯并噁嗪和石墨烯的阻燃玻璃纤维增强环氧树脂

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摘要

This paper presents a study of the flammability and thermal decomposition products of glass fiber-reinforced epoxy resin (GFRER) with the addition of cardanol-based phosphorus-containing benzoxazine monomer (CBz) and graphene and their combinations in different proportions (up to 20 wt.%). The addition of CBz alone or in combination with graphene resulted in an increase in the limiting oxygen index (LOI) and self-extinguishing in the UL-94 HB test. The flame-retardant samples had better tensile mechanical properties than the sample without additives. The differential mass-spectrometric thermal analysis (DMSTA) of the thermal decomposition products of GFRER without additives and with the addition of CBz and graphene was carried out. CBz addition promoted the thermal decomposition of high-molecular-weight products of epoxy resin decomposition in the condensed phase and at the same time decreased the time of release of low-molecular-weight thermal decomposition products into the gas phase. Graphene addition resulted in an increase in the relative intensities of high-molecular-mass peaks compared to GFRER without additives.
机译:本文研究了玻璃纤维增强环氧树脂 (GFRER) 在添加腰果酚基含磷苯并恶嗪单体 (CBz) 和石墨烯及其不同比例(高达 20 wt.%)的组合后的可燃性和热分解产物。在 UL-94 HB 测试中,单独添加 CBz 或与石墨烯结合使用会导致极限氧指数 (LOI) 和自熄性增加。阻燃样品比无添加剂样品具有更好的拉伸力学性能。对没有添加剂并添加 CBz 和石墨烯的 GFRER 热分解产物进行了差分质谱热分析 (DMSTA)。CBz 的添加促进了环氧树脂分解的高分子量产物在缩合相中的热分解,同时降低了低分子量热分解产物释放到气相中的时间。与没有添加剂的 GFRER 相比,添加石墨烯导致高分子量峰的相对强度增加。

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