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Two novel halogen-free, phosphorus-free, and intrinsically flame-retardant benzoxazine thermosets containing electron-withdrawing bridge groups

机译:两种新的无卤,无磷,和本质上阻燃苯并恶嗪热固性含有电子提取桥组

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摘要

Two novel furfurylamine type benzoxazine prepolymers are firstly synthesized from 4,4 '-bishydroxydeoxybenzoin (BHDB) and 4,4 '-dihydroxybenzophenone (DHBP). Both BHDB- and DHBP-based polybenzoxazines present accelerated curing behaviors, high glass transition temperatures, and very low heat release capacity values, resulting from the introduction of electron-withdrawing groups and furan rings. It is especially noteworthy that the flame retardancy of DHBP-based polybenzoxazine is classified as UL-94 V-1 grade, whereas that of BHDB-based polybenzoxazine is evaluated to be UL-94 V-2 grade. Hence, DHBP is considered as an alternative to BHDB for benzoxazine preparation because of its similar chemical structure, competitive price, high efficiency preparation, and outstanding flame resistance. Therefore, this work not only provides an economical and effective strategy for the preparation of halogen-free, phosphorus-free, and intrinsically flame-retardant benzoxazine resins but also provides important insight into the effects of electron-withdrawing bridge groups on the curing behavior and thermal and flame-retardant properties of benzoxazine resins.
机译:首先由4,4'-BishydroxydeOxybenzoin(BHDB)和4,4'-DiHydroxybenonOn(DHBP)合成两种新的糠嘧啶型预聚物。基于BHDB和DHBP的聚苯异种杂志均可提供加速的固化行为,高玻璃化转变温度和非常低的热释放能力值,由引入电子取群和呋喃环引起。特别值得注意的是,基于DHBP的聚苯异种嗪的阻燃性被归类为UL-94 V-1级,而基于BHDB的聚苯肼恶唑评价为UL-94 V-2等级。因此,由于其相似的化学结构,竞争性价格,高效率准备和出色的阻燃性,因此DHBP被认为是BHDB的替代方案。因此,这项工作不仅为制备无卤,无磷和无卤素的苯并恶嗪树脂提供了一种经济且有效的策略,还提供了重要的了解电子提取桥组对固化行为的影响和苯并恶嗪树脂的热和阻燃性能。

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