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Synergistic effect of solid super acid on the properties of intumesce flame retardant EVA composites

机译:固体超酸性对动力阻燃EVA复合材料性能的协同作用

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@@Ethylene vinyl acetate (EVA) is copolymerization of ethylene and vinyl acetate, it is widely used in many fields because of its excellent properties, particularly in electrical engineering applications. It is easily flammable in the air due to its chemical composition. Especially, a mass of black smoke and toxic gas will be produced during EVA burning. And because of this, flame retardancy of EVA is widely studied. Among the many ways of halogen free flame retardation of EVA, using of intumescent flame retardants (IFR) has been considered to be a promising method. The efficiency and quality of char forming are of special importance, because it has close relation to the flame retardancy of IFR system. To improving the flame retardant efficiency, many ways were used. However, in all the reports on intumesce flame retardant of EVA, usage of Solid super acid to catalyzing forming char yields have not been concerned. The research on Solid super acid began in the 1980s. In 1979, for the first time, Arata and Hino synthesized SO42-MxOy solid super acid catalysts, which reveal remarkable catalytic performances in the isomerization of alkanes. Since then, these solid super acids receive much attention owing to their superior properties as well as the outstanding catalytic performances.
机译:@@乙烯乙烯基乙酸乙烯酯(EVA)是乙烯和乙酸乙烯酯的共聚,由于其优异的性能,特别是在电气工程应用中,它被广泛应用于许多领域。由于其化学成分,它在空气中容易易燃。特别是,在EVA燃烧期间将产生大量的黑烟和有毒气体。因此,eva的阻燃性被广泛研究。在EVA的卤素免除阻燃的许多方法中,使用膨胀阻燃剂(IFR)被认为是有希望的方法。 Char形成的效率和质量具有特殊重要性,因为它与IFR系统的阻燃性密切相关。为了提高阻燃效率,使用了许多方式。然而,在EVA的脉冲阻燃剂的所有报告中,尚未涉及固体超级酸对催化成形炭产率的使用。固体超酸研究于20世纪80年代开始。 1979年,首次,Arata和Hino合成SO42-MXOY固体超级酸催化剂,其揭示了烷烃的异构化中的显着催化性能。从那时起,由于其优异的性质以及出色的催化性能,这些固体超级酸会受到很多关注。

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