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Structure and Properties Study of PA6 Nanocomposites Flame Retarded by Aluminium Salt of Diisobutylphosphinic Acid and Different Organic Montmorillonites

机译:二异丁基次膦酸铝盐和不同有机蒙脱土阻燃的PA6纳米复合材料的结构与性能研究

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摘要

Two different types of organic montmorillonite, namely quaternary ammonium salt intercalated MMT (CMMT) and quaternary phosphonium salt intercalated MMT (PMMT) were used as fillers in the flame-retardant polyamide (PA6) based on aluminium salts of diisobutylphosphinic acid (ABPA). The influence of different types of organic montmorillonite (OMMT) on the structure and properties of flame-retardant PA6 nanocomposites were systematically investigated. The X-ray diffraction and transmission electron microscopy results suggested that the introduction of OMMT improved the dispersion of the flame retardant particles independently of the type of OMMT. The derivative thermogravimetry (DTG) curve transformed to one peak from two peaks (representing the degradation of ABPA and PA6, respectively) after incorporation of the OMMT, which further confirmed better ABPA dispersion. Viscoelastic measurements demonstrated that a mechanically stable network structure was formed with the introduction of OMMT or ABPA and OMMT, while PA6/ABPA/PMMT presented the highest storage modulus and viscosity, suggesting a more efficient network structure. From UL-94 and limited oxygen index (LOI) tests, PA6/ABPA/PMMT presented the best flame performance, with a UL-94 of V-0 and a LOI of 33%. In addition, the PA6/ABPA/PMMT presented the lowest peak heat release rate (pHRR) among the investigated samples. Combined with the char layer analysis, it can be deduced that the introduction of PMMT improved the dispersion of ABPA, and promoted the formation of more efficient network structure, before promoting more compact char structures, which finally resulted in improved flame retardancy.
机译:两种不同类型的有机蒙脱土,即季铵盐插层MMT(CMMT)和季phospho盐插层MMT(PMMT),用作基于二异丁基次膦酸(ABPA)铝盐的阻燃聚酰胺(PA6)中的填料。系统地研究了不同类型的有机蒙脱土(OMMT)对阻燃PA6纳米复合材料的结构和性能的影响。 X射线衍射和透射电子显微镜结果表明,OMMT的引入改善了阻燃剂颗粒的分散性,而与OMMT的类型无关。加入OMMT后,导数热重分析(DTG)曲线从两个峰转换为一个峰(分别代表ABPA和PA6的降解),这进一步证实了ABPA的分散性更好。粘弹性测量表明,通过引入OMMT或ABPA和OMMT形成了机械稳定的网络结构,而PA6 / ABPA / PMMT表现出最高的储能模量和粘度,表明网络结构更有效。根据UL-94和有限氧指数(LOI)测试,PA6 / ABPA / PMMT表现出最佳的阻燃性能,UL-94为V-0,LOI为33%。此外,在所研究的样品中,PA6 / ABPA / PMMT的峰值放热率(pHRR)最低。结合炭层分析,可以推断出PMMT的引入改善了ABPA的分散性,并促进了更有效的网络结构的形成,之后又促进了更紧凑的炭结构,最终导致了阻燃性的提高。

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