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Study on the Properties and Mechanism of Flame Retarded Glass Fiber Reinforced Polyamide 6 with Microcapsulated Aluminum Hypophosphite

机译:微胶囊铝逆磷酸盐的阻燃玻璃纤维增​​强聚酰胺6的性能和机理研究

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Aluminum hypophosphite can be used to flame retard glass fiber reinforced polyamide 6 (GFPA6). TGIC microcapsulated AlHP (T-AlHP) and epoxy resin microcapsulated AlHP (E-AlHP) were made and put into GFPA6. The vertical burning tests and mechanical tests were taken to study the flame retardant performance and mechanical properties of the corresponding composites. Addition of either T-AlHP or E-AlHP resulted in an increased UL-94 rating and a decreased comprehensive mechanical performance. T-AlHP endowed GFPA6 a better flame retardancy than E-AlHP did. TG showed the decomposition behaviors of T-AlHP, E-AlHP, and the corresponding composites. From Py-GC/MS, the detailed pyrolysis products of flame retardants and the flame-retardant composites were identified. Finally, the properties and mechanism of flame retarded GFPA6 with these two kinds of microcapsulated Aluminum Phosphate were summarized.
机译:铝次磷酸盐可用于阻燃玻璃纤维增​​强聚酰胺6(GFPA6)。制备Tgic微胶囊化的alhp(t-alhp)和环氧树脂微胶囊化alhp(e-alhp)并放入gfpa6中。采用垂直燃烧试验和机械测试研究相应复合材料的阻燃性能和机械性能。添加T-AlHP或E-ALHP导致UL-94评级增加,综合机械性能降低。 T-alhp赋予GFPA6比E-ALHP更好的阻燃性。 TG显示了T-AlHP,E-ALHP和相应复合材料的分解行为。来自Py-GC / MS,鉴定了阻燃剂和阻燃复合材料的详细热解产物。最后,总结了火焰延迟GFPA6与这两种微胶囊化磷酸铝的性质和机制。

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