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Synthesis of intrinsically flame-retardant copolyamides and their employment in PA6-fibers

机译:在PA6纤维中合成本质上阻燃共酰胺及其就业

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Flame-retarded polyamide 6.6 (FR-PA6.6) was prepared by the cocondensation of hexamethylene diammonium adipate (AH-salt) with the corresponding salts of hexamethylene diamine and two different organophosphorus compounds, namely, 3-hydroxyphenylphosphinylpropanoic acid (3-HPP, 1) and 9,10-dihydro-10-[2,3-di (hydroxycarbonylpropyl]-10-phosphaphenanthrene-10-oxide (DDP, 2). The incorporation of the phosphorus comonomers and the thermal and physical properties of the resulting copolyamides have been studied. The phosphorus-modified FR-PA6.6 possesses high relative viscosities of 2.0 to 2.4, good thermal stability, and was used for the production of polyamide blends by merging FR-PA6.6 with commercial PA6. This offered access to flame-retarded PA6 multifilaments, which possess tensile strengths up to 0.7 GPa and elastic moduli up to 6.2 GPa. Knitted fabrics of FR-PA6 exhibit high limiting oxygen index (LOI) values between 36 and 38 and executed burning tests demonstrate that the incorporation of phosphorus-based comonomers improve flame retardancy significantly. The approach presented here offers a straightforward access to effective flame retardancy in nylon 6.
机译:通过己烯二氨基铵的呼链碳缩聚(AH-盐)与六亚甲基二胺和两种不同的有机磷化合物,即3-羟基苯基磷丙二酸(3-HPP,3-HPP, 1)和9,10-二氢-10- [2,3-DI(羟基羰基丙基] -10-磷酸二蒽-10-氧化物(DDP,2)。掺入所得共聚酰胺的磷共聚单体和热和物理性质已经研究过。磷改性的FR-PA6.6具有2.0至2.4的高相对粘度,良好的热稳定性,并且通过使用商业PA6合并FR-PA6.6来生产聚酰胺共混物。这提供了访问火焰延迟的PA6多丝,其具有高达0.7GPa的拉伸强度和高达6.2GPa的弹性模量。FR-PA6的针织织物在36和38之间表现出高限制的氧指数(LOI)值,并执行燃烧试验表明掺入掺杂剂基于磷的共聚单体显着改善阻燃性。这里提出的方法在尼龙6中有一种直接的获得有效的阻燃性。

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