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Bio-Based Polyamide 1010 with a Halogen-Free Flame Retardant Based on Melamine–Gallic Acid Complex

机译:基于生物基聚酰胺1010基于三聚氰胺 - 小酸复合物的无卤阻燃剂

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摘要

This work aims at developing polyamide 1010 (PA1010) composites with improved fire behavior using a halogen-free flame-retardant system based on melamine (Me) and gallic acid (GA) complexes (MA). The MA complexes were formed by hydrogen bonding, starting from 1:2, 1:1, 2:1 Me:GA molar ratios. PA1010 composites were obtained by melt mixing, followed by compression molding. MA provided a plasticizing effect on the PA1010 matrix by decreasing the glass transition temperature. The influence of MA on PA1010 chain packaging was highlighted in the X-ray diffraction patterns, mainly in the amorphous phase, but affected also the α and γ planes. This was reflected in the dynamic mechanical properties by the reduction of the storage modulus. H-bonds occurrence in MA complexes, improved the efficiency in the gaseous form during fire exposure, facilitating the gas formation and finally reflected in thermal stability, thermo-oxidative stability, LOI results, and vertical burning behavior results. PA1010 containing a higher amount of GA in the complex (MA12) displayed a limiting oxygen index (LOI) value of 33.6%, much higher when compared to neat PA1010 (25.8%). Vertical burning tests showed that all the composites can achieve the V-0 rating in contrast with neat PA1010 that has V-2 classification.
机译:该作品旨在使用基于三聚氰胺(ME)和GALIC酸(GA)复合物(MA)的无卤素阻燃剂系统,在显影聚酰胺1010(PA1010)复合材料具有改善的火焰行为。通过氢键形成MA复合物,从1:2,1:1,2:1 Me:Ga molar比率开始形成。通过熔融混合获得PA1010复合材料,然后进行压缩成型。通过降低玻璃化转变温度,为PA1010基质提供塑化作用。在X射线衍射图中突出了MA对PA1010链包装的影响,主要在非晶相中,但也影响了α和γ平面。通过减少储存模量,这反映在动态机械性能中。 H键在MA复合物中发生,在火灾暴露过程中提高了气态形状的效率,促进气体形成,最终反映在热稳定性,热氧化稳定性,LOI结果和垂直燃烧行为的结果中。在复合物(MA12)中含有较高量的Ga的PA1010显示出限制氧指数(LOI)值为33.6%,与整齐PA1010相比(25.8%)相比高得多。垂直燃烧试验表明,所有复合材料都可以通过具有V-2分类的整洁PA1010来实现V-0等级。

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