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Potential Synergism between Novel Metal Complexes and Polymeric Brominated Flame Retardants in Polyamide 6.6

机译:聚酰胺6.6中新型金属配合物和聚合物溴化阻燃剂之间的潜在协同作用6.6

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摘要

While environmental concerns have caused polymeric brominated primary flame retardants (PolyBrFRs) to be effective replacement monomeric species, few alternatives for antimony trioxide (ATO) have been developed beyond the zinc stannates (ZnSs). Previous research, which explored the interactions of aluminium (AlW), tin (II) (SnW) and zinc (ZnW) tungstates with several phosphorus-containing flame retardants in polyamide 6.6 (PA66), is extended to two PolyBrFRs: brominated polystyrene (BrPS), and poly(pentabromobenzyl acrylate) (BrPBz). On assessing the effect of each tungstate on the thermal degradation and flammability in combination with each PolyBrFR using TGA, UL94, LOI, cone calorimetry and TGA-FTIR, only ZnW and SnW showed significant increases in LOI (>26 vol.%). Both ZnW-BrPS- and ZnW-BrPBz-containing formulations yielded average UL94 ratings ≥ V-2 and TGA char residues (corrected for metals content at 500 °C) in air > 15 wt.%. BrPS-containing samples, especially those containing ZnW and SnW, generated peak heat release rates approximately 50% lower than the equivalent BrPBz samples. These reductions did not correlate with respective increases in LOI, suggesting that tungstate-PolyBrFR combinations influence pre-ignition differently to post-ignition behaviour. Calculated synergistic effectivities indicate that ZnW functions as a synergist in both pre- and post-ignition stages, especially with BrPS. TGA-FTIR and char analyses showed that, in addition to the vapour-phase activity normally associated with PolyBrFRs, condensed-phase processes occurred, especially for the ZnW-PolyBrFR combinations. Additionally, ZnW demonstrated significant smoke-suppressing properties comparable with zinc stannate (ZnS).
机译:虽然环境问题导致聚合物溴化原火焰阻燃剂(Polybrfs)是有效的替代单体物种,但已经开发了几种锑(ATO)的偶氮锑(ATO)的替代品以外的锌静止物(ZnS)。以前的研究,探讨了铝(ALW),锡(II)(SNW)和锌(ZnW)钨酸盐在聚酰胺6.6(PA66)中具有几种含磷阻燃剂的掺杂剂的相互作用延伸至两种Polybrfs:溴化聚苯乙烯(BRPS )和聚(五溴苄基丙烯酸酯)(BRPBZ)。关于评估每种钨酸酯对热降解和易燃性的影响,使用TGA,UL94,LOI,锥形热量法和TGA-FTIR组合,只有ZnW和SNW在LOI(> 26体积%)中显示出显着增加。含有ZnW-BRPS和ZnW-BRPBZ的制剂均得到平均UL94≥V-2和TGA焦炭残基(在500℃下校正500℃的金属含量)。%。含BRPS的样品,尤其是含有ZnW和SnW的样品,产生的峰值热释放速率比等效BRPBZ样品低约50%。这些减少与LOI的各自增加并未相关,表明钨酸盐 - Polybrfr组合会影响预点火与点火后行为。计算的协同有效性表明,ZnW用作前点火和点火阶段的增效剂,特别是BRPS。 TGA-FTIR和CHAR分析表明,除了通常与Polybrfs相关的蒸汽相活性之外,还发生了冷凝相过程,特别是对于ZnW-Polybrfr组合。另外,ZnW证明了与锌静液(ZnS)相当的显着的烟雾抑制性能。

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