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首页> 外文期刊>Polymer Degradation and Stability >Novel metal complexes as potential synergists with phosphorus based flame retardants in polyamide 6.6
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Novel metal complexes as potential synergists with phosphorus based flame retardants in polyamide 6.6

机译:新型金属配合物作为聚酰胺基磷阻燃剂的潜在协同作用6.6

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Aluminium (AlW), tin (Ⅱ) (SnW) and zinc (ZnW) tungstates were previously found to increase char formation in polyamide 6.6 (PA66), but have never before been studied for their potential as synergists when present with phosphorus-containing (PFRs) flame retardants. We investigate this gap in the scientific knowledge in this publication. Tungstate-PFR interactions of PA66 composites were investigated by thermal analysis, limiting oxygen index (LOI), UL94, cone calorimetry and evolved gas analysis (TGA-FT1R). Of the three tungstates, AlW in the presence of aluminium diethylphosphinate (AlPi) or a mixture of AlPi and melamine polyphosphate (MPP), promotes the highest level of flame retardancy in terms of a balance of high LOI, V-rating and TGA residual char in air at 500°C and reduction in cone calorimetric peak heat release rate (R_(PHRR)= 80%). This observation has been related to AlW having the highest Lewis acidic properties. While zinc tungstate displays the lowest levels of interaction with either PFR, it shows significant smoke suppressant properties. Elemental analysis of cone calorimetric chars suggests that while some loss of phosphorus occurred from SnW/AlPi/MPP-containing composites, most likely via volatile diethyl phosphinic acid formation, nearly 10% reduction also occurred in the Sn/W molar ratio indicating some volatilisation of tin. The TGA (in air)-FTIR results for carbon dioxide, ammonia and hydrocarbon fuel species evolution enabled discussions of the effect that each tungstate had on the flame retardant mechanisms operating.
机译:先前发现铝(AlW),锡(Ⅱ)(SNW)和锌(ZnW)钨酮,以增加聚酰胺6.6(PA66)中的炭形成,但在存在含磷时,从未研究过它们作为增效剂的潜力( PFRS)阻燃剂。我们调查本出版物中的科学知识中的这种差距。通过热分析,限制氧指数(LOI),UL94,锥形量热法(TGA-FT1R)研究了PA66复合材料的钨-PFR相互作用。在三种钨酸盐中,在铝二乙基磷酸铝(ALPI)的存在或Alpi和三聚氰胺多磷酸盐(MPP)的混合物中,在高LOI,V级和TGA残余炭的平衡方面促进了最高水平的阻燃性。在500°C的空气中,锥形量热峰热释放速率(R_(PHRR)= 80%)。该观察结果与具有最高路易斯酸性特性的ALW有关。虽然钨酸锌显示出与PFR的最低相互作用水平,但它显示出显着的烟雾抑制性质。锥形量油的元素分析表明,虽然来自含SnW / alpi / mPP复合材料的一些磷,最有可能通过挥发性二乙基膦酸形成,但SN / W摩尔比也发生了近10%的减少,表明有一些挥发锡。 TGA(空气中的) - 二氧化碳的结果,氨和烃类燃料种类的进化使得讨论每种钨酸盐对运行阻燃机制的影响。

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