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首页> 外文期刊>Polymer Degradation and Stability >Thermal decomposition of flame retarded formulations PA6/aluminum phosphinate/melamine polyphosphate/organomodified clay: Interactions between the constituents?
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Thermal decomposition of flame retarded formulations PA6/aluminum phosphinate/melamine polyphosphate/organomodified clay: Interactions between the constituents?

机译:阻燃配方PA6 /次膦酸铝/多聚三聚氰胺/有机改性粘土的热分解:成分之间的相互作用?

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摘要

The aim of this article is to investigate the thermal decomposition in pyrolytic and oxidative conditions of a phosphorous flame retardant (combination of melamine polyphosphate and aluminum phosphinate: AlPi-MPP) alone as well as in combination with an organo-modified clay (o-MMT) and of polyamide 6 formulations containing these additives. The gases evolved during the decomposition have been analyzed using TGA-FTIR. A detailed condensed phase study has been carried out combining X-ray diffraction (XRD) analyses and ~(27)A1, ~(31)P and ~(13)C solid-state nuclear magnetic resonance (NMR) measurements on samples heat treated at different characteristic temperatures. It is demonstrated that no reaction leading to the formation of new species between the additives or the additives and the matrix occurs. However, Lewis acid/base interactions are highlighted resulting in the catalytic decomposition of the components particularly under nitrogen. Under air, the combined action of oxygen and Lewis interactions leads to an even more catalyzed decomposition process. Mechanisms of thermal decomposition are proposed.
机译:本文的目的是研究单独和与有机改性粘土(o-MMT)结合使用的磷系阻燃剂(三聚氰胺三聚氰胺和次膦酸铝:AlPi-MPP)在热解和氧化条件下的热分解。 )和含有这些添加剂的聚酰胺6配方。使用TGA-FTIR分析了分解过程中产生的气体。结合X射线衍射(XRD)分析和〜(27)A1,〜(31)P和〜(13)C固态核磁共振(NMR)测量,进行了详细的凝聚相研究在不同的特征温度下已证明在添加剂或添加剂与基质之间没有发生导致新物质形成的反应。然而,突出了路易斯酸/碱的相互作用,导致组分的催化分解,特别是在氮气下。在空气中,氧和路易斯相互作用的共同作用导致催化过程进一步分解。提出了热分解机理。

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