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Influence of metal ions on thermo-oxidative stability and combustion response of polyamide 6/clay nanocomposites

机译:金属离子对聚酰胺6 /粘土纳米复合材料热氧化稳定性和燃烧响应的影响

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摘要

Combustion and thermo-oxidative properties of polyamide 6 (PA6)/montmorillonite (MMT) clay nano-composites are studied with emphasis on the catalytic role of metal ions (Mg2+, Al3+ and Fe3+) present in MMT. Each metal ion uniquely influences condensed phase reactions (mechanism and/or kinetics) depending on its concentration in metal ion exchanged MMT, its ability to form metal-organic complexes, and confinement effect as determined by eventual dispersion of MMT in the matrix. Presence of Al3+ accelerated kinetics of PA6 decomposition during initial stages, Mg2+ rich composite displayed good thermo-oxidation stability and char yield, and Fe3+ prominently altered the chemical composition of condensed phase ultimately producing highest amount of smoke. Possible PA6 decomposition reaction mechanisms have been identified that are susceptible to metal ion catalysis in the presence of oxygen. These results provide important progress towards the understanding of widely reported yet poorly understood phenomena of catalyzing effect of clay during the combustion of polymer. The results are a definite step towards the realization of stand-alone clay based nanocomposites with superior fire retardancy. (C) 2016 Elsevier Ltd. All rights reserved.
机译:研究了聚酰胺6(PA6)/蒙脱土(MMT)粘土纳米复合材料的燃烧和热氧化性能,重点研究了MMT中金属离子(Mg2 +,Al3 +和Fe3 +)的催化作用。每种金属离子都会根据其在金属离子交换的MMT中的浓度,其形成金属有机络合物的能力以及由最终将MMT分散在基质中所确定的约束效应来唯一影响缩合相反应(机理和/或动力学)。 Al3 +的存在在初始阶段加速了PA6的分解动力学,富含Mg2 +的复合材料表现出良好的热氧化稳定性和焦炭收率,而Fe3 +显着改变了冷凝相的化学组成,最终产生了最多的烟雾。已经确定了可能的PA6分解反应机理,该机理在氧气存在下易于受到金属离子催化。这些结果为理解聚合物在燃烧过程中粘土的催化作用现象提供了重要的进展。结果是朝着实现具有优异阻燃性的独立粘土基纳米复合材料迈出了确定的一步。 (C)2016 Elsevier Ltd.保留所有权利。

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