首页> 外文期刊>Journal of Applied Polymer Science >Flame-Retarding Mechanism of Organically Modified Montmorillonite and Phosphorous-Nitrogen Flame Retardants for the Preparation of a Halogen-Free, Flame-Retarding Thermoplastic Poly(ester ether) Elastomer
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Flame-Retarding Mechanism of Organically Modified Montmorillonite and Phosphorous-Nitrogen Flame Retardants for the Preparation of a Halogen-Free, Flame-Retarding Thermoplastic Poly(ester ether) Elastomer

机译:有机改性蒙脱土和磷氮阻燃剂的阻燃机理制备无卤阻燃热塑性聚酯(酯)弹性体

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In this study, thermoplastic poly(ester ether) elastomer (TPEE) nanocomposites with phosphorus–nitrogen (P–N) flame retardants and montmorillonite (MMT) were prepared by melt blending. The fire resistance of the nanocomposites was analyzed by limiting oxygen index (LOI) and vertical burning (UL 94) tests. The results show that the addition of the P–N flame retardants increased the LOI of the material from 17.3 to 27%. However, TPEE containing P–N flame retardants only obtained a UL 94 V-2 ranking; this resulted in a flame dripping phenomenon. On the other hand, TPEE containing the P–N flame retardant and organically modified montmorillonite (o-MMT) achieved better thermal stability and good flame retardancy; this was ascribed to its partially intercalated structure. The synergistic effect and synergism were investigated by Fourier transform infrared spectroscopy and thermogravimetry. The introduction of o-MMT decreased the inhibition action of the P–N flame retardant and increased the amount of residues. The catalytic decomposition effect of MMT and the barrier effect of the layer silicates are discussed in this article. The residues after heating in the muffle furnace were analyzed by scanning electron microscopy, energy-dispersive X-ray spectroscopy and laser Raman spectroscopy. It was shown that the intercalated layer silicate structure facilitated the crosslinking interaction and promoted the formation of additional carbonaceous char residues in the formation of the compact, dense, folded-structure surface char. The combination of the P–N flame retardant and o-MMT in TPEE resulted in a better thermal stability and fire resistance because of the synergistic effect of the mixture.
机译:在这项研究中,通过熔融共混制备了具有磷-氮(PN)阻燃剂和蒙脱土(MMT)的热塑性聚(酯醚)弹性体(TPEE)纳米复合材料。通过极限氧指数(LOI)和垂直燃烧(UL 94)测试分析了纳米复合材料的耐火性。结果表明,PN阻燃剂的添加使材料的LOI从17.3提高到27%。但是,含TPEE的P–N阻燃剂仅获得UL 94 V-2等级。这导致了火焰滴落现象。另一方面,含有PN阻燃剂和有机改性蒙脱土(o-MMT)的TPEE具有更好的热稳定性和阻燃性。这归因于其部分插入的结构。通过傅里叶变换红外光谱和热重分析法研究了协同作用和协同作用。 o-MMT的引入降低了PN阻燃剂的抑制作用,并增加了残留量。本文讨论了MMT的催化分解作用和层状硅酸盐的阻挡作用。在马弗炉中加热后的残留物通过扫描电子显微镜,能量色散X射线光谱和激光拉曼光谱进行分析。结果表明,在致密,致密,折叠结构的表面炭形成过程中,层间硅酸盐结构促进了交联相互作用,并促进了其他碳质炭残渣的形成。 TPEE中P–N阻燃剂和o-MMT的组合由于混合物的协同作用而产生了更好的热稳定性和耐火性。

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