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首页> 外文期刊>Journal of Applied Polymer Science >Preparation and Thermal and Thermo-Oxidative Stability of Vinylidene Chloride-co-Vinyl Chloride Copolymer/Synthetic Hectorite Nanocomposites
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Preparation and Thermal and Thermo-Oxidative Stability of Vinylidene Chloride-co-Vinyl Chloride Copolymer/Synthetic Hectorite Nanocomposites

机译:偏二氯乙烯-共-氯乙烯共聚物/合成锂蒙脱石纳米复合材料的制备及热和热氧化稳定性

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摘要

Poly(vinylidene chloride-co-vinylchloride)/organically modified hectorite (VDC-VC/SPN) nanocomposites were prepared by melt blending VDC-VC copolymer with SPN in the presence of dioctyl phthalate, which acted as a plasticizer. As a result, the exfoliated structure was found in the VDC-VC/SPN nanocomposites. In nitrogen atmosphere, VDC-VC/SPN nanocomposites exhibited a single-step thermal degradation. The thermal stability of VDC-VC/SPN nanocomposites is significantly influenced by the SPN, which was modified with long alkyl ternary ammonium salt. In air atmosphere, VDC-VC/SPN nanocomposites revealed a two-step thermo-oxidative degradation behavior. At the first degradation stage, the weight loss pattern is similar to that of VDC-VC composites in nitrogen, in which the thermo-oxidative stability of VDC-VC/SPN nanocomposites is affected by the ternary ammonium salt and oxygen rather than its morphology. At the second degradation stage, both the enhanced thermo-oxidative stability and the flame-retardation ability of VDC-VC composites are strongly and closely related to the morphology of nanocomposites.
机译:聚(偏二氯乙烯-共-氯乙烯)/有机改性锂蒙脱石(VDC-VC / SPN)纳米复合材料是通过在邻苯二甲酸二辛酯的存在下将VDC-VC共聚物与SPN熔融共混而制备的。结果,在VDC-VC / SPN纳米复合材料中发现了剥离的结构。在氮气气氛中,VDC-VC / SPN纳米复合材料表现出一步热降解。 VDC-VC / SPN纳米复合材料的热稳定性受SPN的影响很大,而SPN则用长烷基三元铵盐改性。在大气中,VDC-VC / SPN纳米复合材料表现出两步热氧化降解行为。在第一个降解阶段,重量损失模式与氮气中的VDC-VC复合材料相似,其中VDC-VC / SPN纳米复合材料的热氧化稳定性受三元铵盐和氧的影响,而不是其形态的影响。在第二降解阶段,VDC-VC复合材料的增强的热氧化稳定性和阻燃能力均与纳米复合材料的形态密切相关。

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