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首页> 外文期刊>RSC Advances >Effect of mixing conditions on the selective localization of graphite oxide and the properties of polyethylene/high-impact polystyrene/graphite oxide nanocomposite blends
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Effect of mixing conditions on the selective localization of graphite oxide and the properties of polyethylene/high-impact polystyrene/graphite oxide nanocomposite blends

机译:混合条件对氧化石墨选择性定位及聚乙烯/高抗冲聚苯乙烯/氧化石墨纳米复合共混物性能的影响

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摘要

We developed a new and effective strategy for compatibilizing immiscible polymer blend nanocomposites of polyethylene/high-impact polystyrene/graphite oxide (PE/HIPS/GO) by a combination of solution intercalation and a melt-mixing method. GO was first dispersed in HIPS by a solution-mixing method and then added to melted PE. The effect of variations in the mixing conditions, such as the rotor speed and loading level of the filler, on the morphology and mechanical (tensile) and thermal properties of the nanocomposite blends was investigated using XRD, SEM, TEM and TGA. The morphological study showed that varying the mixing conditions resulted in different states of dispersion and different localizations of the filler. As a result, the ductility of the polymer blends filled with GO was notably increased. The compatibilizing effect of GO results from the fact that GO can minimize the interfacial tension between PE and HIPS if it is localized at the interface. Unlike traditional copolymer compatibilizers, GO can also act as a reinforcing filler in polymer blends, thus remarkably enhancing their mechanical strength and thermal stability.
机译:我们开发了一种新的有效策略,可通过溶液插层和熔融混合方法使聚乙烯/高抗冲聚苯乙烯/氧化石墨(PE / HIPS / GO)的不溶混聚合物共混纳米复合材料相容。首先通过溶液混合法将GO分散在HIPS中,然后将其添加到熔融的PE中。使用XRD,SEM,TEM和TGA研究了混合条件的变化(例如转子的转速和填料的用量)对纳米复合共混物的形貌,机械(拉伸)和热性能的影响。形态学研究表明,改变混合条件会导致不同的分散状态和不同的填料局部化。结果,充满GO的聚合物共混物的延展性显着提高。 GO的增容效果来自以下事实:如果将GO定位在界面上,它将使PE和HIPS之间的界面张力最小。与传统的共聚物增容剂不同,GO还可作为聚合物共混物中的增强填料,从而显着提高其机械强度和热稳定性。

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