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The Effect of the Preparation Method and the Dispersion and Aspect Ratio of CNTs on the Mechanical and Electrical Properties of Bio-Based Polyamide-410/CNT Nanocomposites

机译:制备方法以及碳纳米管的分散度和纵横比对生物基聚酰胺-410 / CNT纳米复合材料的机械和电学性能的影响

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摘要

Bio-based polymeric nanocomposites (NCs) with enhanced electrical conductivity and rigidity were obtained by adding multi-walled carbon nanotubes (CNTs) to a commercial bio-based polyamide 4,10 (PA410). Two different types of commercial CNTs (Cheap Tubes and Nanocyl NC7000 ) and two different preparation methods (using CNTs in powder form and a PA6-based masterbatch, respectively) were used to obtain melt-mixed PA410/CNT NCs. The effect of the preparation method as well as the degree of dispersion and aspect ratio of the CNTs on the electrical and mechanical properties of the processed NCs was studied. Superior electrical and mechanical behavior was observed in the Nanocyl CNTs-based NCs due to the enhanced dispersion and higher aspect ratio of the nanotubes. A much more significant reduction in aspect ratio was observed in the Cheap Tubes CNTs than in the Nanocyl CNTs. This was attributed to the fact that the shear stress applied during melt processing reduced the length of the CNTs to similar lengths in all cases, which pointed to the diameter of the CNTs as the key factor determing the properties of the NCs. The PA6 in the ternary PA410/PA6/CNT system led to improved Young’s modulus values because the reinforcing effect of CNTs was greater in PA6 than in PA410.
机译:通过向商业生物基聚酰胺4,10(PA410)中添加多壁碳纳米管(CNT),可以获得具有增强的导电性和刚度的生物基聚合物纳米复合材料(NCs)。使用两种不同类型的商用CNT(便宜管和Nanocyl NC7000)和两种不同的制备方法(分别使用粉末形式的CNT和基于PA6的母料)来获得熔融混合的PA410 / CNT NC。研究了制备方法以及碳纳米管的分散度和纵横比对加工后的纳米碳管的电气和机械性能的影响。由于纳米管的分散性增强和长径比提高,因此在基于纳米碳管的NC中观察到了优异的电气和机械性能。在Cheap Tubes CNT中观察到的长宽比比在纳米碳纳米管中大得多。这归因于以下事实:在所有情况下,在熔融加工过程中施加的剪切应力将CNT的长度减小到相似的长度,这表明CNT的直径是决定NC的性能的关键因素。三元PA410 / PA6 / CNT系统中的PA6导致杨氏模量值提高,因为CNT的增强作用在PA6中比在PA410中更大。

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