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首页> 外文期刊>RSC Advances >Pre-localized MWCNT network for a low percolation threshold in MWCNT/ABS nanocomposites: experiment and theory
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Pre-localized MWCNT network for a low percolation threshold in MWCNT/ABS nanocomposites: experiment and theory

机译:MWCNT / ABS纳米复合材料中低渗透阈值的预定位MWCNT网络:实验和理论

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Nanocomposites of well-dispersed multi walled carbon nanotubes (MWCNTs) in an acrylonitrile-butadiene-styrene (ABS) matrix were prepared by dry tumble mixing and a subsequent hot compression technique. The preparation method is analysed here to assist in the explanation and understanding of the experimental observations. The vision of the processing method has been confirmed using scanning electron microscopy. As a result of decent dispersion and pre-localization of MWCNTs in the ABS matrix, the electrical conductivity of the nanocomposite as a function of filler content exhibits a distinctive percolation behavior with a percolation threshold of only 0.0005 volume fraction. The high aspect ratio of MWCNTs enables the creation of interconnected networks within the ABS matrix at a very low nanofiller loading, while their high inherent electrical conductivity yields nanocomposites with a high bulk electrical conductivity. To explain the conductivity behaviour, statistical percolation theory and GEM theory are employed. The model parameters elaborated show that both models can adequately describe the behaviour. A comparative analysis of the applicability of percolation theory and GEM theory for expressing the conductivity behavior of the MWCNT/ABS composites with other research works has been performed. Finally, the electrical conductivity of MWCNTs based on the data in this work and elsewhere is evaluated. The universal exponent t is found to be 1.93 for a best-fit value of percolation threshold of 0.00048(5) vol. fraction of MWCNTs in this work. The D shore hardness results have revealed a random increase in hardness and density with an increasing MWCNT content.
机译:丙烯腈-丁二烯-苯乙烯(ABS)基质中分散良好的多壁碳纳米管(MWCNT)的纳米复合材料是通过干滚转混合和随后的热压技术制备的。本文分析了制备方法,以帮助解释和理解实验观察结果。使用扫描电子显微镜已经确认了该加工方法的视野。由于MWCNT在ABS基质中的良好分散和预定位,纳米复合材料的电导率随填料含量的变化表现出独特的渗透行为,其渗透阈仅为0.0005体积分数。 MWCNT的高长径比可以在非常低的纳米填料负载下在ABS基质内创建互连网络,而它们的高固有电导率可产生具有高整体电导率的纳米复合材料。为了解释电导率行为,采用了统计渗流理论和GEM理论。阐述的模型参数表明,两个模型都可以充分描述行为。进行了渗流理论和GEM理论在表达MWCNT / ABS复合材料电导行为方面的适用性与其他研究工作的比较分析。最后,根据这项工作和其他方面的数据评估了MWCNT的电导率。发现渗滤阈值的最佳拟合值为0.00048(5)vol的通用指数t为1.93。这项工作中有MWCNT的一部分。 D肖氏硬度结果表明,随着MWCNT含量的增加,硬度和密度随机增加。

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