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Study on Electrical Properties and Thermal Conductivity of Carbon Nanotube/Epoxy Resin Nanocomposites with Different Filler Aspect Ratios

机译:不同填料纵横比的碳纳米管/环氧树脂纳米复合材料的电性能和导热性研究

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Multi-walled carbon nanotube/epoxy resin (MWCNT/EP) composites with filler contents from 0.03wt% to 0.5wt.% and two different aspect ratios are prepared by solution blended process. Carbon nanotubes are dispersed by sonication and high speed shear force. The impact of aspect ratio on electric and thermal conductivity of nanocomposites has been studied. Experiment results illustrate that percolation threshold of electrical conductivity decreases with the increase of aspect ratio of carbon nanotube and the lowest percolation threshold is about 0.05wt.%. Strong nonlinear DC electrical conductivity behavior caused by field emission is observed. Both the increase of aspect ratio and approach of percolation threshold increases the nonlinearity. With the increase of filler content, AC conductivity is less dependent on frequency. Thermal conductivity of nanocomposites increases with filler content. The increase of aspect ratio is also positive to improve thermal conductivity. The thermal conductivity of nanocomposite with 0.5wt.% filler content and highest aspect ratio is about 26% higher than that of neat epoxy.
机译:多壁碳纳米管/环氧树脂(MWCNT / EP)复合材料,填料含量为0.03wt%至0.5wt。通过溶液混合方法制备%和两个不同的纵横比。通过超声处理和高速剪切力分散碳纳米管。研究了纵横比对纳米复合材料的电热和导热率的影响。实验结果说明,电导率的渗透阈值随着碳纳米管的纵横比的增加而降低,并且最低的渗透阈值约为0.05wt。%。观察到由场排放引起的强的非线性直流电导率行为。纵横比的增加和渗透阈值的方法增加了非线性。随着填料含量的增加,交流电导率较少依赖于频率。纳米复合材料的导热系数随填料含量增加。宽高比的增加也是阳性的,以提高导热率。纳米复合材料的导热率为0.5wt。%填料含量和最高纵横比的比纯环氧含量高约26%。

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