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Effect of Expanded Temperature on Microstructure of Carbon Nanotubes/Expanded Graphite Composites

机译:膨胀温度对碳纳米管/膨胀石墨复合材料微观结构的影响

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Carbon nanotube/expanded graphite composite material was prepared by expanding the mixture of multi-walled carbon nanotubes and expansible graphite under the condition of high temperature. The microstructure and composition was studied by using SEM and XRD. The study shows that the tubular structure of carbon nanotubes in the composite material is changed by high temperature expanding process, and the microstructure is different with different expanding temperature. When the expanding temperature was 900°C, carbon nanotubes transformed, then attached to the surface of expanded graphite flake, so carbon nanotubes and expanding graphite combined strongly; globular carbon nanotubes attached to the surface of expanded graphite flake at the temperature of 700°C, both were combined much more strongly; carbon nanotubes retained the tube structure at the temperature of 500°C, combination was looser due to the simple physical adsorption. The result shows that the choice of expanding temperature has an important effect on microstructure of carbon nanotube/expanded graphite composite material.
机译:通过在高温条件下膨胀多壁碳纳米管和可膨胀石墨的混合物来制备碳纳米管/膨胀石墨复合材料。使用SEM和XRD研究了微观结构和组合物。该研究表明,复合材料中的碳纳米管的管状结构通过高温膨胀过程而改变,微观结构与不同的膨胀温度不同。当膨胀温度为900℃时,将碳纳米管转化,然后连接到膨胀石墨片的表面上,使碳纳米管和膨胀石墨强烈相结合;在700℃的温度下连接到膨胀石墨薄片表面的球状碳纳米管,两者均更强烈地组合;碳纳米管在500℃的温度下保留管结构,由于物理吸附的简单,组合却松动。结果表明,膨胀温度的选择对碳纳米管/膨胀石墨复合材料的微观结构具有重要作用。

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