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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >The effect of carbon nanotube orientation on erosive wear resistance of CNT-epoxy based composites
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The effect of carbon nanotube orientation on erosive wear resistance of CNT-epoxy based composites

机译:碳纳米管取向对碳纳米管-环氧树脂基复合材料耐冲蚀磨损性能的影响

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摘要

Aligned carbon nanotube (CNT) polymer composites are envisioned as the next-generation composite materials for a wide range of applications. In this work, we investigate the erosive wear behavior of epoxy matrix composites reinforced with both randomly dispersed and aligned carbon nanotube (CNT) arrays. The aligned CNT composites are prepared in two different configurations, where the sidewalk and ends of nanotubes are exposed to the composite surface. Results have shown that the composite with vertically aligned CNT-arrays exhibits superior erosive wear resistance compared to any of the other types of composites, and the erosion rate reaches a similar performance level to that of carbon steel at 20° impingement angle. The erosive wear mechanism of this type of composite, at various impingement angles, is studied by Scanning Electron Microscopy (SEM). We report that the erosive wear performance shows strong dependence on the alignment geometries of CNTs within the epoxy matrix under identical nanotube loading fractions. Correlations between the eroded surface roughness and the erosion rates of the CNT composites are studied by surface profilometry. This work demonstrates methods to fabricate CNT based polymer composites with high loading fractions of the filler, alignment control of nanotubes and optimized erosive wear properties.
机译:取向碳纳米管(CNT)聚合物复合材料被设想为适用于广泛应用的下一代复合材料。在这项工作中,我们研究了随机分散和排列的碳纳米管(CNT)阵列增强的环氧树脂基复合材料的腐蚀磨损行为。对齐的CNT复合材料以两种不同的配置制备,其中人行道和纳米管的端部暴露于复合材料表面。结果表明,与任何其他类型的复合材料相比,具有垂直排列的CNT阵列的复合材料表现出优异的耐腐蚀性,并且在20°的冲击角下,腐蚀速率达到了与碳钢相似的性能水平。通过扫描电子显微镜(SEM)研究了这种复合材料在各种撞击角度下的腐蚀磨损机理。我们报告说,在相同的纳米管负载分数下,侵蚀磨损性能显示出对环氧基质中CNT的排列几何的强烈依赖性。通过表面轮廓仪研究了碳纳米管复合材料的腐蚀表面粗糙度与腐蚀速率之间的关系。这项工作演示了制造具有高填充量的填料的CNT基聚合物复合材料的方法,纳米管的排列控制和优化的腐蚀磨损性能。

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