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Electrical and Tensile Properties of Carbon Nanotubes-Reinforced Aluminum Alloy 6101 Wire

机译:碳纳米管增强铝合金6101线的电气和拉伸性能

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The wires from aluminum alloy 6101 (AA-6101) used in power cables were covered by carbon nanotubes (CNTs) and graphite powders, and then they were subjected to solubilization heat treatment at a temperature of 550 degrees C and aged at 180 degrees C. The effects of the processing temperature on the mechanical and electrical properties of the wires based on CNTs@AA-6101 and graphite@AA-6101 composites were investigated by electron microscopes, thermogravimetric analysis, tensile tests, conductor tests and Raman spectroscopy. The results show that CNTs were successfully incorporated on the surface of aluminum wires; the tensile strength of CNTs@AA-6101 increased by 30% and 34% as compared to graphite@AA-6101 and standard AA-6101 wire without CNTs, respectively. Moreover, the resistivity had a decrease 13.7% less than conventional wires. The solubilization process added with the incorporation of CNTs represents a new way for manufacturing nanostructured power cables to achieve high-performance energy transmission lines.
机译:电缆中使用的铝合金6101(AA-6101)的电线被碳纳米管(CNT)和石墨粉末覆盖,然后将它们在550℃的温度下进行溶解热处理,并在180℃下老化。通过电子显微镜,热重分析,拉伸试验,导体试验和拉曼光谱研究了基于CNT @ AA-6101和石墨@ AA-6101复合材料的基于CNTS @ AA-6101和石墨@ AA-6101复合材料的机械和电性能的影响。结果表明,CNT成功地掺入铝线的表面上;与图石墨@ AA-6101和没有CNT的标准AA-6101线相比,CNTS @ AA-6101的拉伸强度分别增加了30%和34%。此外,电阻率比常规线减少13.7%。加入CNT的加入溶解过程表示用于制造纳米结构电力电缆以实现高性能能量传输线的新方法。

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