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Effect of Cu, Ni addition on the CNTs dispersion, wear and thermal expansion behavior of Al-CNT composites by molecular mixing and mechanical alloying

机译:Cu,Ni的添加对分子混合和机械合金化Al-CNT复合材料CNTs分散,磨损和热膨胀行为的影响

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摘要

Carbon Nanotubes (CNTs) are used as ideal reinforcement due to their high strength, high elastic modulus and high aspect ratio in fabrication of metal matrix composites. But the uniform distribution of the nano reinforcements (CNTs) in the matrix is very difficult to achieve due to their high aspect ratio and Van der Waals force among them. Due to this effect the expected properties may not be achieved in the resulting composites. To overcome this issue and improve the distribution of CNTs in the matrix the Molecular Level Mixing (MLM) of CNTs with Cu/Ni followed by Mechanical Alloying (MA) can be used effectively with functionalized CNTs.Micron sized Cu-CNTs and Ni-CNTs composite powders were prepared by MLM. Then the composite powder was mixed with Al matrix powder by MA. The composite powder obtained after MA were consolidated using spark plasma sintering (SPS). The Microstructure of the sintered Al/Cu-CNT and Al/Ni-CNT composites was characterized by Optical microscope, Scanning Electron Microscope (SEM). Also hardness, wear and thermal expansion were measured. The results show that mechanical properties of the Cu and Ni coated CNTs reinforced composites are enhanced when compared with Al/CNT composite and pure Al sample. This is due to uniform distribution of CNTs in the Al matrix and strong interfacial bonding.
机译:碳纳米管(CNT)由于在金属基复合材料的制造中具有高强度,高弹性模量和高纵横比而被用作理想的增强材料。但是,由于纳米增强物(CNT)的高纵横比和范德华力(Van der Waals force),它们很难在基体中均匀分布。由于这种作用,在所得复合材料中可能无法实现预期的性能。为了克服这个问题并改善CNT在基体中的分布,可以将碳纳米管与Cu / Ni的分子水平混合(MLM),然后进行机械合金化(MA)的方法与功能化的CNT有效结合使用。微米级的Cu-CNT和Ni-CNT通过MLM制备复合粉末。然后通过MA将复合粉末与Al基粉末混合。 MA后获得的复合粉末使用火花等离子体烧结(SPS)进行固结。用光学显微镜,扫描电子显微镜(SEM)对Al / Cu-CNT和Al / Ni-CNT复合材料的显微组织进行了表征。还测量了硬度,磨损和热膨胀。结果表明,与Al / CNT复合材料和纯Al样品相比,Cu和Ni包覆的CNTs增强复合材料的机械性能得到增强。这是由于CNT在Al基体中的均匀分布和牢固的界面结合所致。

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