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Fabrication And Properties Of Dispersed Carbon Nanotube-aluminum Composites

机译:分散碳纳米管-铝复合材料的制备与性能

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摘要

Powder metallurgy techniques have emerged as promising routes for the fabrication of carbon nanotube (CNT) reinforced metal matrix composites. In this work, planetary ball milling was used to disperse 2 wt% MWCNT in aluminum (Al) powder. Despite the success of ball milling in dispersing CNTs in Al powder, it is often accompanied with considerable strain hardening of the Al powder, which may have implications on the final properties of the composite. Both un-annealed and annealed Al-2 wt% CNT composites were investigated. It was found that, ball-milled and extruded (un-annealed) samples of Al-2 wt% CNT demonstrated high notch-sensitivity and consistently fractured outside the gauge length during tensile testing. In contrast, extruded samples annealed at 400 and at 500 ℃ for 10 h prior to testing, exhibited more ductile behavior and no notch sensitivity. Under the present investigated processing conditions, ball milling for 3 h followed by hot extrusion and annealing at 500 ℃ resulted in enhancements of around 21% in tensile strength compared with pure aluminum with the same process history. The ball-milling conditions used were found to result in the creation of a nanostructure in all samples produced, as shown by XRD and TEM analysis. Such nanostructure was retained after prolonged exposures to temperatures up to 500 ℃. The tensile testing fracture surfaces showed uniform dispersion and alignment of the CNTs in the aluminum matrix but also showed CNTs acting as nucleation sites for void formation during tensile testing. This has contributed to the observation of CNT pull-out due to the poor bond between the CNTs and the matrix.
机译:粉末冶金技术已经成为制造碳纳米管(CNT)增强金属基复合材料的有前途的途径。在这项工作中,使用行星球磨将2 wt%的MWCNT分散在铝(Al)粉中。尽管球磨法成功地将CNT分散在Al粉中,但通常伴随Al粉的相当大的应变硬化,这可能对复合材料的最终性能产生影响。研究了未退火和退火的Al-2 wt%CNT复合材料。结果发现,球磨和挤压(未退火)的Al-2 wt%CNT样品表现出高的缺口敏感性,并且在拉伸试验期间始终在标距范围外断裂。相比之下,在测试前,在400和500℃退火10h的挤压样品表现出更大的延展性,并且没有缺口敏感性。在目前研究的加工条件下,球磨3小时,然后热挤压和在500℃退火,与具有相同加工历史的纯铝相比,抗拉强度提高了约21%。 XRD和TEM分析表明,所用的球磨条件可在所有生产的样品中产生纳米结构。长时间暴露在高达500℃的温度下,这种纳米结构得以保留。拉伸测试断裂表面显示出碳纳米管在铝基体中的均匀分散和排列,但是还显示出碳纳米管在拉伸测试过程中充当空洞形成的成核位点。由于CNT与基质之间的键合不良,这有助于观察到CNT拔出。

著录项

  • 来源
    《Materials Science and Engineering 》 |2009年第2期| 167-173| 共7页
  • 作者单位

    Department of Mechanical Engineering and the Yousef Jameel Science and Technology Research Center, The American University in Cairo, AUC Avenue, P.O. Box 74, New Cairo 11835, Egypt;

    Department of Mechanical Engineering, San Diego State University, 5500 Campanile Drive, San Diego, CA 92182, USA;

    Department of Mechanical Engineering and the Yousef Jameel Science and Technology Research Center, The American University in Cairo, AUC Avenue, P.O. Box 74, New Cairo 11835, Egypt;

    Department of Mechanical Engineering and the Yousef Jameel Science and Technology Research Center, The American University in Cairo, AUC Avenue, P.O. Box 74, New Cairo 11835, Egypt;

    Department of Mechanical Engineering, San Diego State University, 5500 Campanile Drive, San Diego, CA 92182, USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    carbon nanotubes; aluminium matrix composites; extrusion; ball milling;

    机译:碳纳米管;铝基复合材料;挤压;球磨;

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