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Investigation of microstructure and mechanical properties of aluminum hybrid nano-composites with the additions of solid lubricant

机译:添加固体润滑剂的铝杂化纳米复合材料的微观结构和力学性能研究

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摘要

In this experimental study, the tribological behavior of Al 2024-5 wt.% SiC-X wt.% graphite (X=5 and 10) hybrid nano-composites was produced using powder metallurgy (P/M) technique. All specimens were prepared by mechanical milling of Al 2024 and SiC-Gr nano-composite powders, followed by a blend-press-sinter methodology. Pin on disc type apparatus has been used for determining the wear loss. The sintered samples have been characterized by XRD. Wear mechanisms are discussed based on scanning electron microscopy observations of worn surface and wear debris morphology. The hardness and wear resistance of the hybrid nano-composites were increased considerably by increasing the reinforcement content. The nano-composite with 5 wt.% SiC and 10 wt.% Gr showed the greatest improvement in tribological performance. Primary wear mechanisms for hybrid nano-composites were determined to be formation of lubricating layer on the surface of samples. The overall results revealed that hybrid aluminium nano-composites can be considered as an outstanding material where high strength and wear-resistant components are of major importance, particularly structural applications in the aerospace, automotive and military industries.
机译:在本实验研究中,使用粉末冶金(P / M)技术制备了Al 2024-5 wt。%SiC-X wt。%石墨(X = 5和10)杂化纳米复合材料的摩擦学行为。通过机械研磨Al 2024和SiC-Gr纳米复合粉末,然后采用混合压烧结法,制备所有样品。盘式设备上的销已用于确定磨损量。烧结样品已经通过XRD表征。基于磨损表面和磨损碎片形态的扫描电子显微镜观察,讨论了磨损机理。通过增加补强含量,杂化纳米复合材料的硬度和耐磨性大大提高。具有5重量%的SiC和10重量%的Gr的纳米复合材料显示出摩擦性能的最大改善。确定杂化纳米复合材料的主要磨损机理是在样品表面形成润滑层。总体结果表明,杂化铝纳米复合材料可以被认为是一种杰出的材料,其中高强度和耐磨的部件至关重要,特别是在航空航天,汽车和军事工业中的结构应用。

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  • 来源
    《Materials & design 》 |2013年第10期| 448-456| 共9页
  • 作者单位

    Department of Mechanical Engineering, St. Mother Theresa Engineering College, Vagaikulam, Thoothukudi 628 102, Tamil Nadu, India;

    Centre for Manufacturing Sciences, National Engineering College, Kovilpatti 628 503, Tamil Nadu, India;

    Centre for Manufacturing Sciences, National Engineering College, Kovilpatti 628 503, Tamil Nadu, India;

    Department of Electrical and Electronics Engineering, V.V. College of Engineering, Tisayanvilai 628 503, Tamil Nadu, India;

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