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Tribological characteristics of innovative A16061-carbon fiber rod metal matrix composites

机译:创新的A16061-碳纤维棒金属基复合材料的摩擦学特性

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摘要

Rods made of continuous carbon fibers are being extensively used as structural materials in light weight micro-air vehicles owing to their excellent specific modulus and strength. Further, they possess excellent tribological characteristics - low friction and wear coupled with high conductivity making them an ideal reinforcement in developing light weight, high strength aluminum based metal matrix composites. In the last three decades, researchers have focused mainly on the study of mechanical and tribological behavior of discontinuous carbon fiber reinforced metal matrix composites. However, no information is available regarding the tribological behavior of carbon fibers rod reinforced metal matrix composites, although it is interesting and will result in expanding the applications of metal matrix composites (MMC) where tribological failures are expected. In the light of the above, the present work focuses on development of innovative A16061-carbon fiber rods composites by casting route and assessing their tribological characteristics. Carbon fiber rods of 4 mm and 6 mm diameters were surface sensitized to achieve electro less nickel coating. Copper plating on the electro less nickel coated carbon fiber rods were carried out. The copper plated carbon fiber rods were arranged in cylindrical array in the metallic mold to which molten A16061 alloy after degassing was poured at a temperature of 700 ℃. The developed innovative composites were subjected to density tests, microstructure studies, hardness, friction and wear tests. A pin on disk configuration was used with hardened steel as the counter face. Load was varied from 20 N to 60 N while the sliding velocity was varied between 0.12 m/s and 0.62 m/s. Scanning electron microscopy (SEM) studies on worn surfaces and wear debris have been carried out to validate the wear mechanism. The developed innovative composites (11 Vol.% & 25 Vol.%) have exhibited lower coefficient of friction and wear rates when compared with matrix alloy.
机译:由连续碳纤维制成的棒由于其优异的比模量和强度而被广泛地用作轻型微型飞机的结构材料。此外,它们具有出色的摩擦学特性-低摩擦和磨损以及高导电性,使其成为开发轻质,高强度铝基金属基复合材料的理想增强材料。在过去的三十年中,研究人员主要致力于不连续碳纤维增强金属基复合材料的力学和摩擦学行为。但是,没有关于碳纤维棒增强金属基复合材料的摩擦学性能的信息,尽管这是令人感兴趣的,并且会导致预期摩擦学失败的金属基复合材料(MMC)的应用范围扩大。鉴于上述,本工作着重于通过铸造路线和评估其摩擦学特性来开发创新的A16061-碳纤维棒复合材料。对直径为4 mm和6 mm的碳纤维棒进行表面敏化,以实现无电镀镍。在化学镀镍的碳纤维棒上进行镀铜。将镀铜碳纤维棒以圆筒形排列在金属模具中,并在700℃的温度下将脱气后的熔融A16061合金倒入该模具中。研发的创新复合材料经过密度测试,微观结构研究,硬度,摩擦和磨损测试。盘上的销钉配置了硬化钢作为对面。负载从20 N变为60 N,而滑动速度在0.12 m / s和0.62 m / s之间变化。已对磨损表面和磨损碎屑进行了扫描电子显微镜(SEM)研究,以验证磨损机理。与基体合金相比,已开发的创新复合材料(11 Vol。%和25 Vol。%)具有更低的摩擦系数和磨损率。

著录项

  • 来源
    《Materials & design》 |2013年第9期|597-605|共9页
  • 作者单位

    Centre of Surface Engineering Laboratory, Mechanical Engineering Department, PES Institute of Technology, Bangalore, India,School of Design, Engineering & Computing, Bournemouth University, UK;

    Centre of Surface Engineering Laboratory, Mechanical Engineering Department, PES Institute of Technology, Bangalore, India,Mechanical Engineering Department, R.V.C.E., Bangalore, India;

    Centre of Surface Engineering Laboratory, Mechanical Engineering Department, PES Institute of Technology, Bangalore, India;

    School of Design, Engineering & Computing, Bournemouth University, UK;

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

    Carbon rod; A16061; Metallic coating; Wear rates;

    机译:碳棒A16061;金属涂层;磨损率;

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