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Influence of copper and molybdenum on dry sliding wear behaviour of sintered plain carbon steel

机译:铜和钼对烧结碳素钢干滑动磨损性能的影响

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摘要

Study of wear behaviour of sintered low alloy steels is required to ascertain their applications for wear resistance. In the present work the influence of copper and molybdenum on wear behaviour of plain carbon steel (Fe-0.5%C) using pin-on-disk arrangement has been addressed. Atomized iron (Fe), graphite (C), copper (Cu) and molybdenum (Mo) elemental powders were suitably weighed and thoroughly mixed in a pot mill to yield the alloy powders of Fe-0.5%C, Fe-0.5%C-2%Cu and Fe-0.5%C-2%Mo. Admixed alloy powders were then compacted and sintered for obtaining preforms of aspect ratio (height/diameter) 1.3 and diameter 25 mm. The sintered preforms were then hot extruded and subsequently machined to obtain wear test specimens of diameter 6 mm and height 50 mm. Using Design of Experiment software, the sliding wear experiments were planned and conducted on a pin-on-disk tribometer. It has been found that there is a substantial improvement in wear resistance of the P/M plain carbon steel by the addition Mo rather than Cu. However coefficient of friction is higher due to presence of hard microstruc-tural phases. Delamination wear is found predominant for both the alloy steels. Empirical correlations for mass loss and coefficient of friction with respect to load/speed have been developed for the alloy steels.
机译:为了确定其在耐磨性方面的应用,需要研究烧结低合金钢的磨损行为。在当前的工作中,已经解决了铜和钼对采用针盘式布置的普通碳钢(Fe-0.5%C)的磨损行为的影响。适当称量雾化的铁(Fe),石墨(C),铜(Cu)和钼(Mo)元素粉末并在锅磨机中充分混合,以生成Fe-0.5%C,Fe-0.5%C-的合金粉末2%铜和Fe-0.5%C-2%Mo。然后将混合的合金粉末压实并烧结以获得纵横比(高度/直径)为1.3和直径为25 mm的预成型坯。然后将烧结的预成型件热挤出并随后进行机械加工以获得直径为6 mm,高度为50 mm的磨损测试样品。使用实验设计软件,计划并在销盘式摩擦计上进行了滑动磨损实验。已经发现,通过添加Mo而不是Cu,P / M普通碳素钢的耐磨性有了实质性的改善。但是,由于存在坚硬的微观结构相,因此摩擦系数更高。两种合金钢均主要发现分层磨损。对于合金钢,已经开发出质量损失和摩擦系数相对于载荷/速度的经验相关性。

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  • 来源
    《Materials & design》 |2013年第9期|728-736|共9页
  • 作者单位

    School of Mechanical Engineering, Shanmugha Arts, Science, Technology and Research Academy (SASTRA University), Thanjavur 613 401, Tamil Nadu, India;

    School of Mechanical Engineering, Shanmugha Arts, Science, Technology and Research Academy (SASTRA University), Thanjavur 613 401, Tamil Nadu, India;

    School of Mechanical Engineering, Shanmugha Arts, Science, Technology and Research Academy (SASTRA University), Thanjavur 613 401, Tamil Nadu, India;

    School of Mechanical Engineering, Shanmugha Arts, Science, Technology and Research Academy (SASTRA University), Thanjavur 613 401, Tamil Nadu, India;

    School of Mechanical Engineering, Shanmugha Arts, Science, Technology and Research Academy (SASTRA University), Thanjavur 613 401, Tamil Nadu, India;

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

    Low alloy steels; Sintering; Wear; Coefficient of friction;

    机译:低合金钢;烧结;穿;摩擦系数;

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