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Dry sliding wear of aluminum-silicon (A356) matrix composites with carbon fibre or graphite/silicon carbide reinforcement.

机译:具有碳纤维或石墨/碳化硅增强材料的铝硅(A356)基复合材料的干式滑动磨损。

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摘要

The unlubricated sliding wear of two reinforced A356 (Al-7%Si-0.3%Mg) metal matrix composites was studied using a block on ring wear machine with an AISI 52100 steel counterface (63 HRC). One composite was discontinuously reinforced with 4 The wear resistance of the A35-Carbon Fibre (CF) reinforced composites was superior to the unreinforced alloy over the entire load range tested. The improved wear resistance was related to an improvement in load carrying capability of the composites as a result of the carbon fibre addition and an interfacial reaction which produced a nickel aluminide intermetallic. These composites demonstrated regions of mild and severe wear. Mild wear was characterized by surface grooves, plastic deformation and loose debris in the form of particulates and flakes.The A356-Gr-SiC composites did not experience severe wear resulting in good wear resistance at high loads. This was due to a reduction in frictional heating and the formation of a tribolayer on the surface which consisted of iron, iron oxides, graphite, SiC and aluminum. Graphite addition resulted in a reduction in counterface wear. Higher graphite concentrations led to higher wear resistance at loads below 10 N. In the load range from 20 to 300 N the 10% graphite composite experienced wear rates 2 to 4 times that of the hybrid composite with only 3% graphite possibly due to a decrease in the load carrying ability due to higher graphite content.
机译:使用带有AISI 52100钢对接面(63 HRC)的环磨机,研究了两种增强A356(Al-7%Si-0.3%Mg)金属基复合材料的未润滑滑动磨损。一种复合材料不连续地用4增强。在整个测试载荷范围内,A35-碳纤维(CF)增强的复合材料的耐磨性均优于未增强的合金。改善的耐磨性与通过添加碳纤维和产生铝金属化镍的界面反应的结果有关,提高了复合材料的承载能力。这些复合材料显示出轻度和严重磨损区域。轻微磨损的特征是表面沟槽,塑性变形以及呈颗粒和薄片形式的松散碎屑.A356-Gr-SiC复合材料没有出现严重的磨损,因此在高负荷下具有良好的耐磨性。这是由于减少了摩擦热,并且在表面上形成了由铁,氧化铁,石墨,SiC和铝组成的摩擦层。石墨的添加减少了端面磨损。较高的石墨浓度会导致在低于10 N的负载下具有更高的耐磨性。在20到300 N的负载范围内,10%石墨复合材料的磨损率是只有3%石墨的杂化复合材料的2-4倍。由于较高的石墨含量,在负载能力方面的优势。

著录项

  • 作者

    Ames, William.;

  • 作者单位

    University of Windsor (Canada).;

  • 授予单位 University of Windsor (Canada).;
  • 学科 Engineering Materials Science.
  • 学位 M.Sc.A.
  • 年度 1994
  • 页码 176 p.
  • 总页数 176
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:49:48

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