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High Temperature Tribological Characteristics of Fe–Mo-based Self-Lubricating Composites

机译:铁钼基自润滑复合材料的高温摩擦学特性

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摘要

Fe–Mo-based self-lubricating composites were prepared by a powder metallurgical hot-pressing method. The tribological properties of Fe–Mo-based composites with varied CaF2 contents at high temperature were evaluated, and the effect of glaze films on the friction and wear characteristics of composites were analyzed. The results show that the introduction of CaF2 into Fe–Mo alloys improved the mechanical properties, and the best tribological properties of Fe–Mo–CaF2 composites were achieved at the CaF2 content of 8 wt% at both room temperature and 600 °C. The worn surface of Fe–Mo–CaF2 composite at 600 °C is characterized to plastic deformation and slight scuffing, and the improved tribological properties are attributed to the formation of lubricious glaze film that composed of high-temperature lubricants CaMoO4 and CaF2 on the worn surface of the composites.
机译:Fe-Mo基自润滑复合材料是通过粉末冶金热压法制备的。评价了CaF 2含量变化的Fe-Mo基复合材料在高温下的摩擦学性能,分析了釉膜对复合材料摩擦磨损性能的影响。结果表明,将CaF2 引入Fe-Mo合金可改善力学性能,并且当CaF2 含量为8时,Fe-Mo-CaF2 复合材料的摩擦学性能最佳。在室温和600°C时均为wt%。 Fe–Mo–CaF2 复合材料在600°C时的磨损表面具有塑性变形和轻微擦伤的特征,而摩擦学性能的改善归因于由高温润滑剂CaMoO4 < / sub>和CaF2 在复合材料的磨损表面上。

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  • 来源
    《Tribology Letters》 |2009年第3期|193-200|共8页
  • 作者单位

    State Key Laboratory of Solid Lubrication Lanzhou Institute of Chemical Physics Chinese Academy of Sciences Lanzhou 730000 People’s Republic of China;

    State Key Laboratory of Solid Lubrication Lanzhou Institute of Chemical Physics Chinese Academy of Sciences Lanzhou 730000 People’s Republic of China;

    State Key Laboratory of Solid Lubrication Lanzhou Institute of Chemical Physics Chinese Academy of Sciences Lanzhou 730000 People’s Republic of China;

    State Key Laboratory of Solid Lubrication Lanzhou Institute of Chemical Physics Chinese Academy of Sciences Lanzhou 730000 People’s Republic of China;

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

    Metal–matrix composites; Friction/wear; High-temperature property;

    机译:金属基复合材料;摩擦/磨损;高温性能;

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