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Compacted oxide layer formation under conditions of limited debris retention at the wear interface during high temperature sliding wear of superalloys

机译:在高温合金的高温滑动磨损期间在磨损界面处有限的碎屑保留条件下形成压实的氧化物层

摘要

For many applications, including power generation, aerospace and the automobile industry, high temperature wear provides serious difficulties where two or more surfaces are able to move relative to one another. It is increasingly the case that with for example, aerospace applications, demands for ever more powerful and efficient engines that thus operate at higher temperatures, conventional lubrication is no longer sufficient to prevent direct contact between metallic surfaces and consequent accelerated wear. One phenomenon that has been observed to reduce metallic contact and thus high temperature wear and friction is the formation of what are termed ‘glazes’, essentially layers of compacted oxide wear debris that becomes sintered together to form a low friction wear resistant oxide surface. This thesis studies the nature of the wear encountered with four different combinations of Superalloys, slid together using a ‘block-on-cylinder’ configuration developed for accelerated simulation testing of car engine ‘valve-on-valve-seat’ wear. Predominantly, Nimonic 80A and Incoloy MA956 were used as sample materials and Stellite 6 and Incoloy 800HT were used as counterface materials.
机译:对于包括发电,航空航天和汽车工业在内的许多应用,高温磨损会带来严重的困难,因为两个或多个表面能够相对移动。越来越多的情况是,例如在航空航天应用中,需要越来越强大和高效的发动机,从而在更高的温度下运行,传统的润滑不再足以防止金属表面之间的直接接触并因此而加速磨损。观察到的一种减少金属接触并因此减少高温磨损和摩擦的现象是形成所谓的“釉”,基本上是一层紧密的氧化物磨损碎屑,它们被烧结在一起形成低摩擦耐磨氧化物表面。本文研究了四种不同的超级合金组合所遇到的磨损的性质,这些组合使用为加速发动机“阀上阀座”磨损仿真测试而开发的“缸上块”配置滑动在一起。主要将Nimonic 80A和Incoloy MA956用作样本材料,将Stellite 6和Incoloy 800HT用作对面材料。

著录项

  • 作者

    Datta Psantu; Inman Ian A;

  • 作者单位
  • 年度 2004
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
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