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Tribological and arc erosion behaviors of copper-refractory metal in situ composites.

机译:铜难熔金属原位复合材料的摩擦学和电弧腐蚀行为。

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摘要

Tribological and arc erosion behaviors of Cu-Nb and Cu-Cr in situ composites were investigated in this dissertation. Dry sliding tests were performed in a pin-on-disk wear tester with the composites rubbing against a rotating tool steel disk under ambient conditions with a pressure of 0.68 ;Sliding friction and wear behaviors of Cu-Nb composites with and without electrical loads were studied in terms of the effects of composition, filament orientation, true deformation strain, sliding speed and annealing temperature. The Cu-20 vol.%Nb composite had the best wear resistance among the compositions studied in both cases. Subsurface deformation was revealed by the presence of filaments and was one of the wear mechanisms for the composites. No debonding was observed in the composites during sliding. The presence of electrical current increased the temperature and promoted oxidation on wear surfaces.;The contact behavior of Cu-Nb composites against tool steel was studied in terms of the contact resistance and temperature rise. Surface oxide film development, wear particle accumulation, and unsteady contact caused by sliding were found to be the major factors governing electrical contact resistance and, therefore, temperature rise. Arc erosion behavior of the composites was also investigated. It was concluded that, in low-energy make-and-break contacts, oxidation was the major mode of surface deterioration; and, in high-energy contact situation, melting was the major cause of surface damage. The Cu-refractory metal in situ composites had better arc erosion resistance in high-energy contacts than the commercially used Cu-W composite.
机译:本文研究了Cu-Nb和Cu-Cr原位复合材料的摩擦学和电弧腐蚀行为。在销钉盘磨损测试仪上进行干式滑动测试,在环境压力为0.68的条件下,复合材料在旋转的工具钢盘上摩擦;研究了带电和不带电负载的Cu-Nb复合材料的滑动摩擦和磨损行为在组成,长丝取向,真实变形应变,滑动速度和退火温度等方面的影响。在两种情况下研究的组成中,Cu-20 vol。%Nb复合材料具有最佳的耐磨性。细丝的存在揭示了表面下的变形,这是复合材料的磨损机制之一。在滑动期间,在复合物中未观察到剥离。电流的存在增加了温度并促进了磨损表面的氧化。;从接触电阻和温度升高的角度研究了Cu-Nb复合材料与工具钢的接触行为。发现表面氧化膜的发展,磨损颗粒的积累以及滑动引起的不稳定接触是控制电接触电阻并因此引起温度升高的主要因素。还研究了复合材料的电弧腐蚀行为。结论是,在低能通断触点中,氧化是表面变质的主要方式。并且,在高能接触情况下,熔化是造成表面损坏的主要原因。铜难熔金属原位复合材料在高能触点中的耐电弧腐蚀性能优于市售的铜钨复合材料。

著录项

  • 作者

    Liu, Ping.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1991
  • 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

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