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Theory of Friction Based on Brittle Fracture

机译:基于脆性断裂的摩擦理论

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摘要

A theory of friction is presented that may be more applicable to geologic materials than the classic Bowden and Tabor theory. In the model, surfaces touch at the peaks of asperities and sliding occurs when the asperities fail by brittle fracture. The coefficient of friction, μ, was calculated from the strength of asperities of certain ideal shapes; for cone‐shaped asperities, μ is about 0.1 and for wedge‐shaped asperities, μ is about 0.15. For actual situations which seem close to the ideal model, observed μ was found to be very close to 0.1, even for materials such as quartz and calcite with widely differing strengths. If surface forces are present, the theory predicts that μ should decrease with load and that it should be higher in a vacuum than in air. In the presence of a fluid film between sliding surfaces, μ should depend on the area of the surfaces in contact. Both effects are observed. The character of wear particles produced during sliding and the way in which μ depends on normal load, roughness, and environment lend further support to the model of friction presented here.
机译:提出了一种摩擦理论,它比经典的Bowden和Tabor理论更适用于地质材料。在模型中,表面在粗糙峰处接触,并且当粗糙因脆性断裂而失效时会发生滑动。摩擦系数μ是根据某些理想形状的凹凸强度计算得出的。对于锥形凹凸,μ约为0.1,对于楔形凹凸,μ约为0.15。对于看似理想模型的实际情况,发现观察到的μ非常接近0.1,即使对于强度差异很大的石英和方解石等材料也是如此。如果存在表面力,则该理论预测μ应随负载而减小,并且在真空中应大于空气中的μ。在滑动表面之间存在流体膜的情况下,μ应取决于接触表面的面积。观察到两种效果。滑动过程中产生的磨损颗粒的特性以及μ取决于正常载荷,粗糙度和环境的方式,为这里提出的摩擦模型提供了进一步的支持。

著录项

  • 来源
    《Journal of Applied Physics 》 |1967年第7期| 共7页
  • 作者

    Byerlee James D.;

  • 作者单位

    Theoretical Geophysics Branch, United States Geological Survey, Acorn Building, Silver Spring, MarylandDepartment of Geology and Geophysics, Massachusetts Institute of Technology, Cambridge, Massachusetts;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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