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Application of the contact potential difference technique for on-line rubbing surface monitoring (review)

机译:接触电位差技术在在线摩擦表面监测中的应用(综述)

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摘要

The Kelvin technique for measuring contact potential differences has been adapted for continuous non-destructive monitoring of changes in the electron work function of a rubbing surface. The method can be used to investigate tribological materials for a wide range of conditions, including changes in load, sliding speed, and environment, with or without lubrication. It relies on the sensitivity of the work function to the various events which accompany friction, e.g., plastic deformation, creationof new surface material, adsorption, oxidation, phase changes and redistribution of alloy components. At present, this is the only method which is sensitive to both surface and near-surface defects and permits study of one of the two interacting surfacesduring sliding. Current work emphasizes two aspects of sliding behavior: (1) critical points with respect to changes in normal load, with relevance to materials selection and optimization, and (2) the kinetics of friction processes, including periodicchanges which may be related to those in fatigue.
机译:用于测量接触电势差的开尔文技术已被用于连续无损监测摩擦表面电子功函数的变化。该方法可用于研究各种条件下的摩擦材料,包括润滑或不润滑的载荷,滑动速度和环境的变化。它依赖于功函数对伴随摩擦的各种事件的敏感性,例如塑性变形,新表面材料的产生,吸附,氧化,相变和合金成分的重新分布。目前,这是对表面和近表面缺陷都敏感的唯一方法,并允许研究滑动过程中两个相互作用的表面之一。当前的工作着重于滑动行为的两个方面:(1)与正常载荷变化有关的临界点,与材料的选择和优化有关;(2)摩擦过程的动力学,包括可能与疲劳过程有关的周期性变化。

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