首页> 外文会议>Proceedings of the ASME/STLE international joint tribology conference 2009 >VERY EARLY STAGE OF ELASTIC-PLASTIC SPHERICAL CONTACT FRETTING
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VERY EARLY STAGE OF ELASTIC-PLASTIC SPHERICAL CONTACT FRETTING

机译:弹塑性球形接触微动的早期阶段

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摘要

The contact area, friction force and relative displacement evolution at the very early stage of fretting are investigated experimentally. Copper and steel spheres of various diameters are loaded against a hard sapphire flat by a range of normal loads deep into the elastic-plastic regime of deformation. A reciprocating tangential loading is then applied with a maximum loading below the static friction to avoid gross slip. Real-time and in situ direct measurements of the contact area, along with accurate measurements of the friction force and relative displacement, reveal substantial junction growth and energy dissipation mainly in the first loading cycle. The so called "slip amplitude" is found to be attributed to residual tangential plastic deformation rather than to interfacial slip. Elastic shake-down is observed for the 2.5% hardening steel spheres while plastic shake-down is observed in the case of the elastic perfectly plastic copper spheres.
机译:实验研究了微动磨损初期的接触面积,摩擦力和相对位移的变化。各种直径的铜和钢球通过深至变形的弹塑性状态的一系列法向载荷被加载到坚硬的蓝宝石平板上。然后施加往复切向载荷,最大载荷低于静摩擦力,以避免总滑移。接触面积的实时和原位直接测量,以及摩擦力和相对位移的精确测量,显示出主要在第一个加载周期中大量的结点增长和能量耗散。发现所谓的“滑动幅度”归因于残余切向塑性变形而不是界面滑动。对于硬化度为2.5%的钢球,观察到了弹性降低,而对于具有弹性的完美塑性铜球,则观察到了塑性降低。

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