首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Transition from static to kinetic friction of unlubricated or oil lubricated steel/steel, steel/ceramic and ceramic/ceramic pairs
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Transition from static to kinetic friction of unlubricated or oil lubricated steel/steel, steel/ceramic and ceramic/ceramic pairs

机译:未润滑或油润滑的钢/钢,钢/陶瓷和陶瓷/陶瓷对从静摩擦到动摩擦的过渡

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摘要

Tribological tests were conducted on different pairs of the bearing steel 100Cr6 and a commercial alumina under unlubricated and oil lubricated conditions where the transition behaviour from static to kinetic friction as a function of surface finish and contact pressure was of particular interest. Static and kinetic friction were measured using a laboratory tribometer with ball-on-plate geometry at an extremely low tangential speed of 8.3μm/s applied to the plate specimen. Results showed a significant effect of surface finish on both the static and kinetic coefficients of friction as well as on the transition behaviour. Transition behaviour was strongly dependent on the materials mated. The self-mated steel pairs showed greater values of kinetic than static coefficient of friction while no significant difference of both friction values was measured on self-mated alumina pairs with ground plate specimens. Influence of oil lubrication on static friction was small compared with that on kinetic friction where the last one was substantially reduced by oil lubrication with 100Cr6/100Cr6 and lOOCr6Al{sub}2O{sub}3 pairs, particularly. Stick-slip effects occurred with both unlubricated and lubricated pairs under high normal loads and depending on surface finish.
机译:在未润滑和油润滑的条件下,对不同对的轴承钢100Cr6和市售氧化铝进行了摩擦学测试,其中特别关注从静摩擦到动摩擦的过渡行为作为表面光洁度和接触压力的函数。静摩擦和动摩擦是使用实验室摩擦计测量的,该摩擦计具有板对球的几何形状,并以极低的切线速度8.3μm/ s应用于板样品。结果表明,表面光洁度对静态和动态摩擦系数以及过渡性能都有重大影响。过渡行为在很大程度上取决于配合的材料。自配对的钢对显示出比静摩擦系数更大的动力学值,而在带有接地板样本的自配对的氧化铝对上测得的两个摩擦值没有显着差异。与动摩擦相比,油润滑对静摩擦的影响较小,后者特别是通过用100Cr6 / 100Cr6和100Cr6Al {sub} 2O {sub} 3对进行油润滑大大减少了最后一个动摩擦。在高法向载荷下并取决于表面光洁度,未润滑对和润滑对都发生粘滑效应。

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