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Surface topography and friction coefficient evolution during sliding wear in a mixed lubricated rolling-sliding contact

机译:混合润滑滚动滑动触头滑动磨损过程中的表面形貌和摩擦系数演化

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摘要

Wear is a common phenomenon which most mechanical components suffer from. Available studies are mainly focused on the wear performance after contact pairs operate for a period of time. The studies on evolution of surface topography and friction coefficient resulting from the wear process under mixed lubrication conditions are still limited. Further study of this issue may have a significant influence on wear reduction and lubricating performance improvement. In the present study, surface topography and friction coefficient evolution during sliding wear in a mixed lubricated rolling-sliding contact are investigated by the method based on the numerical approach developed by Zhu.et al. [1]. The numerical results are compared with experiment results to demonstrate the efficiency and accuracy of the present wear model. The evolutions of wear track, root mean square (RMS) roughness, and friction coefficient are observed systematically during wear process. The influences of load, slide-to-roll ratio and surface orientation on these characteristics are studied as well. The simulation results are in good agreement with experimental observations. The wear track is quite different from the one under dry contact, due to the effect of oil and the contact deformation. The friction coefficient drops rapidly at first and then it keeps stable with small fluctuations with respect to wear evolution. It indicates that load and slide-to-roll ratio have a remarkable impact on wear rate, though the effect of surface topography is limited. Further, the results show that the RMS roughness deceases slightly at first and then it increases gradually during the wear process.
机译:穿着是大多数机械部件遭受的常见现象。可用的研究主要集中在接触对运行一段时间后的磨损性能。在混合润滑条件下磨损过程引起的表面形貌和摩擦系数的演化的研究仍然有限。对该问题的进一步研究可能对磨损和润滑性能改善产生重大影响。在本研究中,通过基于Zhu.et Al开发的数值方法,通过该方法研究了混合润滑滚动滑动触点中滑动磨损过程中的表面形貌和摩擦系数进化。 [1]。将数值结果与实验结果进行比较,以证明目前磨损模型的效率和准确性。在磨损过程中系统地观察到磨损轨道,均方根(RMS)粗糙度和摩擦系数的演变。还研究了负载,滑动率比和表面取向对这些特性的影响。仿真结果与实验观察结果良好。由于油和接触变形的效果,耐磨轨道与干接触下的磨损轨道完全不同。摩擦系数首先迅速下降,然后它保持稳定,相对于磨损进化,小波动。它表明负载和滑动率比对磨损率具有显着影响,尽管表面形貌的效果有限。此外,结果表明,RMS粗糙度首先略微释放,然后在磨损过程中逐渐增加。

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