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首页> 外文期刊>Tribology in Industry >Influence Evaluation of the RVS Friction Geomodifier on Tribotechnical Parameters of the Contact in Non-Stationary Working Conditions
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Influence Evaluation of the RVS Friction Geomodifier on Tribotechnical Parameters of the Contact in Non-Stationary Working Conditions

机译:影响RVS摩擦地理仪对非静止工作条件下接触的思想参数的影响

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摘要

It has been found that empirical analysis provides a possibility to select the optimum concentration of the repair and restoring composition (RVS), addition of which to the transmission oil provides an increase in wear resistance of 42Cr4 steel under rolling and slip conditions. The structural adaptability of finely dispersed components of the friction geo-modifier RVS, boundary lubricating films and surface layers of metal under friction and under dynamic loading conditions contribute to reducing the wear of contact surfaces. It has been established that the addition of 1.5 % RVS to the lubricant provides a 17 % reduction in the wear of rolling friction pairs, provides hardening of the surface layers of the metal by 1.36 times, compared with the initial surface. The micro-hardness of the surface layers of the metal and its gradient depth distribution, the micro-geometry of the surface layer formed during friction, and the formation of boundary lubricating layers on the friction-activated contact surfaces are key indicators that increase the wear resistance in friction pairs.
机译:已经发现经验分析提供了选择修复和恢复组合物(RVS)的最佳浓度的可能性,并且在轧制和滑动条件下增加了其输送油的耐磨性增加。在摩擦下摩擦地理改性器RVS,边界润滑膜和金属表面层和动态负载条件下的表面层的结构适应性有助于减少接触表面的磨损。已经确定,向润滑剂添加1.5%RVS在轧制摩擦对的磨损中提供17%的减少,与初始表面相比,将金属的表面层的硬化提供1.36倍。金属表面层的微硬度及其梯度深度分布,在摩擦期间形成的表面层的微观几何形状,以及在摩擦激活的接触表面上形成边界润滑层是增加磨损的关键指示灯摩擦对的抵抗力。

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