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首页> 外文期刊>Tribology Online >The Influence of Material Roughness, Hardness and Lubricant Additives on Micropitting Behaviour in Rolling-Sliding Contacts
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The Influence of Material Roughness, Hardness and Lubricant Additives on Micropitting Behaviour in Rolling-Sliding Contacts

机译:材料粗糙,硬度和润滑剂添加剂对滚动滑动触点中微型手术的影响

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摘要

Regarding micropitting, which is one of the fatigue damages that occur under conditions where the oil film thickness is smaller than the surface roughness, the effects of hardness and roughness of the test piece and differences in lubricants were confirmed. Endurance tests and friction tests were conducted using two-disc test rig. On the condition with harder and rougher surface of test pieces, deeper micropits were produced. The phosphorus additive blended oil led to a shallower pit depth than the sulfur additive blended oil. It was further suggested that the friction coefficient had little effect on micropit progress, and the influence of the lambda ratio (ratio of the oil film thickness to the root mean square roughness) after initial running-in was large. In a surface of high hardness and high roughness, micropitting tend to progress more easily. However, it was found out that the progress can be suppressed by suitable lubricants additives.
机译:关于显微材料,这是在油膜厚度小于表面粗糙度的条件下发生的疲劳损伤之一,确认了试验片的硬度和粗糙度的影响和润滑剂差异的效果。使用双盘试验台进行耐久性测试和摩擦测试。在较硬的试验片表面和更粗糙的表面的情况下,产生更深的微米。磷添加剂混合油导致浅坑深度而不是硫添加混合油。进一步表明,摩擦系数对微米进展几乎没有影响,并且在初始运行后的λ比(油膜厚度与根部平均粗糙度的比率的影响很大。在高硬度和高粗糙度的表面中,微孔倾向于更容易进展。然而,发现可以通过合适的润滑剂添加剂抑制进展。

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