首页> 外文期刊>Tribology letters >On the Role of Material Transfer in Friction Between Metals: Initial Phenomena and Effects of Roughness and Boundary Lubrication in Sliding Between Aluminium and Tool Steels
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On the Role of Material Transfer in Friction Between Metals: Initial Phenomena and Effects of Roughness and Boundary Lubrication in Sliding Between Aluminium and Tool Steels

机译:关于材料转移在金属摩擦中的作用:初步现象及粗糙度与边界润滑在铝和工具钢的横向下的影响

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In the absence of a lubricant, the friction we measure in sliding contact between metals is typically high and quite erratic, with rapid fluctuations. If we filter out these rapid fluctuations, we can typically also notice slower trends, which can lead to quite dramatic friction changes. Unless careful studies are performed, the cause to this behaviour cannot be understood. How come a material couple cannot be characterised with a specific coefficient of friction? The present paper sets out to add understanding to this area, by conduction and analysing an experimental series involving sliding between a needle-like aluminium tip against tool steel flats. The load is high enough to cause substantial plastic deformation of the aluminium needle; its tip becomes formed by the contact against the tool steel. These small-scale, low sliding distance tests facilitate detailed studies of the initial stages of various friction trends, and the effects of initial surface roughness and shifts of this roughness caused by material transfer between the sliding surfaces. Specifically, the effects on the transfer and friction behaviour from presence or absence of a boundary lubricant film and atmospheric oxygen were studied. It was found that very smooth sliding surfaces can offer low-friction conditions for these metal types. However, the smooth sliding interface is very fragile. In all unlubricated cases tested, it very rapidly (in less than a few mm sliding) became ruined due to transfer, and the friction level correspondingly increased. The boundary lubricant could only offer low friction in cases where the flat steel surface was very smooth. The lubricant also facilitated smoothening of transferred aluminium. As long has been well known, boundary lubrication films typically do not totally hinder direct metallic contact in solid to solid contact. The present results strengthen this view and further suggests that in these direct contacts one of the major friction reducing effects of the lubricant is to efficiently limit transfer, which otherwise acts to make the sliding surface rough.
机译:在没有润滑剂的情况下,我们在金属之间的滑动接触中测量的摩擦通常是高而相当不稳定的,具有快速波动。如果我们过滤掉了这些快速波动,我们通常还可以注意到较慢的趋势,这可能导致相当戏剧性的摩擦变化。除非进行仔细研究,否则不能解决这种行为的原因。如何通过特定的摩擦系数来表征材料夫妇?本文旨在通过传导和分析涉及针对工具钢平板的针状铝尖端之间滑动的实验系列对该地区的理解。负载足够高,以引起铝针的大量塑性变形;它的尖端通过针对工具钢的接触形成。这些小规模,低滑动距离试验有助于各种摩擦趋势的初始阶段的详细研究,以及由滑动表面之间的材料转移引起的初始表面粗糙度和初始表面粗糙度的影响。具体地,研究了对来自存在或不存在边界润滑膜和大气氧的转移和摩擦行为的影响。发现非常平滑的滑动表面可以为这些金属类型提供低摩擦条件。但是,平滑的滑动界面非常脆弱。在所有测试的非挂布案例中,由于转移,它非常快速地(在小于几毫米滑动中)破坏,并且摩擦水平相应地增加。边界润滑剂在扁平钢表面非常光滑的情况下只能提供低摩擦。润滑剂还促进了转移铝的平滑化。只要众所周知,边界润滑膜通常不会完全阻碍固体妨碍固体接触的直接金属接触。本结果增强了这一观点,进一步表明,在这些直接接触润滑剂的主要摩擦降低效果之一是有效地限制转移,否则以使滑动表面粗糙。

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