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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Role of contact frequency on the wear rate of steel in discontinuous sliding contact conditions
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Role of contact frequency on the wear rate of steel in discontinuous sliding contact conditions

机译:接触频率对不连续滑动接触条件下钢的磨损率的影响

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摘要

This work presents a novel approach of sliding ball-on-disk wear tests where the disc material is investigated. Each part of the wear track on the disc is in discontinuous contact with the counterbody. The contact frequency at each part of the wear track on the disc with the counterbody is defined by the rotation frequency of the disc. The sliding speed is however a function of both the rotation frequency and wear track diameter. In this work, the effect of the contact frequency on friction and wear was investigated on carbon steel in discontinuous sliding contact with corundum balls. Various sliding speeds were used while maintaining the contact frequency at a fixed value, and various contact frequencies were applied at constant sliding speeds. The wear rate of the disk material is shown to depend not only on the usual wear test parameters, namely sliding speed and contact load, but also on contact frequency. Moreover, contact frequency is shown to be a key factor determining the wear mode even at constant sliding speed and load. At contact frequencies above 9 Hz, the dominant wear mechanism is oxidational wear, while at frequencies below 4 Hz the dominant wear mechanism is adhesive wear. This transition from adhesive to oxidational wear takes place together with a change in the type of debris generated and in the value of the coefficient of friction. The validity of the Garcia-Ramil-Celis model proposed earlier for discontinous sliding contact conditions, is demonstrated for the case of carbon steel disks sliding against a chemically inert counterbody.
机译:这项工作提出了一种新颖的滑动圆盘上的球磨损试验的方法,其中对盘材料进行了研究。光盘上磨损轨迹的每个部分都与对接体不连续接触。盘上磨损轨迹的每个部分与配对体的接触频率由盘的旋转频率确定。然而,滑动速度是旋转频率和磨损轨道直径的函数。在这项工作中,研究了碳钢在刚玉球不连续滑动接触中接触频率对摩擦和磨损的影响。使用各种滑动速度,同时将接触频率保持在固定值,并以恒定的滑动速度施加各种接触频率。所示的盘材料的磨损率不仅取决于通常的磨损测试参数,即滑动速度和接触负载,还取决于接触频率。此外,即使在恒定的滑动速度和负载下,接触频率也显示出是决定磨损模式的关键因素。在高于9 Hz的接触频率下,主要磨损机制是氧化磨损,而在低于4 Hz的频率下,主要磨损机制是粘着磨损。从粘合剂到氧化磨损的这种转变与产生的碎屑类型和摩擦系数值的变化一起发生。早先提出的Garcia-Ramil-Celis模型在不连续滑动接触条件下的有效性已在碳钢圆盘抵靠化学惰性配对体滑动的情况下得到证明。

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