首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Analysis of the application of ZrN coatings for the mitigation of the development of fretting wear processes at the surfaces of push fit joint elements
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Analysis of the application of ZrN coatings for the mitigation of the development of fretting wear processes at the surfaces of push fit joint elements

机译:Zrn涂层在推动配合元件表面上减轻钻孔磨损过程的缓解的分析

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The purpose of this article is to assess the influence of a ZrN coating on the development of fretting wear in a model of a wheel/axle push fit joint in a rail vehicle. The examinations of the fretting wear process in rail vehicle wheel sets were conducted on two groups of models consisting of a shaft and sleeve connected by means of a push-fit joint, in compliance with the rules for the representation of the real condition. Wear tests of a joint loaded with a vertical force were conducted on a fatigue testing machine permitting oscillatory tangential displacement, which is responsible for the development of fretting wear. Uncoated shafts were the first model, and shafts coated with a ZrN coating were the second one. The tolerance was 0.02 mm, the model loading force was 550 N and the number of fatigue cycles was 7 x 10(6). The destruction of models was evaluated in, for example, the computer image analysis process with the use of the Image Pro Plus 7.0 software. Macroscopic observations showed wear traces for both model groups. In the first group, wear traces were observed on either side of the axle seat, and those traces had the form of a 2-3 mm wide ring comprising the entire shaft circumference. The random location of the traces of wear was observed in the second model. The microscopic observations of the destruction areas demonstrated mainly the presence of material build-ups, the local surface abrasion and micropits. The analysis of the chemical composition of material build-ups showed the presence of iron and oxygen, a fact which confirms the shearing of the microirregularities of the sleeve top layer. Plastically deformed material build-ups become oxidised, hence the brown colour of the worn-out areas can be observed at the sample surface during macroscopic observations. The significant mitigation of fretting wear on samples with ZrN coatings has been demonstrated. This shows the need for fretting wear tests to be performed on a real object to confirm the scale of improvement of the life of forced-in joints, thus contributing to the higher reliability of rail vehicle wheel sets.
机译:本文的目的是评估ZrN涂层对轨道车辆中车轮/轴推动配合的模型中的微动磨损的发展。在轨道车轮组中的微动磨损过程的检查是在两组模型上进行的,该模型由轴和套筒通过推挤接头连接,符合真实条件的表示的规则。在允许振荡切向位移的疲劳试验机上进行垂直力的接头的磨损试验,允许振荡切向位移,这负责发动磨损的开发。未涂层的轴是第一模型,涂有ZrN涂层的轴是第二个模型。耐受性为0.02mm,模型装载力为550n,疲劳循环的数量为7×10(6)。使用图像Pro加上7.0软件,在例如计算机图像分析过程中评估模型的破坏。宏观观测显示两个模型组的磨损迹线。在第一组中,在轴座的任一侧观察到磨损迹线,并且这些迹线的形式具有2-3mm宽环,包括整个轴圆周。在第二模型中观察到磨损痕迹的随机位置。破坏区域的显微镜观察主要表现出材料积聚,局部表面磨损和微种植的存在。对材料堆积的化学成分的分析显示了铁和氧的存在,这是证实套筒顶层微刺的剪切的事实。塑性变形的材料积聚变得氧化,因此在宏观观察期间可以在样品表面观察到磨损区域的棕色。已经证明了用ZrN涂层的样品上的馒头磨损的显着减缓。这表明需要在真实物体上进行磨损磨损测试,以确认强制接头寿命的改善规模,从而有助于轨道车轮组的更高可靠性。

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