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A method of fretting wear reduction in an automatic wheel set gauge change system

机译:自动轮对规更换系统中的微动磨损减少方法

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摘要

The SUW 2000 railway vehicle wheel set with an automatic gauge change system is especially exposed to fatigue wear due to the specific working conditions. Taking into consideration the role which a wheel set has in both vehicle handling on a track and providing safety of railway traffic, the wheel set damage is impermissible. It also applies to the sleeve-axle rotational connection. This article presents research into both finding new and low-cost materials for a slide sleeve in the wheel hub node and looking for cheaper technologies for improving the surface layer of the wheel set under-hub which would eliminate fretting wear. The research was conducted on a simplified physical model of a real connection between a wheel and an axle. The results of the conducted wear tests show that fretting wear can be effectively limited by applying a metallic layer in the form of molybdenum coating. Grease with the addition of molybdenum disulphide can also protect the co-operating surfaces against fretting wear. It also allows for sustaining proper working conditions of frictional pair elements. This solution, however, is onerous due to the limited maintainability of the connection node. The studies carried out show that there is a full possibility of using this solution in real exploitation.
机译:由于特定的工作条件,带有自动换挡系统的SUW 2000铁路车轮副特别容易遭受疲劳磨损。考虑到轮对在轨道上的车辆操纵和提供铁路交通安全方面的作用,不允许破坏轮对。它也适用于轴套的旋转连接。本文介绍了在轮毂节点中寻找用于滑套的新材料和低成本材料,以及寻找更便宜的技术来改善轮对下轮毂表面层(从而消除微动磨损)的研究。该研究是对车轮和车轴之间实际连接的简化物理模型进行的。进行的磨损测试的结果表明,通过施加钼涂层形式的金属层可以有效地限制微动磨损。添加二硫化钼的油脂还可保护相配合的表面免受微动磨损。它还允许维持摩擦副元件的正确工作条件。然而,由于连接节点的有限的可维护性,该解决方案是繁重的。进行的研究表明,在实际开发中完全有可能使用此解决方案。

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