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An Overview on the Tribological Behaviour of Nitro-Carburised Steels for Various Industrial Applications

机译:各种工业应用的渗碳钢的摩擦学性能概述

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The present study is focused on elucidating the wear mechanisms taking place during sliding friction of five (5) steel grades subjected to Trufftriding. For this purpose, three sliding friction experimental configurations were used and the friction coefficients, real-time-recorded during testing, were correlated to the post-testing microscopic observations of the worn surfaces. Finally, the experimental findings were evaluated with respect to the initial microstructure of the tool steels in their as-received and/or heat-treated state. In the case of non-conformal point contact against ceramic counterbodies, the friction coefficient was found to depend only on the steel grade and the particular counterbody, tending to a constant value, regardless of the applied load and/or its heat- or surface treatment. In the case of conformal plane contact against hardened steel, each steel grade exhibited an applied pressure range within which the wear coefficient remains practically constant, whereas for higher pressure values, seizure occurred. Nitrocarburising “displaced” the constant wear coefficient range towards higher pressure values, resulting in seizure retardation.
机译:本研究的重点是阐明五(5)种钢经Trufftriding的滑动摩擦过程中发生的磨损机理。为此,使用了三个滑动摩擦实验配置,并且在测试过程中实时记录的摩擦系数与磨损后表面的测试后微观观察结果相关。最后,就所接受和/或热处理状态下的工具钢的初始显微组织对实验结果进行了评估。在与陶瓷counter体进行非保形点接触的情况下,发现摩擦系数仅取决于钢种和特定的counter体,趋向于一个恒定值,而与施加的载荷和/或其热处理或表面处理无关。在与硬化钢进行共形平面接触的情况下,每种钢种均显示出施加的压力范围,在该范围内,磨损系数实际上保持恒定,而对于较高的压力值,会发生咬合。氮碳共渗将恒定的磨损系数范围“偏移”到较高的压力值,从而导致癫痫发作延迟。

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