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The relevance of wear-mechanism maps to mild-oxidational wear

机译:磨损机理图与轻度氧化磨损的相关性

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The presence of oxygen in the environment in which a steel sliding system operates will promote a mild form of wear with wear debris consisting mainly of iron oxides. Of the oxidation-dominated mechanisms, mild-oxidational wear (the prefix describes the extent of oxidation and not the wear rate) has been most extensively investigated. In this paper, examples will be used to show that the wear-mechanism map for the unlubricated sliding of steels can adequately predict the occurrence of mild-oxidational wear and the trend of wear rates as well as describe the resultant features on the worn surfaces. It is also shown that this map is relevant to delamination wear and to test geometries other than the pin-on-disk configuration. It is suggested that the more-recently constructed wear maps for aluminium and magnesium alloys could similarly be used to predict the wear characteristics of these alloys during sliding.
机译:在钢制滑动系统运行的环境中存在氧气将促进轻度磨损,并产生主要由氧化铁构成的磨损碎片。在氧化为主的机理中,对轻度氧化磨损(前缀描述了氧化程度而非磨损率)进行了最广泛的研究。在本文中,将使用示例说明钢的未润滑滑动的磨损机理图可以充分预测轻度氧化磨损的发生和磨损率的趋势,并描述磨损表面上的最终特征。还表明,该图与分层磨损和测试除销钉在磁盘上的配置以外的几何形状有关。建议最近构造的铝和镁合金磨损图可以类似地用于预测滑动期间这些合金的磨损特性。

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