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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >An integrated model for competitive damage mechanisms assessment in railway wheel steels
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An integrated model for competitive damage mechanisms assessment in railway wheel steels

机译:铁路车轮钢竞争性损伤机理评估的集成模型

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A procedure for damage assessment in wheel rail contact is still an open task: much work has been done for understanding failure mechanisms such as wear, cyclic plasticity and Rolling Contact Fatigue, but only recently the competition between them has been taken into account. In this study, a numerical procedure for damage assessment of railway wheel steels, considering the complex interaction between various failure phenomena that can occur at the loaded region, is proposed. The procedure is based on various damage mechanism models, integrated into an overall simulation method able to take into account their reciprocal influence. The model was applied for characterising a railway wheel steel (ER8 EN13262), through the elaboration of the results of rolling sliding experiments, determining the plasticity and the wear model constants that can be used for damage assessment of real wheels. The experiments showed that the main damage phenomenon was surface crack formation due to unidirectional plastic flow (ratcheting); in the presence of water these cracks propagated causing very severe damage. A role of manganese sulphides non-metallic inclusions as preferential site for subsurface crack nucleation was observed. A quantitative evaluation of these phenomena was provided. (C) 2014 Elsevier B.V. All rights reserved.
机译:轮毂接触中的损坏评估程序仍然是一项悬而未决的工作:已经做了很多工作来理解诸如磨损,循环塑性和滚动接触疲劳等故障机理,但直到最近才考虑到它们之间的竞争。在这项研究中,考虑到在载荷区域可能发生的各种破坏现象之间的复杂相互作用,提出了一种铁路车轮钢损伤评估的数值程序。该程序基于各种损坏机制模型,并集成到能够考虑其相互影响的整体仿真方法中。通过详细说明滚动试验的结果,确定可用于真实车轮损伤评​​估的可塑性和磨损模型常数,该模型用于表征铁路车轮钢(ER8 EN13262)。实验表明,主要破坏现象是由于单向塑性流动(棘齿)引起的表面裂纹形成。在水的存在下,这些裂纹扩展,造成了非常严重的破坏。观察到硫化锰非金属夹杂物作为地下裂纹成核的优先部位。提供了对这些现象的定量评估。 (C)2014 Elsevier B.V.保留所有权利。

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