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The Contact Fatigue Behavior of PM Steels

机译:PM钢的接触疲劳行为

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The aim of this work is to determine the safe working conditions of PM steels in order to avoid damage caused by rolling contact fatigue (RCF). To avoid the possible damage on the material, any pit formation on the surface or crack nucleation in the subsurface should be prevented. RCF crack promotes by plastic deformation in the subsurface layers and the plastic deformation occurs when the applied stress is higher than yield strength of the material. By considering this relation as a base of an approach, a mechanical model was proposed which gives an overview for the possibility of the crack nucleation in the mechanism for a specific case by highlighting the role of different conditions such as Hertzian pressure and the property of the materials such as density, microhardness, carbon content, surface treatment etc. All the predictions from the model were confirmed by performing experimental tests in different conditions.
机译:这项工作的目的是确定PM钢的安全工作条件,以避免滚动接触疲劳(RCF)造成的损坏。为避免对材料的可能损坏,应防止表面或地下裂缝成核的任何凹坑形成。 RCF裂纹通过塑性变形在地下层中促进,并且当施加的应力高于材料的屈服强度时,会发生塑性变形。通过将该关系视为一种方法的基础,提出了一种机械模型,概述了通过突出不同条件的作用以及特定情况的机制中的机制中的裂缝成核的可能性。诸如密度,微硬度,碳含量,表面处理等的材料通过在不同条件下进行实验试验来确认模型的所有预测。

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