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Theoretical and experimental study of the contact fatigue behavior of a Mo-Cu steel produced by powder metallurgy

机译:粉末冶金生产的Mo-Cu钢的接触疲劳行为的理论和实验研究

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摘要

A conservative approach to predict the contact fatigue behavior of a Powder Metallurgy steel, in the sinter-hardened condition and after shot peening, was proposed. It is based on the assumption that the contact fatigue crack nucleation is anticipated by the local plastic deformation of the material, which occurs when the maximum local stress exceeds the yield strength of the matrix. A model to predict contact fatigue crack nucleation has been proposed and validated by experiments. A local approach is used, based on the characteristics of the largest pores, which promote fatigue crack nucleation, and on the microhardness of the microstructural constituents where they are localized. Shot peening improves the contact fatigue resistance of the sinterhardened steel by 30%.
机译:提出了一种保守的方法来预测粉末冶金钢在烧结硬化条件下和喷丸处理后的接触疲劳行为。这是基于以下假设:材料的局部塑性变形会导致接触疲劳裂纹成核,当最大局部应力超过基体的屈服强度时会发生这种变形。提出了一种预测接触疲劳裂纹形核的模型,并通过实验进行了验证。基于最大的孔的特征(可促进疲劳裂纹成核)和局部化的微结构成分的显微硬度,使用局部方法。喷丸处理可将烧结硬化钢的抗接触疲劳性提高30%。

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