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An Analysis of the Fatigue Strength of Metals Containing Small Defects

机译:含有小缺陷的金属疲劳强度分析

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A modified linear-elastic fracture mechanics approach proposed by McEvily has been applied to predict the effects of small defects on the fatigue limit and the threshold level. In the analysis, three modifications were taken into account (1) the effect of elastic-plastic behavior of small cracks, (2) the Kitagawa effect where in the very small crack regime the required stress for propagation is controlled by the fatigue limit of a smooth specimen rather than by the long-crack threshold condition, and (3) the effect of crack closure development from zero up to the macroscopic level as a newly formed crack extends. Three steels, a brass and an Al alloy were investigated. Good agreement between predicted and experimental results has been obtained and a rational basis for the area~(1/2) parameter model was shown.
机译:通过MCEVILY提出的改进的线性弹性骨折力学方法已经应用于预测小缺陷对疲劳极限和阈值水平的影响。在分析中,考虑了三种修改(1)小裂缝的弹性塑性行为的影响,(2)基塔川效应在非常小的裂缝制度中,通过疲劳极限来控制所需的繁殖胁迫平滑样品而不是通过长裂纹阈值条件,以及(3)作为新形成的裂缝延伸,裂纹闭合发育从零升高到宏观水平的效果。研究了三个钢,黄铜和Al合金。已经获得了预测和实验结果之间的良好一致性,并且显示了面积〜(1/2)参数模型的合理基础。

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