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Fatigue Life Prediction Based on Crack Closure and Equivalent Initial Flaw Size

机译:基于裂纹闭合和等效初始缺陷尺寸的疲劳寿命预测

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摘要

Failure analysis and fatigue life prediction are necessary and critical for engineering structural materials. In this paper, a general methodology is proposed to predict fatigue life of smooth and circular-hole specimens, in which the crack closure model and equivalent initial flaw size (EIFS) concept are employed. Different effects of crack closure on small crack growth region and long crack growth region are considered in the proposed method. The EIFS is determined by the fatigue limit and fatigue threshold stress intensity factor △Kth. Fatigue limit is directly obtained from experimental data, and △Kth is calculated by using a back-extrapolation method. Experimental data for smooth and circular-hole specimens in three different alloys (Al2024-T3, Al7075-T6 and Ti-6Al-4V) under multiple stress ratios are used to validate the method. In the validation section, Semi-circular surface crack and quarter-circular corner crack are assumed to be the initial crack shapes for the smooth and circular-hole specimens, respectively. A good agreement is observed between model predictions and experimental data. The detailed analysis and discussion are performed on the proposed model. Some conclusions and future work are given.
机译:失效分析和疲劳寿命预测对于工程结构材料是必要且至关重要的。本文提出了一种通用方法来预测光滑和圆孔试样的疲劳寿命,其中采用了裂纹闭合模型和等效初始缺陷尺寸(EIFS)的概念。该方法考虑了裂纹闭合对小裂纹扩展区和长裂纹扩展区的不同影响。 EIFS由疲劳极限和疲劳极限应力强度因子△K th 确定。疲劳极限是直接从实验数据中获得的,而△K th 是通过反推算法得出的。该方法用于多种应力比下的三种不同合金(Al2024-T3,Al7075-T6和Ti-6Al-4V)中光滑和圆孔试样的实验数据来验证该方法。在验证部分,假定半圆形表面裂纹和四分之一圆角裂纹分别是光滑试样和圆形孔试样的初始裂纹形状。在模型预测和实验数据之间观察到很好的一致性。对提出的模型进行了详细的分析和讨论。给出了一些结论和今后的工作。

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