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Existence and insufficiency of the crack closure for fatigue crack growth analysis

机译:疲劳裂纹扩展分析中裂纹闭合的存在与不足

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In this paper, the multi-resolution in situ experiment, optical microscopy experiment and SEM experiment are used to investigate the existence of crack closure and its sufficiency for crack growth prediction. In situ optical microscopy testing and the digital image correlation analysis are used to measure the plastic zone size in front of the crack tip. In situ scanning electron microscopy testing is used to measure the crack tip opening displacement and crack growth kinetics. Crack closure behavior under constant loading with a single overload is studied under SEM. The experimental methodology is applied to two different metallic materials (aluminum alloys and steels). Detailed imaging analysis and experimental results are presented and compared. It is found that the crack closure phenomena exist for aluminum alloys, but not for steels in the current investigation. If the crack closure happens, it will significantly alter the crack tip plasticity behavior. Under constant amplitude loading, the crack closure concept is able to uniquely correlate the crack growth kinetics. However, under single overload loading, the crack closure is not able to uniquely correlate with the crack growth kinetics and statistical crack growth experiment also shows the inefficiency of crack closure. Finally, a discussion about the necessarily and the insufficiency of crack closure for crack growth prediction is given.
机译:本文采用多分辨率原位实验,光学显微镜实验和SEM实验研究了裂纹闭合的存在及其对裂纹扩展预测的充分性。原位光学显微镜测试和数字图像相关性分析用于测量裂纹尖端前部的塑性区大小。原位扫描电子显微镜测试用于测量裂纹尖端的开口位移和裂纹扩展动力学。在扫描电镜下研究了具有单重载的恒定载荷下的裂纹闭合行为。实验方法论适用于两种不同的金属材料(铝合金和钢)。介绍并比较了详细的成像分析和实验结果。发现在当前研究中铝合金存在裂纹闭合现象,而钢不存在裂纹闭合现象。如果发生裂纹闭合,它将显着改变裂纹尖端的可塑性行为。在恒定振幅载荷下,裂纹闭合概念能够唯一地关联裂纹扩展动力学。然而,在单重载荷下,裂纹闭合不能与裂纹扩展动力学唯一相关,统计裂纹扩展实验也表明裂纹闭合效率低下。最后,对裂纹扩展预测裂纹闭合的必要性和不足进行了讨论。

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