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Aspect Ratio Evolution in Embedded, Surface, and Corner Cracks in Finite-Thickness Plates under Tensile Fatigue Loading

机译:拉伸疲劳负载下有限厚度板的嵌入式,表面和角裂缝中的纵横比演变

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摘要

This article deals with the computational modelling of the fatigue crack aspect ratio evolution in embedded, surface, and corner cracks located in finite-thickness plates under tensile fatigue. The approach is based on the Paris law for fatigue propagation and an expression for the stress intensity factor (SIF) provided by Newman and Raju. Numerical results indicate that the crack path develops in such a manner that all flaws tend to reach similar aspect ratios, i.e., a preferential crack path does exist along which there is a one-to-one relationship between the aspect ratio and the relative crack depth (a sort of master curve in the matter of fatigue crack path evolution). Such a reference curve corresponds to that of a very superficial initial flaw with almost circular shape. The convergence (quicker or slower approach between fatigue crack paths starting from different initial defects) is higher for surface flaws than for corner cracks, and quicker for the latter than for embedded discontinuities. Corner defects increase their size faster than surface cracks, and the latter do the same quicker than the embedded ones.
机译:本文涉及在位于有限厚度的板下拉伸疲劳嵌入,表面和角部裂纹,疲劳裂纹宽高比进化的计算机建模。该方法是基于对疲劳传播巴黎法和用于通过Newman和拉朱提供的应力强度因子(SIF)的表达式。计算结果表明,裂纹路径以这样的方式开发的所有缺陷趋向于达到类似的纵横比,即,优惠裂纹路径确实存在沿其中有纵横比和相对裂纹深度之间的一对一的关系(在疲劳裂纹路径进化的物质的种类主曲线的)。这样的参考曲线对应于一个非常浅的初始缺陷的几乎圆形的形状。收敛(从不同的初始缺陷开始疲劳裂纹路径之间更快或更慢的方法)为表面缺陷比角部裂纹更高,和更快对于后者比嵌入不连续性。拐角缺陷增加它们的尺寸快于表面裂纹,而后者做的比所述嵌入式那些相同的更快。

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