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Effect of the Crack Tip Bifurcation on the Plasticity-Induced Fatigue Propagation in Metallic Materials

机译:裂纹尖端分叉对金属材料塑性诱导疲劳繁殖的影响

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摘要

This article deals with the influence of the crack path branching (at the micro level) on the plasticity-induced fatigue crack growth. With regard to this, a modeling by means of the finite element method was performed considering a cracked panel subjected to tension with different symmetric and asymmetric configurations of the bifurcated crack tip. The results show the appearance of a retardation effect in the growth rate of the bifurcated crack in relation to the growth rate of the fully straight crack in different cases studied, namely: (i) if the two branches of the bifurcation have different initial projected length, the propagation rate is greater at the crack tip corresponding to the long-branch than that of the short-branch, and the long-branch growth rate increases with the decrease of the initial branch angle and of the initial projected short-branch length and with the increase of the intensity of fatigue; (ii) if the two branches of the bifurcation have identical initial projected length, the retardation effect depends on the initial distance between the two bifurcated crack tips, the growth rate going up with the decrease of such a distance and with the increase of the fatigue intensity.
机译:本文涉及裂纹路径支化(在微观水平)对可塑性抗疲劳裂纹生长的影响。关于此,考虑到具有不同对称的裂纹尖端的不同对称和不对称配置的裂纹板进行有限元方法进行建模。结果表明,在不同案例中的完全直裂裂纹的生长速率的增长速度的延迟效果的出现在研究中学的完全直裂纹,即:(i)如果分叉的两个分支具有不同的初始投射长度,传播速率在对应于长枝的裂缝尖端比短分支的裂缝尖端更大,并且长分支生长速率随着初始分支角度的降低和初始投影的短分支长度和初始投影的短分支长度而增加随着疲劳强度的增加; (ii)如果分岔的两个分支具有相同的初始投射长度,则延迟效果取决于两个分叉的裂缝提示之间的初始距离,增长率随着疲劳的增加而下降和随着疲劳的增加而上升强度。

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