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首页> 外文期刊>International Journal for Computational Methods in Engineering Science and Mechanics >Stress Intensity Factor Solution for a Naturally Emanating Crack Out of a V-Notched Round Bar
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Stress Intensity Factor Solution for a Naturally Emanating Crack Out of a V-Notched Round Bar

机译:V形切口圆棒自然产生的裂纹的应力强度因子解

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During the estimation of Stress Intensity Factor (SIF) of a notched round bar, standard crack geometries such as elliptical, semi-circular, and straight crack fronts are commonly considered at the notch root region. In the present work, the SIF solution for a naturally initiating crack out of a V-notched round bar has been estimated experimentally and the results are compared with data obtained from 3D finite element analysis. The fractographic investigation of the fractured surface suggested a non-symmetric crack propagation and the strong influence of stress concentration factor on SIF, especially in the early stages of crack growth (up to a/d ratio of 0.15, where "a" is crack length and "d" is notch root diameter). Four aspect ratios (a/c=0.4, 0.5, 0.75, and 0.85, where "c" is semi-major axis of elliptical crack) and seven crack depth (a/d) ratios in the radial directions were considered with and without offset of surface crack origin to match experimental observations. It was noted that a naturally formed crack had an elliptic shape with aspect ratio of 0.75, with its center offset by 0.5 mm in an upward direction from the notch root region.
机译:在估计带缺口的圆杆的应力强度因子(SIF)时,通常会在切口的根部区域考虑标准的裂纹几何形状,例如椭圆形,半圆形和笔直的裂纹前沿。在目前的工作中,已通过实验估算了S形解决方案,该解决方案用于从V形切口圆棒中自然引发裂纹,并将其与从3D有限元分析获得的数据进行比较。断裂表面的分形研究表明,裂纹扩展不对称且应力集中因子对SIF的影响很大,尤其是在裂纹扩展的早期阶段(高达0.15的a / d比,其中“ a”为裂纹长度) “ d”为缺口根直径)。考虑具有和不具有偏置的四个纵横比(a / c = 0.4、0.5、0.75和0.85,其中“ c”是椭圆形裂纹的半长轴)和径向上的七个裂纹深度(a / d)比表面裂纹的起源与实验观察相匹配。注意到,自然形成的裂纹具有长宽比为0.75的椭圆形,其中心在向上方向上从切口根部区域偏移0.5mm。

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