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Stress intensity factor for an eccentric circular inner crack in a round bar subjected to tensile loading

机译:圆形杆中偏心圆形内裂纹的应力强度因子进行拉伸载荷

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In this paper, stress intensity factor (SIF) was calculated in a bar subjected to tensile loading, considering a circular inner crack that exhibited certain eccentricity in relation to the cylinder axis. The computation was performed by means of the finite element method (FEM) using a three dimensional (3D) model and the J-integral, the analyzed variables being the diameter and the eccentricity of the circular inner crack. Results show that the SIF is higher at the point of the crack front closest to the bar surface and that an increase of relative crack eccentricity or of relative crack diameter raises the difference between the SIF values at the crack point closest to the bar surface and the crack point furthest from it, thus the existence of eccentricity in the initial crack leads to an increase of such a parameter when fatigue propagation occurs.
机译:在本文中,考虑到圆形内裂纹的圆形内裂纹,在经受拉伸荷载的圆形内裂缝中计算应力强度因子(SIF)。 通过使用三维(3D)模型和J-Integral的有限元方法(FEM)来执行计算,分析的变量是圆形内裂纹的直径和偏心率。 结果表明,SIF在最靠近条形表面的裂缝前部的点处较高,并且相对裂缝偏心或相对裂缝直径的增加提高了最接近条形表面的裂缝点的SIF值与弯曲点之间的差异 最远的裂缝点,从而在发生疲劳传播时,初始裂缝中的偏心率的存在导致这种参数的增加。

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