Crack tip field in circumferentially-cracked round bar (CCRB) in tension affected by loss of axial symmetry

J. Toribio, B. González, J. Matos
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引用次数: 2

Abstract

In this paper, the stress intensity factor (SIF) is computed in a circumferentially-cracked round bar (CCRB) subjected to tensile loading, considering that the resistant ligament is circular and exhibits 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 variable being the eccentricity of the circular ligament. Results show that the SIF is higher at the deepest point of the crack and that an increase of eccentricity (in relation to the bar axis) raises the difference between the SIF values along the crack front. From a certain value of the misalignment a bending effect appears, so that the crack remains closed in the area near the point of lower depth.
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轴对称性损失对拉伸环裂纹圆棒裂纹尖端场的影响
考虑到抗韧带为圆形,且相对于圆柱轴具有一定的偏心,本文计算了受拉载荷作用下圆周裂纹圆杆的应力强度因子(SIF)。采用三维模型和j积分的有限元方法进行计算,分析变量为圆韧带的偏心距。结果表明,裂纹最深处的SIF值较高,而偏心距的增加(相对于杆轴)会增大沿裂纹前沿的SIF值差异。从一定的偏差值开始,出现弯曲效应,使裂缝在靠近较低深度点的区域保持闭合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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