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Fatigue assessment of cracked pipes with weld misalignment by using stress intensity factors

机译:基于应力强度因子的裂纹未对准裂纹管疲劳评估

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In this study, fatigue assessment of cracked pipes with weld misalignment is carried out by using fracture mechanics approach. Two types of weld misalignment, viz., centreline offset weld misalignment with equal thickness but unequal diameters, and centreline offset weld misalignment with unequal thickness but aligned inside surface, are considered. A finite element (FE) mesh generator for cracked plain pipes is developed first, and then it is used for the misaligned pipes by incorporating a coordinate transformation method. A small-scale experimental test on the stress concentration curve along the longitudinal direction of misaligned pipes is conducted to ascertain the accuracy of the transformation method. Then, extensive FE analyses are performed to determine the stress intensity magnification factor (M-k) at the crack deepest point and the crack ends of a surface crack in misaligned pipes. A new set of M-k equations for the misaligned pipes are built up using multiple regression analysis, and statistical analyses are carried out to validate the goodness of fit of these equations. The proposed equations can be employed in the fatigue strength calculation and fatigue life prediction based on the fatigue assessment procedure provided by BS 7910:2013.
机译:在这项研究中,采用断裂力学方法对带有焊接不对中裂纹管的疲劳进行了评估。考虑了两种类型的焊接不对中,即厚度相等但直径不相等的中心线偏移焊接不对中,以及厚度不等但内表面对齐的中心线偏移焊接不对中。首先开发了用于破裂的普通管的有限元(FE)网格生成器,然后通过结合坐标变换方法将其用于未对齐的管。为了确定转换方法的准确性,对未对准管道的纵向应力集中曲线进行了小规模的实验测试。然后,进行大量的有限元分析,以确定未对准管道中裂纹最深点和表面裂纹的裂纹末端处的应力强度放大率(M-k)。使用多元回归分析建立了一组新的M-k偏心管方程组,并进行了统计分析以验证这些方程式的拟合优度。根据BS 7910:2013提供的疲劳评估程序,建议的方程式可用于疲劳强度计算和疲劳寿命预测。

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