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Analysis of Interface Fracture on Piping Welded Joint with Continuous Material Properties

机译:具有连续材料特性的管道焊接接头的界面断裂分析

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Based on a numerical simulated approach of the continuous change of material mechanical property, a pressure piping welded joint with semi-elliptical surface crack is studied, the effect of the welded mechanical heterogeneity on the stress-strain fields and J-integral along the interface crack fronts at different locations are simulated. The results of this investigation show that the maximal stress, strain and J-integral are located at the crack front center point, the minimal stress and strain are located at the piping inner surface. Crack lies in the weld metal is more susceptible to propagate, and the propagating tending direction of the crack near the line dividing the weld metal and heat affect zone is the weld metal.
机译:基于材料力学性能连续变化的数值模拟方法,研究了具有半椭圆形表面裂纹的压力管道焊接接头,焊接机械异质性对沿界面裂纹的应力应变场和J积分的影响模拟了不同位置的前沿。研究结果表明,最大应力,应变和J积分位于裂纹的前端中心点,最小应力和应变位于管道内表面。裂纹位于焊缝金属中,更易于传播,裂纹在靠近焊缝金属和热影响区的线附近的扩展趋势是焊缝金属。

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