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Analysis of the stress intensity factor of welded joints under prior corrosion and complex stress fields

Analysis of the stress intensity factor of welded joints under prior corrosion and complex stress fields
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摘要 Taking cruciform welded joints under different corrosion degrees, together with 45° inclined angle and full penetration load-carrying fillet, as the research object, the stress intensity factor of a quarter-circular comer crack of welded joints is calculated based on FRANC3D with ABAQUS. Effects of different corrosion pit sizes, crack aspect ratios, and crack depths on stress intensity factor are analyzed. The results show that pit depth plays a major role in stress intensity factor, while the effect of pit radius is relatively small. The cracking modes of the surface and the deepest point are mode I, and mixed modes I and II, respectively. Effects of pit depths, crack aspect ratios, and crack depths on the stress intensity factor at the surface point are greater than at the deepest point. Taking cruciform welded joints under different corrosion degrees, together with 45° inclined angle and full penetration load-carrying fillet, as the research object, the stress intensity factor of a quarter-circular comer crack of welded joints is calculated based on FRANC3D with ABAQUS. Effects of different corrosion pit sizes, crack aspect ratios, and crack depths on stress intensity factor are analyzed. The results show that pit depth plays a major role in stress intensity factor, while the effect of pit radius is relatively small. The cracking modes of the surface and the deepest point are mode I, and mixed modes I and II, respectively. Effects of pit depths, crack aspect ratios, and crack depths on the stress intensity factor at the surface point are greater than at the deepest point.
出处 《Journal of Modern Transportation》 2016年第4期270-276,共7页 现代交通学报(英文版)
基金 supported by the National Natural Science Foundation of China(51378430 and 51378431)
关键词 Stress intensity factor Welded joint Prior corrosion Complex stress field. Numerical simulation Stress intensity factor Welded joint Prior corrosion Complex stress field. Numerical simulation
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