首页> 外文会议>International Conference on Offshore Mechanics and Arctic Engineering, Jun 23-28, 2002, Oslo, Norway >EXPERIMENTAL STUDY AND PREDICTION OF FATIGUE CRACK GROWTH IN GIRTH WELDED PIPES
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EXPERIMENTAL STUDY AND PREDICTION OF FATIGUE CRACK GROWTH IN GIRTH WELDED PIPES

机译:环缝焊缝疲劳裂纹扩展的实验研究与预测

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Fracture mechanics fatigue crack growth analysis is widely used in the Engineering Critical Assessment of welded structures. An important requirement is an accurate solution for the stress intensity factor, K, for the particular type and geometry of crack under consideration. A case commonly encountered is the weld toe crack. A solution incorporating the stress intensity magnification factor, M_k, to allow for the stress concentration effect of the welded joint, based on 2D FEA has been in use for many years. A new solution from 3D FEA has recently become available. However, in both cases, little has been done to validate the solutions against actual fatigue crack growth data. The results from a recent investigation of fatigue in large diameter (609mm OD x 20mm WT) girth-welded pipes provided an opportunity to do this. This paper presents a comparison of these crack growth data based on beachmarking information with predictions based on the 2D and 3D M_k solutions. It was found that the 2D M_K solution tended to over-estimate the crack growth rate, while the 3D solution provided better correlation between predicted and actual crack propagation behaviour. It is therefore recommended that the 3D M_K solution should be used in the calculation of K for weld toe cracks.
机译:断裂力学疲劳裂纹扩展分析被广泛应用于焊接结构的工程关键评估中。一个重要的要求是针对所考虑的特定裂纹类型和几何形状,准确解决应力强度因子K的问题。通常遇到的情况是焊趾裂纹。基于2D FEA的包含应力强度放大系数M_k的解决方案已考虑了焊接接头的应力集中效应,这种解决方案已经使用了很多年。 3D FEA的新解决方案最近可用。但是,在这两种情况下,都没有做多少工作来针对实际疲劳裂纹扩展数据验证解决方案。最近对大直径(609mm OD x 20mm WT)环缝焊管疲劳的调查结果提供了一个机会。本文介绍了这些基于滩涂信息的裂纹扩展数据与基于2D和3D M_k解决方案的预测的比较。发现2D M_K解决方案倾向于高估裂纹扩展速率,而3D解决方案则在预测的和实际的裂纹扩展行为之间提供了更好的相关性。因此,建议在焊接脚趾裂纹的K计算中使用3D M_K解决方案。

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