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Evaluation of stress intensity factor for a surface cracked butt welded joint based on real welding residual stress

机译:基于真实焊接残余应力的表面裂纹对接焊缝应力强度因子评估

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This paper examines the evaluation of stress intensity factor (SIF) for surface cracks in a non-uniform residual stress field. A technique that based on utilizing the crack face traction (CFT) integral implemented in the interaction integral method using an open source code for models with a particular crack-block mesh density was presented. 3-D flat plate models with different crack-block mesh densities were employed under different loading conditions to examine the accuracy, conditions and easiness to use of the present technique. The influence of the crack-block mesh density on the calculated SIF solutions due to the application of non-uniform tractions over the crack face was discussed. A considerable improvement of SIF solutions calculated by crack face tractions was observed when the crack-block mesh density becomes fine enough. The effectiveness of the present technique was then validated for different 3-D numerical examples of welded joints under different loading conditions. The present technique was thereafter employed to evaluate SIF for a surface crack in a butt welded joint using real welding residual stress. The SIF solution calculated due to the application of welding residual stress was verified with that given by mechanical loading (without welding residual stress).
机译:本文研究了非均匀残余应力场中表面裂纹的应力强度因子(SIF)的评估。提出了一种技术,该技术利用开放式源代码在具有特定裂缝块网格密度的模型的交互积分方法中实现的裂纹面牵引力(CFT)积分进行了建模。在不同的载荷条件下采用具有不同裂纹块网格密度的3-D平板模型来检验本技术的准确性,条件和易用性。讨论了由于在裂纹面上施加不均匀的牵引力而导致的裂纹块网格密度对计算的SIF解的影响。当裂缝块的网格密度变得足够细时,可以观察到通过裂缝面牵引力计算出的SIF解决方案有了很大的改进。然后,针对不同载荷条件下焊接接头的不同3-D数值示例,验证了本技术的有效性。此后,使用本技术通过实际焊接残余应力评估对接焊缝表面裂纹的SIF。通过施加机械残余力(无焊接残余应力)验证了由于施加焊接残余应力而计算出的SIF解。

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