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Round Robin Analyses on Stress Intensity Factors of Inner Surface Cracks in Welded Stainless Steel Pipes

机译:循环法分析焊接不锈钢管内表面裂纹的应力强度因子

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摘要

Austenitic stainless steels (ASSs) are widely used for nuclear pipes as they exhibit a good combination of mechanical properties and corrosion resistance. However, high tensile residual stresses may occur in ASS welds because postweld heat treatment is not generally conducted in order to avoid sensitization, which causes a stress corrosion crack. In this study, round robin analyses on stress intensity factors (SIFs) were carried out to examine the appropriateness of structural integrity assessment methods for ASS pipe welds with two types of circumferential cracks. Typical stress profiles were generated from finite element analyses by considering residual stresses and normal operating conditions. Then, SIFs of cracked ASS pipes were determined by analytical equations represented in fitness-for-service assessment codes as well as reference finite element analyses. The discrepancies of estimated SIFs among round robin participants were confirmed due to different assessment procedures and relevant considerations, as well as the mistakes of participants. The effects of uncertainty factors on SIFs were deducted from sensitivity analyses and, based on the similarity and conservatism compared with detailed finite element analysis results, the R6 code, taking into account the applied internal pressure and combination of stress components, was recommended as the optimum procedure for SIF estimation.
机译:奥氏体不锈钢(ASSs)具有良好的机械性能和耐腐蚀性,因此被广泛用于核管。但是,由于通常不进行焊后热处理以避免敏化作用,因此在ASS焊缝中可能会产生较高的拉伸残余应力,以免引起引起应力腐蚀裂纹的敏化。在这项研究中,对应力强度因子(SIF)进行了轮循分析,以检验具有两种类型的圆周裂纹的ASS管焊接结构完整性评估方法的适用性。通过考虑残余应力和正常运行条件,通过有限元分析生成典型的应力曲线。然后,通过适用性评估代码中表示的分析方程式以及参考有限元分析来确定破裂的ASS管道的SIF。轮回参与者的估计SIF差异是由于评估程序和相关考虑因素的不同以及参与者的错误而得到确认的。从敏感性分析中推导出不确定因素对SIF的影响,并基于相似性和保守性,再与详细的有限元分析结果进行比较,建议将R6代码(考虑所施加的内部压力和应力分量的组合)考虑在内,作为最佳选择SIF估算程序。

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