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FAILURE ASSESSMENT FOR GIRTH WELD DEFECTS OF PIPELINE

机译:管道环绕焊缝缺陷的失效评估

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This paper studies some key issues of fitness-for-service assessment for pipelines constructed in 1970s in Northeastern China, which were found to have large amount of weld defects resulting in leakage and rupture accidents. The mechanical behaviors of tensile strength, Charpy V-notch impact energy and fracture toughness are tested for the spiral weld metal and pipeline steel, showing that the state standards of steel for pressure vessel are still met after serving for more than 30 years. The safety limit line of the failure assessment diagram (FAD) is derived according to BS7910: level 2B assessment, based on the obtained stress-strain curve of weld metal. The chemical composition of pipeline steel analyzed by the energy spectrum method indicates the pipeline was made of 16Mn steel. The metallographic examination reveals that the metallurgical structure of weld metal was composed of ferrite and pearlite with five different zones. The morphology of tensile fractured surface shown by ductile dimples indicates the tensile fracture is of ductile type, which implies the weld metal and pipeline steel after long time service have not yet become brittle. The stress magnification factor for the bulge effect of through-wall girth defect is extracted from the stress intensity factor evaluated by the finite element simulation method, indicating the applicable ranges of Kastner solution and Schulze et al solution. The stress magnification factor caused by the bending stress of the misalignment imperfection of girth weld joint is calculated by FEM to review the applicability of relevant formulas given in BS7910 for engineering critical assessment. Finally, it is concluded by FE simulation that though the stress magnification effect of shallow cracks in weld toe zone is significant.
机译:本文研究了20世纪70年代在东北部建造的管道健身评估的一些关键问题,该焊接缺陷造成了大量的焊接缺陷,导致泄漏和破裂事故。螺旋焊接金属和管道钢测试拉伸强度,夏比V-ant抗冲击能和断裂韧性的力学行为,表明,在服用30多年后仍然会满足压力容器的状态标准。根据BS7910:2级评估,基于所获得的焊接金属的应力 - 应变曲线来导出故障评估图(FAD)的安全极限线。通过能谱法分析管道钢的化学成分表示管道由16Mn钢制成。金相检查表明,焊缝金属的冶金结构由铁素体和珠光体组成,具有五种不同的区域。延展性凹槽所示的拉伸裂缝表面的形态表明拉伸骨折是延展岩型,这意味着长时间服务后焊缝金属和管道钢尚未变脆。通过通过有限元模拟方法评估的应力强度因子提取通过壁环缺陷的凸起抗凸起的应力放大因子,表明Kastner溶液和Schulze等溶液的适用范围。由周长焊接接头的未对准缺陷的弯曲应力引起的应力放大因子由FEM计算,以审查BS7910中相关公式的适用性进行工程批判性评估。最后,通过FE模拟结束,尽管焊接脚趾区域浅裂纹的应力放大效果显着。

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