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CRACKING OF HEAVY WALL STEAM SEPARATORS DURING FABRICATION - AN INVESTIGATION

机译:制造过程中重型壁蒸汽分离器的破解 - 调查

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On a recent project, four high pressure steam separator vessels were received from overseas after fabrication. There was suspicion on the quality of fabrication when non destructive examination (NDE) reports were reviewed. There were major concerns with the quality of radiographic films as they did not meet the ASMe Section VIII Div. 1 Code requirements as well as client specifications. Subsequent examination of welds using radiographic testing (RT) revealed crack-like features around nozzles in the region adjoining (but outside) the weld metal. Macro etching at the surface around nozzles showed that the weld area was extended beyond the apparent weld/base metal interface. Further examination of a cross section cut out from one vessel nozzle confirmed the initial doubts that weld repairs had been performed that were not reported. Metallography of the cross section indicated evidence of significant cracking associated with carbon contamination and very high hardness (up to 365 HV; in one particular case 609 HV) in affected areas. This was believed to be due to improper and incomplete cleaning by grinding after performing carbon arc or, flame gouging to remove a weld defect. Further detailed NDE was carried out using advanced ultrasonic testing (UT), i.e. phased array UT and time of flight diffraction (TOFD) and all defects (many new that were undetected by RT) were repaired per ASME Section VIII Div. 1 Code and client specification. This experience was a lesson for the design office and helped make a decision to be much more vigilant and to ask for greater quality surveillance on overseas fabrication of critical equipment for all future projects. The paper discusses the detailed investigation as well as findings.
机译:在最近的一个项目上,在制造后从海外收到四个高压蒸汽分离器血管。审查了非破坏性检查(NDE)报告时暂停了制造质量。由于射线照相膜的质量存在主要担忧,因为它们没有符合ASME部分viii div。 1代码要求以及客户端规范。随后使用射线照相检测(RT)检查焊缝(RT)透露在邻接(但外部)焊接金属的区域中的喷嘴周围的裂纹状特征。喷嘴周围的表面处的宏蚀刻显示焊接区域延伸到表观焊接/基础金属界面之外。进一步检查从一个容器喷嘴切出的横截面确认了未报告的焊接修理的初始怀疑。横截面的金相表明了与碳污染和非常高的硬度相关的显着裂缝(高达365HV;在一个特定情况下609 HV)中的显着裂缝。这被认为是由于进行碳弧或火焰刨丝以去除焊接缺陷时,通过研磨来磨削而被造成的不当和不完全清洁。通过先进的超声波检测(UT)进行进一步详细的NDE,即分阶段阵列UT和飞行时间衍射(TOFD)和所有缺陷(RT的许多新的新缺陷)每组viii div修复。 1代码和客户端规范。这一经验是设计办公室的教训,并帮助决定更加警惕,并要求对所有未来项目的关键设备的海外制造更具质量监督。本文讨论了详细的调查以及调查结果。

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