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Metallurgical investigations and corrosion behavior of failed weld joint in AISI 1518 low carbon steel pipeline

机译:AISI 1518低碳钢管道中失效焊缝的冶金研究和腐蚀行为

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In this paper, failure analysis was carried out based on the available documents, metallo-graphic studies and corrosion behavior of the welded joint pipe sample made of AISI 1518 low carbon steel. Nondestructive evaluations including penetration test (PT) and radiographic test (RT) were performed on the as-received pipeline and results indicated the presence of micro-and macro-cracks. Optical microscopic images and scanning electron microscopy (SEM) micrographs revealed various microstructures in the base metal (BM), heat affected zone (HAZ) and weld metal (WM). The microstructural variations may result in galvanic feature and lead to failure and rupture of the weld joint during the service. Microhardness measurements showed that hardness value was about 260 HV in the WM, while it declined in the HAZ and BM. Qualitative chemical analyses such as X-ray diffraction pattern (XRD) and SEM equipped with energy dispersive spectroscopy (EDS) confirmed the presence of corrosive media during weld joint rupture. Additionally, SEM and optical investigations indicated that micro-cracks were formed in HAZ due to residual stress as a consequence of improper welding condition. Surface fracture studies showed that the crack initiation, crack growth and finally crack propagation took place in the WM/HAZ interface. Electrochemical studies were conducted on the BM, HAZ and WM to investigate corrosion behavior of the failed joint sample. Finally, a proper corrosion mechanism is proposed based on the failure analyses and electrochemical studies. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文根据现有文献,金相研究和AISI 1518低碳钢焊接接头样品的腐蚀行为进行了失效分析。在收到的管道上进行了无损评估,包括渗透测试(PT)和射线照相测试(RT),结果表明存在微观裂纹和宏观裂纹。光学显微图像和扫描电子显微镜(SEM)显微照片揭示了贱金属(BM),热影响区(HAZ)和焊缝金属(WM)的各种微观结构。在维修过程中,微观结构的变化可能会导致电流特性,并导致焊接接头的失效和破裂。显微硬度测量表明,在WM中硬度值约为260 HV,而在HAZ和BM中则降低。定性化学分析,例如X射线衍射图(XRD)和配备了能量色散谱(EDS)的SEM,证实了焊接接头破裂期间存在腐蚀性介质。此外,扫描电镜和光学研究表明,由于焊接条件不当,残余应力会在热影响区形成微裂纹。表面断裂研究表明,在WM / HAZ界面发生了裂纹萌生,裂纹扩展和最终裂纹扩展。对BM,HAZ和WM进行了电化学研究,以研究失效接头样品的腐蚀行为。最后,基于失效分析和电化学研究,提出了合适的腐蚀机理。 (C)2015 Elsevier Ltd.保留所有权利。

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