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Investigation of the Hydrogen Stratification of the Metal of the Active Gas Pipeline

机译:活性气体管道金属氢分层的研究

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One of the most common types of metal destruction in the oil and gas industry is hydrogen embrittlement. Hydrogen corrosion is a complex of negative effects of hydrogen on steel, leading to the destruction of metal structures. Hydrogen passes through a defect-free metal, without lingering in it. In the presence of defects, hydrogen is retained in the metal forming a brittle solid solution, metal stratification along the segregation streamer, blistering. Studies of the metal of a gas pipeline made of steel 09G2S are presented in the article. The sample was selected from the local zone of destruction in the condensate collector, the metal of the pipe had typical for hydrogen corrosion stratifications. The scope of the study was identification of the most dangerous part of hydrogen corrosion on the sample taken from the local zone of destruction. Studies on the chemical composition and mechanical properties of 09G2S steel were also carried out. Stress-related characteristics of the metal microstructure of the failed gas pipeline were obtained and the character of the destruction progress was revealed. The presence of sulfides cluster in the metal of studied pipe was determined applying metallographic method for determining nonmetallic inclusions.
机译:石油和天然气工业中最常见的金属破坏之一是氢脆。氢腐蚀是氢对钢的负面影响的复杂,导致金属结构的破坏。氢通过无缺陷的金属,而不会挥之不去。在存在缺陷的情况下,氢被保留在形成脆性固溶体的金属中,沿着偏析炉簧,金属分层,起泡。本文介绍了由钢09G2制成的气体管道金属的研究。从冷凝物收集器中的局部破坏区中选择样品,管的金属具有典型的氢腐蚀分层。该研究的范围是鉴定从局部破坏区域所取的样品上的最危险部分的氢腐蚀部分。还进行了09G2S钢的化学成分和机械性能的研究。获得了失败的气体管道的金属微观结构的应力相关特征,揭示了破坏进展的特征。确定了研究管道金属中的硫化物簇的存在,以施加用于确定非金属夹杂物的金属凝集方法。

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