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

Author:

Nasibullina O.A.1,Gareev A.G.1,Rizvanov Rif G.1

Affiliation:

1. Ufa State Petroleum Technological University

Abstract

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.

Publisher

Trans Tech Publications, Ltd.

Subject

Condensed Matter Physics,General Materials Science,Atomic and Molecular Physics, and Optics

Reference14 articles.

1. A.G. Gareev, R.G. Rizvanov, O.A. Nasibullina , Corrosion and protection of metals in the oil and gas industry, Gilem, Ufa, (2016).

2. A.G. Gareev, O.A. Nasibullina, R.G. Rizvanov, Investigation of hydrogen metal embrittlement, destructive metalwork, Problems of gathering, treatment and transportation of oil and oil products. 107(1) (2017) 107-115.

3. I.G. Abdullin, A.G. Gareev, Corrosion fatigue durability of pipe steel in carbonate-bicarbonate media, Fiziko-Khimicheskaya Mekhanika Materialov. 29)5) (1993) 97-98.

4. A.S. Tyusenkov, Chemical resistance of steel 13CrV, Steel. 2 (2016) 53-57.

5. I.G. Abdullin, A.G. Gareev, Corrosion-fatigue durability of pipe steel in carbonate-bicarbonate medium, Materials Science. 29(5) (1994) 539-541.

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