Fractographic Signs of the In-Service Degradation of Welded Joints of Oil Mains

Author:

Krechkovs’ka H. V.,Yanovs’kyi S. R.,Student O. Z.,Nykyforchyn H. М.

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference12 articles.

1. E. І. Kryzhanivs’kyi and H. M. Nykyforchyn, Hydrogen-Corrosion Degradation of Oil and Gas Pipelines and Its Prevention: A Textbook [in Ukrainian], Vol. 2: Degradation of Oil Pipelines and Reservoirs and Its Prevention, Ivano-Frankivs’k Nat. Tekh. Univ. Oil Gas, Ivano-Frankivs’k (2001).

2. E. І. Kryzhanivs’kyi and H. M. Nykyforchyn, “Specific features of hydrogen-induced corrosion degradation of steels of gas and oil pipelines and oil storage reservoirs,” Fiz.-Khim. Mekh. Mater., 47, No. 2, 11–20 (2011); English translation: Mater. Sci., 47, No. 2, 127–136 (2011).

3. H. M. Nykyforchyn, O. Z. Student, I. R. Dzioba, et al., “Degradation of welded joints of steam pipelines of thermal electric power plants in hydrogenating media,” Fiz.-Khim. Mekh. Mater., 40, No. 6, 105–110 (2004); English translation: Mater. Sci., 40, No. 6, 836–843 (2004).

4. D. Hull, Fractography: Observing, Measuring, and Interpreting Fracture Surface Topography, Press Syndicate Cambridge Univ., Cambridge (1999).

5. Z. V. Slobodyan, H. M. Nykyforchyn, and O. I. Petrushchak, “Corrosion resistance of pipe steel in oil-water media,” Fiz.-Khim. Mekh. Mater., 38, No. 3, 93–96 (2002); English translation: Mater. Sci., 38, No. 3, 424–429 (2002).

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