Fractographic Signs of Gigacycle Fatigue and Hydrogenation of Heat-Resistant Steels after Long-Term Operation

Author:

Smiyan О. D.,Student О. Z.

Publisher

Springer Science and Business Media LLC

Subject

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

Reference40 articles.

1. I. Dmytrakh, “Corrosion fracture of structural metallic materials: effect of electrochemical conditions in crack,” Strain: Int. J. Exper. Mech., 47, No. 2, 427–435 (2011).

2. Y. Murakami and M. Endo, “Effect of defects, inclusions and inhomogeneities on fatigue strength,” Int. J. Fatigue, No. 16, 163–182 (1994).

3. A. Balitskii, V. Vytvytskyii, L. Ivaskevich, and J. Eliasz, “The high- and low-cycle fatigue behavior of Ni-containing steels and Ni-alloys in high pressure hydrogen,” Int. J. Fatigue, 39, 32–37 (2012).

4. R. К. Мelekhov and V. I. Pokhmurs’kyi, Structural Materials in Power-Generating Equipment [in Ukrainian], Naukova Dumka, Kyiv (2003).

5. P. Marshall, “Influence of environment on the process of fatigue,” in: R. P. Skelton (editor), Fatigue of Materials at High Temperature [Russian translation], Metallurgiya, Moscow (1988), pp. 12–53.

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