Static Crack Resistance of 20 and 30KhMA Steels in a Nace Solution

Author:

Chuchman М. R.

Publisher

Springer Science and Business Media LLC

Subject

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

Reference6 articles.

1. NACE Standard TM 0177-90. Standard Test Method Laboratory of Metals for Resistance to Sulfide Stress Corrosion Cracking in H 2 S Environments, National Association of Corrosion Engineering (NACE), Houston, TX. (1990).

2. M. S. Khoma, M. R. Chuchman, V. R. Ivashkiv, and H. M. Sysyn, “Influence of cyclic loads on the fracture resistance of pipe steels and their welded joints in hydrogen-sulfide media,” Fiz.-Khim. Mekh. Mater., 49, No. 3, 52–57 (2013); English translation: Mater. Sci., 49, No. 3, 334–340 (2013).

3. V. I. Pokhmurs’kyi, M. S. Khoma, H. V. Krutsan, and M. R. Chuchman, “Influence of the conditions of loading on the resistance of structural steels to stress-corrosion fracture in hydrogen-sulfide solutions,” in: V. V. Panasyuk (editor), Fracture Mechanics of Materials and Strength of Structures [in Ukrainian], Karpenko Physicomechanical Institute, Ukrainian National Academy of Sciences, Lviv (2009), pp. 765–770.

4. MSKR-01-85. Procedure of Testing for the Resistance to Hydrogen-Sulfide Corrosion Cracking [in Russian], Izd. GKNT SSSR, Moscow (1985).

5. B. Graig, “Limitations of alloying to improve the threshold for hydrogen stress cracking of steels,” in: Hydrogen Effects on Material Behavior, Proc. of the 4th Internat. Conf. on the Effect of Hydrogen on the Behavior of Materials (Wyoming, Sept. 12–15, 1989), pp. 223–230 (1989).

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