1. O. Z. Student, B. P. Rusyn, B. P. Kysil’, M. I. Kobasyar, T. P. Stakhiv, and A. D. Markov, “Quantitative analysis of structural changes in steel caused by high-temperature holding in hydrogen,” Fiz.-Khim. Mekh. Mater., 39, No. 1, 22–28 (2003); English translation: Mater. Sci., 39, No. 1, 17–24 (2003).
2. R. Ya. Kosarevych, O. Z. Student, Ya. D. Onyshchak, A. D. Markov, I. V. Ripei, B. P. Rusyn, and H. M. Nykyforchyn, “Estimation of damage to the collector of a water economizer by thermal fatigue cracks,” Fiz.-Khim. Mekh. Mater., 40, No. 1, 109–114 (2004); English translation: Mater. Sci., 40, No. 1, 132–138 (2004).
3. I. M. Zhuravel’, L. M. Svirs’ka, O. Z. Student, R. A. Vorobel’, and H. M. Nykyforchyn, “Automated determination of grain geometry in an exploited steam-pipeline steel,” Fiz.-Khim. Mekh. Mater., 45, No. 3, 23–29 (2009); English translation: Mater. Sci., 45, No. 3, 350–357 (2009).
4. R. A. Vorobel’, I. M. Zhuravel’, L. M. Svirs’ka, and O. Z. Student, “Automatic selection and quantitative analysis of carbides on grain boundaries of 12Kh1MF steel after operation at a steam pipeline of a thermal power plant,” Fiz.-Khim. Mekh. Mater., 47, No. 3, 109–115 (2011); English translation: Mater. Sci., 47, No. 3, 393–400 (2011).
5. C. D. Beachem, “Microscopic fracture process,” in: H. Liebowitz (editor), Fracture, Vol. 1, Academic Press, New York–London (1968), pp. 243–349.