Page 150 - dysertaciyahembara
P. 150
236. Lü H., Li M., Zhang T., Chu W. Hydrogen-enhanced dislocation
emission, motion and nucleation of hydrogen-induced cracking for steel// Science
in China Series E: Technological Sciences. 1997; 40(5) p. 530-538.
237. Zhang L., An B., Fukuyama S., Yokogawa K. Hydrogen effects on
localized plasticity in SUS310S stainless steel investigated by nanoindentation
and atomic force microscopy// Japanese Journal of Applied Physics. 2009;
48(8S2):08JB.
238. Fisher J.C. Calculation of diffusion penetration curves for surface and
grain boundary diffusion// Journal of Applied Physics. 1951;22(1) p. 74-77.
239. Ivanyts'kyi Y.L., Hembara O.V., Chepil O.Y. Determination of the
Durability of Elements of Power-Generating Equipment with Regard for the
Influence of Working Media// Materials Science. 2015; 51(1) p. 104-13.
240. Hutton D.V. Fundamentals of finite element analysis: McGraw-Hill
Science Engineering; 2003.
241. Panasyuk V.V., Ivanyts'kyi Y.L., Hembara O.V., Boiko V.M.
Influence of the Stress-Strain State on the Distribution of Hydrogen Concentration
in the Process Zone// Materials Science. 2014; 50(3) p. 315-323.
242. Лыков АВ. Теория теплопроводности. 1967.
243. Райченко А. Математическая теория диффузии в приложениях.
Киев: Наукова думка. 1981;12.
244. Gerberich W.W., Stauffer D.D., Sofronis P., editors. A Coexistent
View of Hydrogen Effects on Mechanical Behavior of Crystals: HELP and
HEDE. International Conference on Effects of Hydrogen on Materials; 2008 Sep
07-10; Grand Teton Natl Park, WY2009.
245. Dmytrakh I., Syrotyuk A., Leshchak R. Specific effects of hydrogen
concentration on resistance to fracture of ferrite-pearlitic pipeline steels// 6th
International Conference Fracture Mechanics of Materials and Structural
Integrity (Fmsi 2019). 2019; 16 p. 113-120.
150