Page 151 - dysertaciyahembara
P. 151
246. Mytsyk B., Ivanytsky Y., Hembara O., Kost Y., Shtayura S., Sakharuk
O. Effects of hydrogen influence on strained steel 1020// International Journal of
Hydrogen Energy. 2020; 45(16) p. :10199-10208.
247. Andreykiv O., Hembara O., Dolinska I., Sapuzhak Y., Yadzhak N.
Prediction of Residual Service Life of Oil Pipeline Under Non-stationary Oil Flow
Taking into Account Steel Degradation// Degradation Assessment and Failure
Prevention of Pipeline Systems: Springer; 2021. p. 203-216.
248. Hembara O., Chepil O., Hembara T., Mochulskyi V., Sapuzhak Y.
Influence of temperature and hydrogen on fatigue fracture of
10KH15N27T3V2MR steel// Journal of Theoretical and Applied Mechanics
(Poland). 2020;58(1) p. 3-15.
249. Ivanytskyi Y., Kharchenko Y., Hembara O., Chepil O., Sapuzhak Y.,
Hembara N. The energy approach to the evaluation of hydrogen effect on the
damage accumulation. In: Nykyforchyn H, Dmytrakh I, Zvirko O, editors. 6th
International Conference Fracture Mechanics of Materials and Structural
Integrity// Procedia Structural Integrity. 162019. p. 126-33.
250. Hirth J.P. Institute of metals lecture the metallurgical-society-of-aime -
effects of hydrogen on the properties of iron and steel// Metallurgical Transactions
a-Physical Metallurgy and Materials Science. 1980; 11(6) p. 861-890.
251. Eastman J., Matsumoto T., Narita N., Heubaum F., Birnbaum H.K.
Hydrogen Effects in Nickel-Embrittlement or Enhanced Ductility// Illinois univ
at urbana-champaign dept of metallurgy and mining engineering, 1980.
252. Matsumoto T., Eastman J., Birnbaum H.K. Direct observations of
enhanced dislocation mobility due to hydrogen// Scripta metallurgica. 1981;15(9)
p. 1033-1037.
253. Lynch S.P. A fractographic study of gaseous-hydrogen embrittlement
and liquid-metal embrittlement in a tempered-martensitic steel// Acta
Metallurgica. 1984; 32(1) p. 79-90.
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