2022 year

Physico-chemical mechanics of materials

Content

44-48

Orynyak І. V., Mazuryk R. V., Marchenko V. V., and Oryniak А. І.

Targeted method of statistical processing of experimental results of defected pipes rupture tests

49-58

Vasyliv B. D., Podhurska V. Ya., Ostash O. P., Danilenko I. A., and Shylo A. V.

Improvement of strength of anode-substrate material of hydrogen and hydrocarbonic solid oxide fuel cells

59-65

Berezovets V. V., Kytsya A. R., Zasadnyy T. M., Zavaliy I. Yu., and Yartys V. A.

Hydrogen generation by hydrolysis of mixtures of magnesium hydride with citric acid

66-71

Rostova H. Yu., Tolstolutska G. D., Vasilenko R. L., Kolodiy I. V., Kovalenko V. I., Marinin V. G., Tikhonovsky M. A., and Kuprin O. S.

Cavitation wear of Т91 ferritic-martensitic steel

79-83

Maksymenko О. P., Semenets O. I., Hvozdyuk М. М., Znova V. A., and Ivanytskyi Ya. L.

Crumpling stress distribution in multi-row riveted joints

84-89

Trush V. S., Pohrelyuk I. M., Kravchyshyn T. M., Luk’yanenko A. G., Stoev P. I., Fedirko V. M., and Kovalchuk I. V.

Kinetics peculiarities of Zr–1% Nb alloy nitriding

117-123

Babachenko O. I., Kononenko H. A., Podolskyi R. V., Safronova O. A., and Taranenko A. O.

Structure and fracture resistance of steels in different zones of railway axles

124-128

129-132

Lobanov L. M., Pashchin, N. A., Mikhodui O. L., Shlonskyi P. S., Chopyk V. V., and Karlov O. M.

Increasing fatigue fracture resistance of welded joints by controlled synchronization of electrodynamic actions

5-11

Zhernosekov А. М., Fedorchuk V. Ye., Kysla H. P., Koval V. А., and Falchenko Iu. V.

The influence of welding current pulses shape on aluminum alloy joints properties

12-19

Syzonenko О. М., Tashev P., Torpakov А. S., Lypian Ye. V., Prystash M. S., Kandeva M., and Dyakova V.

The influence of high-voltage electric discharge treatment of powders on the properties of metal-matrix Ті–ТіС composites

20-28

Matviichuk О. О., Andreiev І. V., Hnatenko І. О., Ievdokymova O. V., Davydenko S. А., and Tsysar M. О.

Technology of mesostructure formation in sintered WC–Co and WC–Ni hard alloys

29-32