2023 year

Physico-chemical mechanics of materials

Content

Zvirko O. I., Hredil M. I., Tsyrulnyk O. T., Student O. Z., and Nykyforchyn H. M.

Mechanism of development of damages of low-strength pipe steel due to hydrogenation under operation

54–59

Kononiuk O. P., Zavalii I. Yu., Berezovets V. V., Kytsia A. R., and Borukh I. V.

Production of hydrogen by hydrolysis of magnesium hydride composites with additions of TiFe/Ti3Fe3O and graphite

60–66

Kvasnytska Yu. H., Ivaskevych L. M., Balitskii A. I., Myalnitsa H. P., and Kvasnytska K. H.

Evaluation of the endurance limit of cooled blades of gas turbine engines made of heat-resistant nickel alloy

86–92

Pohrelyuk I. M., Student M. M., Zadorozhna Kh. R., Trush V. S., and Kravchyshyn T. M.

Surface modification of titanium by oxidation followed by electrospark alloying with a graphite electrode

93–99

Maksymenko O. P., Hvozdiuk M. M., Kulynych Ya. P., and Ivanytskyi Ya. L.

The influence of the initial gap on the fracture of bolted joints of composite materials

100–107

Matviichuk O. O., Andreiev I. V., Litoshenko N. V., Tsysar M. O., Vynar V. A., Hnatenko I. O., Davydenko S. A., and Savchuk I. V.

Peculiarities of production and properties of WC + 20 mass% Ni hard alloy with ultra-coarse-grained microstructure

108–115

122–128

Korzhyk V. M., Khaskin V. Yu., Kvasnytskyi V. V., Ganushchak O. V., Hos I. D., Peleshenko S. I., Demianov O. I., Konoreva O. V., and Fialko N. M.

Preparing integrated joints of titanium alloys with steels (A review)

5-16

Trush V. S., Pohrelyuk I. M., Luk’yanenko O. G., Kravchyshyn T. M., and Fedirko V. M.

The influence of heating modes on heat-resistance of Zr and the Zr–1% Nb alloy

17-23

Gogaev K. O., Sydorchuk O. M., Myslyvchenko O. M., Yevych Y. I., and Hongguang Ye.

The influence of operating conditions on the structure and mechanical properties of 4Х4Н5М4Ф2 die steel

36-40

Ivanov O. O., Prysiazhniuk P. M., Bodrova L. G., Kramar G. M., Marynenko S. Yu., Koval I. V., and Guryk O. Ya.

3D simulation of the structure of soldered materials based on Fe–Ti–Mo–B–C system

41-46

Skalskyi V. R., Mokryi O. M., Zvirko O. I., Kyryliv V. I., Romanyshyn I. M., and Maksymiv O. V.

Assessment of characteristics of nanocrystalline layer using the surface acoustic waves

56-61