Zobrazeno 1 - 10
of 55
pro vyhledávání: '"Yu. A. Semerenko"'
Autor:
T. V. Hryhorova, S. E. Shumilin, Yu. O. Shapovalov, Yu. O. Semerenko, O. D. Tabachnikova, M. A. Tikhonovsky, A. S. Tortika, M. I. Zehetbauer, E. Schafler
Publikováno v:
Vìsnik Harkìvsʹkogo nacìonalʹnogo unìversitetu ìmenì V.N. Karazìna. Serìâ: fìzika., Iss 32 (2020)
Externí odkaz:
https://doaj.org/article/49ec9e2e7d724e238369e9e1cf985456
Autor:
E. D. Tabachnikova, T. V. Hryhorova, S. E. Shumilin, I. V. Kolodiy, Yu. O. Shapovalov, Yu. O. Semerenko, S. N. Smirnov, I. V. Kashuba, M. A. Tikhonovsky, M. J. Zehetbauer, E. Schafler
Publikováno v:
Low Temperature Physics. 48:845-852
The mechanical properties comprising the stress-strain characteristics under uniaxial tensile deformation, the acoustic properties from mechanical resonance spectroscopy and—in parallel—the microstructural evolution during deformation of a nonequ
Autor:
V. D. Natsik, Yu. A. Semerenko
Publikováno v:
Low Temperature Physics. 46:78-86
The dynamic elasticity and internal friction of the highly entropic Al0.5CoCrCuFeNi alloy were studied in a wide low temperature range of 4.2–300 K. In the experiments, the bending vibrations of thin plates at a frequency of 530 Hz were studied in
Autor:
V. D. Natsik, Yu. A. Semerenko
Publikováno v:
Low Temperature Physics. 45:551-567
An integrated approach to the study of the mechanisms of low-temperature dislocation relaxation during low-temperature cyclic deformations of crystalline materials has been developed and tested. The approach is based on the combined use of experiment
Autor:
L. V. Skybina, М. А. Tikhonovsky, K. A. Yushchenko, V. S. Savchenko, O. М. Bovda, Yu. O. Semerenko, O. S. Tortyka, O. D. Tabachnikova
Publikováno v:
METALLOFIZIKA I NOVEISHIE TEKHNOLOGII. 40:1051-1067
Autor:
Yu. A. Semerenko, Kornel Csach, M. A. Laktionova, A. V. Podolskiy, S. E. Shumilin, Jozef Miškuf, Elena D. Tabachnikova, M.A. Tikhonovsky
Publikováno v:
Low Temperature Physics. 43:1108-1118
The mechanical properties and fracture characteristics of the high-entropy alloy Al0.5CoCrCuFeNi are studied in different structural states (cast and after two heat treatments) at temperatures of 0.5–300 K with quasistatic deformation by uniaxial c