Zobrazeno 1 - 6
of 6
pro vyhledávání: '"A. I. Borimskii"'
Autor:
S. B. Polotnyak, O. I. Borimskii
Publikováno v:
Journal of Superhard Materials. 38:91-102
The computational schemes and algorithms for numerical simulation (by the finite element method) of the mechanical state of the two-stage multi-anvil high-pressure apparatus have been developed. The stress–strain and limit states of components of t
Autor:
A. G. Vetrov, Yu. D. Filatov, V. G. Poltoratskii, A. I. Borimskii, Tatiana Prikhna, V. D. Kurilovich, O. Yu. Filatov, A. M. Katsai, M. A. Danil’chenko, V. I. Sidorko, S. V. Kovalev
Publikováno v:
Journal of Superhard Materials. 37:48-56
The authors of this paper have substantiated the appropriateness of application of polishing suspensions of diamond micron powders, boron nitride and Ti3AlC2 MAX-phase powders in the study of the mechanism of polishing monocrystalline silicon carbide
Autor:
I. A. Petrusha, Sergey Dub, V. V. Kovylyaev, A. I. Borimskii, S. A. Klimenko, Patrick Chartier, V. N. Tkach, Myroslav Karpets, Yu. D. Filatov, M. Serga, M. G. Loshak, S. A. Ivakhnenko, Tetyana Basyuk, Alexandra Starostina, Viktor Moshchil, T. Cabiosh, V. B. Sverdun, G. D. Il’nitskaya, Artem Kozyrev, Tatiana Prikhna, D. Lizkendorf, Vladimir Z. Turkevich, D. V. Turkevich
Publikováno v:
Journal of Superhard Materials. 36:9-17
Thermogravimetry and differential thermal analysis have been used to study the resistance to the air oxidation of high-density samples of Ti3AlC2, Ti2AlC and Ti2Al(C1−xNx) solid solutions. It has been shown that the Ti3AlC2 samples are more stable
Publikováno v:
Strength of Materials. 23:644-652
The stress-strain state of one of the promising high-pressure apparatuses (HPA) after the assembly process and in the operating mode is investigated by the finite-element method. The stress state of plastically deformable container with a reactive mi
Autor:
V. S. Belinskii, A. V. Gerasimovich, A. I. Borimskii, V. M. Fridman, A. A. Lebedev, M. G. Loshak
Publikováno v:
Strength of Materials. 8:1375-1378
Publikováno v:
Strength of Materials. 9:1199-1206
1. A method and test facilities were developed for studying the effect of size in short-time compression tests of glass and ceramic glasses with a force up to 2000 tons. Such tests require specimens the dimensions of which must be comparable to certa