Zobrazeno 1 - 10
of 10
pro vyhledávání: '"A. Z. Negodyaev"'
Autor:
A. Z. Negodyaev, V. I. Yakovlev, V. Yu Filimonov, A. V. Sobachkin, A. Yu. Myasnikov, S. G. Ivanov, A. A. Sitnikov, M. V. Loginova
Publikováno v:
Inorganic Materials. 55:1097-1103
This paper presents a detailed experimental study of phase formation processes in a mechanically activated Ti + Al powder mixture. High-temperature synthesis has been performed in thermal explosion mode using induction heating of the mixture. We pres
Autor:
A. V. Sobachkin, M. V. Loginova, A. Yu. Myasnikov, A. A. Sitnikov, V. I. Yakovlev, A. Z. Negodyaev, S. G. Ivanov, V. Yu. Filimonov
Publikováno v:
Izvestiya Vuzov. Poroshkovaya Metallurgiya i Funktsional’nye Pokrytiya (Universitiesʹ Proceedings. Powder Metallurgy аnd Functional Coatings). :4-14
Autor:
V. I. Yakovlev, A. Z. Negodyaev, A. V. Sobachkin, M. V. Loginova, S. G. Ivanov, A. Yu. Myasnikov, A. A. Sitnikov, V. Yu Filimonov
Publikováno v:
Combustion Science and Technology. 192:457-470
In the present work, the experimental study of the features of phase formation processes in preliminary mechanically activated powder mixture Ti+Al was conducted. The synthesis was realized...
Autor:
V. I. Yakovlev, M. R. Sharafutdinov, V. Yu Filimonov, A. Yu. Myasnikov, A. V. Sobachkin, A. A. Sitnikov, S. G. Ivanov, M. V. Loginova, A. V. Gradoboev, B.P. Tolochko, A. Z. Negodyaev
Publikováno v:
Materials Chemistry and Physics. 276:125314
The purpose of the work presented is to study the processes of phase formation in mechanically activated Ti + Al powder mixture which was exposed to low doses of gamma radiation. A two-stage treatment of the initial powder mixture of the specified co
Autor:
S. G. Ivanov, A. A. Sitnikov, A. Z. Negodyaev, M. V. Loginova, A. V. Sobachkin, A. V. Gradoboev, V. I. Yakovlev
Publikováno v:
Physics of Metals and Metallography. 118:170-175
The structural and phase state of powder samples of compounds Ti3Al and TiAl has been investigated experimentally before and after the action of small doses of gamma irradiation. To study phase and structure parameters, the X-ray diffractometry has b
Autor:
V. Yu. Filimonov, M. V. Loginova, S. G. Ivanov, A. A. Sitnikov, V. I. Yakovlev, A. V. Sobachkin, A. Z. Negodyaev, A. Yu. Myasnikov, A. V. Gradoboev, B. P. Tolochko, M. R. Sharafutdinov
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::6417e99511e13c03d53a9e66908927db
Autor:
A. Z. Negodyaev, A. V. Sobachkin, B.P. Tolochko, A. A. Sitnikov, M. R. Sharafutdinov, V. Yu Filimonov, V. I. Yakovlev, Andrey Yu. Myasnikov, S. G. Ivanov, M. V. Loginova
Publikováno v:
Materials Chemistry and Physics. 243:122611
Аbstract With the use of time-resolved X-Ray diffraction, the analysis of the phase formation dynamics processes in mechanically activated powder mixture of Ti + Al composition in the thermal explosion mode was carried out. The synthesis was conduct
Autor:
A. Z. Negodyaev, Valeriy Yu. Filimonov, V. I. Yakovlev, Alexander A. Sytnikov, Denis V. Shreifer, M. V. Loginova
Publikováno v:
Applied Mechanics and Materials. 788:117-122
The influence of basic high-temperature synthesis parameters on the process of structure formation in the mechanically activated powder mixture 3Ti+Al was investigated in the study. The synthesis was realized by the method of induction heating in the
Autor:
V. I. Yakovlev, M. V. Loginova, Valery Yu. Filimonov, A.V. Afanasyev, A.A. Sitnikov, A. Z. Negodyaev
Publikováno v:
Applied Mechanics and Materials. 621:71-76
The experimental investigation of structure formation processes in preliminary mechanically activated powder mixture 3Ti + Al was carried out. The synthesis was realized in the thermal explosion mode with the use of high-frequency induction heating.
Autor:
V. I. Yakovlev, D. V. Schreifer, V. A. Solov’ev, V. Yu. Filimonov, A. V. Afanas’ev, A. A. Sitnikov, A. Z. Negodyaev, M. V. Loginova
Publikováno v:
International Journal of Self-Propagating High-Temperature Synthesis. 23:18-25
MW-assisted combustion synthesis in mechanically activated 3Ti+Al powder mixtures in a thermal explosion mode was explored by thermography and XRD with special emphasis on the influence of mode/rate of MW heating. The main stages of the process were