Structure and phase composition of a W‐Ta‐Mo‐Nb‐V‐Cr‐Zr‐Ti alloy obtained by ball milling and spark plasma sintering

In this paper, the structural characteristics of a W‐Ta‐Mo‐Nb‐V‐Cr‐Zr‐Ti non‐equiatomic refractory metal alloy obtained by spark plasma sintering (SPS) of a high‐energy ball‐milled powder mixture are reported. High‐energy ball milling resulted in the formation of particle agglomerates ranging from...

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Published in:Entropy Vol. 22, № 2. P. 143 (1-12)
Other Authors: Smirnov, Ivan V., Korchagin, Mikhail A., Grinyaev, Konstantin V., Melnikov, Vladlen V., Pinzhin, Yury P., Gavrilov, Alexander I., Esikov, Maksim Aleksandrovich, Mali, Vyacheslav I., Dudina, Dina V., Ditenberg, Ivan A.
Format: Article
Language:English
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Online Access:http://vital.lib.tsu.ru/vital/access/manager/Repository/vtls:000795003
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245 1 0 |a Structure and phase composition of a W‐Ta‐Mo‐Nb‐V‐Cr‐Zr‐Ti alloy obtained by ball milling and spark plasma sintering  |c I. A. Ditenberg, I. V. Smirnov, M. A. Korchagin [et al.] 
336 |a Текст 
337 |a электронный 
504 |a Библиогр.: 50 назв. 
520 3 |a In this paper, the structural characteristics of a W‐Ta‐Mo‐Nb‐V‐Cr‐Zr‐Ti non‐equiatomic refractory metal alloy obtained by spark plasma sintering (SPS) of a high‐energy ball‐milled powder mixture are reported. High‐energy ball milling resulted in the formation of particle agglomerates ranging from several tens to several hundreds of micrometers. These agglomerates were composed of micrometer and submicrometer particles. It was found that, during ball milling, a solid solution of A2 structure formed. The grains of the sintered material ranged from fractions of a micrometer to several micrometers. During SPS, the phase transformations in the alloy led to the formation of a Laves phase of C15 structure and ZrO and ZrO2 nanoparticles. The microhardness of the ball‐milled alloy and sintered material was found to be 9.28 GPa ± 1.31 GPa and 8.95 GPa ± 0.42 GPa, respectively. The influence of the processing conditions on the structure, phase composition, and microhardness of the alloy is discussed. 
653 |a многокомпонентные сплавы 
653 |a порошковая смесь 
653 |a тугоплавкие металлы 
653 |a шаровые мельницы 
653 |a искровое плазменное спекание 
653 |a микротвердость 
653 |a микроструктура 
655 4 |a статьи в журналах  |9 879358 
700 1 |a Smirnov, Ivan V.  |9 100238 
700 1 |a Korchagin, Mikhail A.  |9 858001 
700 1 |a Grinyaev, Konstantin V.  |9 100237 
700 1 |a Melnikov, Vladlen V.  |9 200251 
700 1 |a Pinzhin, Yury P.  |9 101014 
700 1 |a Gavrilov, Alexander I.  |9 510767 
700 1 |a Esikov, Maksim Aleksandrovich  |9 478367 
700 1 |a Mali, Vyacheslav I.  |9 338628 
700 1 |a Dudina, Dina V.  |9 510768 
700 1 |a Ditenberg, Ivan A.  |9 99902 
773 0 |t Entropy  |d 2020  |g Vol. 22, № 2. P. 143 (1-12)  |x 1099-4300 
852 4 |a RU-ToGU 
856 4 |u http://vital.lib.tsu.ru/vital/access/manager/Repository/vtls:000795003 
856 |y Перейти в каталог НБ ТГУ  |u https://koha.lib.tsu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=480291 
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