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This article is cited in 2 scientific papers (total in 2 papers)
Physical science of materials
Plasma dynamic synthesis of nanocrystalline WC$_{1-x}$ and the dependence of the product structure on the ratio of precursors
A. A. Sivkovab, I. I. Shanenkovab, Yu. L. Shanenkovaab, I. A. Rakhmatullinb, A. S. Ivashutenkob, D. S. Nikitinb, A. R. Nasyrbaevb a Jilin University, Changchun, Jilin, China
b Tomsk Polytechnic University
Abstract:
The results of plasma dynamic synthesis of nanocrystalline cubic tungsten carbide using a system based on a coaxial magnetoplasma accelerator are presented. It is found that an atomic ratio of C/W precursors of about 2.5 is necessary to achieve the maximum yield of the unique cubic phase of tungsten carbide WC$_{1-x}$ (up to 95%). The synthesized materials are analyzed by transmission electron microscopy to assess the formation of the structure of nanocrystalline particles depending on the ratio of carbon and tungsten filling. It is found that particles with a core–shell structure are formed in the system, and the thickness of the shells increases with an increase in the amount of carbon in the mixture of initial components.
Received: 10.02.2020 Revised: 05.05.2020 Accepted: 28.05.2020
Citation:
A. A. Sivkov, I. I. Shanenkov, Yu. L. Shanenkova, I. A. Rakhmatullin, A. S. Ivashutenko, D. S. Nikitin, A. R. Nasyrbaev, “Plasma dynamic synthesis of nanocrystalline WC$_{1-x}$ and the dependence of the product structure on the ratio of precursors”, Zhurnal Tekhnicheskoi Fiziki, 90:12 (2020), 2098–2107; Tech. Phys., 65:12 (2020), 2007–2015
Linking options:
https://www.mathnet.ru/eng/jtf5131 https://www.mathnet.ru/eng/jtf/v90/i12/p2098
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