Synthesis of Superhard Nanodispersed Titanium Compounds in a Magnetoplasma Accelerator Operating in Pulse-Periodic Regime

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Abstract

It is demonstrated that a system based on a coaxial magnetoplasma accelerator with multiple use of the titanium barrel for a consumable provides a dynamic synthesis of nanodispersed titanium-based crystal phases such as cubic titanium nitride (cTiN) and TiO 2. The efficiency of material yield from the surface of the accelerating channel of the titanium barrel increases for cyclic regime of accelerator operation with dead time smaller than 1.0 s.

Original languageEnglish
Pages (from-to)1160-1166
Number of pages7
JournalRussian Physics Journal
Volume54
Issue number10
DOIs
Publication statusPublished - 1 Mar 2012

Fingerprint

titanium compounds
accelerators
titanium
synthesis
pulses
titanium nitrides
crystals

Keywords

  • coaxial accelerator
  • nanodispersed materials
  • titanium nitride

ASJC Scopus subject areas

  • Physics and Astronomy(all)

Cite this

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keywords = "coaxial accelerator, nanodispersed materials, titanium nitride",
author = "Sivkov, {A. A.} and Gerasimov, {D. Yu} and Saigash, {A. S.} and Evdokimov, {A. A.}",
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AU - Sivkov, A. A.

AU - Gerasimov, D. Yu

AU - Saigash, A. S.

AU - Evdokimov, A. A.

PY - 2012/3/1

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N2 - It is demonstrated that a system based on a coaxial magnetoplasma accelerator with multiple use of the titanium barrel for a consumable provides a dynamic synthesis of nanodispersed titanium-based crystal phases such as cubic titanium nitride (cTiN) and TiO 2. The efficiency of material yield from the surface of the accelerating channel of the titanium barrel increases for cyclic regime of accelerator operation with dead time smaller than 1.0 s.

AB - It is demonstrated that a system based on a coaxial magnetoplasma accelerator with multiple use of the titanium barrel for a consumable provides a dynamic synthesis of nanodispersed titanium-based crystal phases such as cubic titanium nitride (cTiN) and TiO 2. The efficiency of material yield from the surface of the accelerating channel of the titanium barrel increases for cyclic regime of accelerator operation with dead time smaller than 1.0 s.

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KW - nanodispersed materials

KW - titanium nitride

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