Impact properties of tungsten-based alloys under conditions of high-speed interaction

Some aspects of obtaining alloys of the tungsten–nickel–iron–cobalt (TNIC) system have been investigated by the method of liquid-phase sintering of powder preparations, including those containing nano-size tungsten powders. By varying the initial porosity of the powder preparations, samples of highl...

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Veröffentlicht in:Russian physics journal 2013-04, Vol.55 (11), p.1278-1283
Hauptverfasser: Afanas’eva, S. A., Belov, N. N., Biryukov, Yu. A., Burkin, V. V., Ishchenko, A. N., Martsunova, L. S., Tabachenko, A. N., Khabibullin, M. V., Yugov, N. T.
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container_end_page 1283
container_issue 11
container_start_page 1278
container_title Russian physics journal
container_volume 55
creator Afanas’eva, S. A.
Belov, N. N.
Biryukov, Yu. A.
Burkin, V. V.
Ishchenko, A. N.
Martsunova, L. S.
Tabachenko, A. N.
Khabibullin, M. V.
Yugov, N. T.
description Some aspects of obtaining alloys of the tungsten–nickel–iron–cobalt (TNIC) system have been investigated by the method of liquid-phase sintering of powder preparations, including those containing nano-size tungsten powders. By varying the initial porosity of the powder preparations, samples of highly porous composites have been obtained. A calculational-experimental method was used to investigate the penetrating power of cylindrical impactors made from TNIC alloys on steel plates. An increase in penetration depth with growth of porosity of the sample has been established in the considered range of impact speeds.
doi_str_mv 10.1007/s11182-013-9956-0
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subjects Alloys
Condensed Matter Physics
Hadrons
Heavy Ions
Lasers
Mathematical and Computational Physics
Nuclear Physics
Optical Devices
Optics
Photonics
Physics
Physics and Astronomy
Porosity
Powders
Specialty metals industry
Theoretical
Tungsten
title Impact properties of tungsten-based alloys under conditions of high-speed interaction
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