Development of a Porous Tungsten Carbide Composite Material, Its Structure, Properties, and Pattern of High-Velocity Interaction with Steel Plates.

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Title: Development of a Porous Tungsten Carbide Composite Material, Its Structure, Properties, and Pattern of High-Velocity Interaction with Steel Plates.
Authors: Burkin, V. V.1 (AUTHOR), D'yachkovskii, A. S.1 (AUTHOR), Ishchenko, A. N.1 (AUTHOR), Kudryavtsev, V. A.1 (AUTHOR), Sammel', A. Yu.1 (AUTHOR) anton_sammel@mail.ru, Skosyrskii, A. B.1 (AUTHOR), Stepanov, E. Yu.1 (AUTHOR)
Source: Journal of Engineering Physics & Thermophysics. Jan2024, Vol. 97 Issue 1, p78-81. 4p.
Subjects: Tungsten carbide, Iron & steel plates, Tungsten alloys, Composite materials, Microstructure
Abstract: High-temperate vacuum sintering has been used to obtain porous composite tungsten carbide alloy TNIC (W–Ni–Fe–Co) + 69 wt.% WC. The results of investigations into the microstructure and physical-mechanical properties of the alloy are presented. An experimental investigation has been conducted into the high-velocity interaction of cylindrical strikers made of this material with steel plates in the velocity range of 1200–1400 m/s. [ABSTRACT FROM AUTHOR]
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Database: Engineering Source
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Abstract:High-temperate vacuum sintering has been used to obtain porous composite tungsten carbide alloy TNIC (W–Ni–Fe–Co) + 69 wt.% WC. The results of investigations into the microstructure and physical-mechanical properties of the alloy are presented. An experimental investigation has been conducted into the high-velocity interaction of cylindrical strikers made of this material with steel plates in the velocity range of 1200–1400 m/s. [ABSTRACT FROM AUTHOR]
ISSN:10620125
DOI:10.1007/s10891-024-02869-3