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Influence of alloying the TiC0.5N0.5 carbonitride with zirconium on an interaction mechanism with the Ni–Mo melt
by
Zhilyaev, V. A
, Patrakov, E. I
in
Alloying
/ Cermets
/ Composite materials
/ Contact melting
/ Electron probe microanalysis
/ Hot pressing
/ Investigations
/ Metals
/ Molybdenum
/ Nickel
/ Nitrogen
/ Rarefaction
/ Scanning electron microscopy
/ Sintering
/ Solid solutions
/ Titanium
/ Titanium carbonitride
/ Zirconium
2017
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Influence of alloying the TiC0.5N0.5 carbonitride with zirconium on an interaction mechanism with the Ni–Mo melt
by
Zhilyaev, V. A
, Patrakov, E. I
in
Alloying
/ Cermets
/ Composite materials
/ Contact melting
/ Electron probe microanalysis
/ Hot pressing
/ Investigations
/ Metals
/ Molybdenum
/ Nickel
/ Nitrogen
/ Rarefaction
/ Scanning electron microscopy
/ Sintering
/ Solid solutions
/ Titanium
/ Titanium carbonitride
/ Zirconium
2017
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Influence of alloying the TiC0.5N0.5 carbonitride with zirconium on an interaction mechanism with the Ni–Mo melt
by
Zhilyaev, V. A
, Patrakov, E. I
in
Alloying
/ Cermets
/ Composite materials
/ Contact melting
/ Electron probe microanalysis
/ Hot pressing
/ Investigations
/ Metals
/ Molybdenum
/ Nickel
/ Nitrogen
/ Rarefaction
/ Scanning electron microscopy
/ Sintering
/ Solid solutions
/ Titanium
/ Titanium carbonitride
/ Zirconium
2017
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Influence of alloying the TiC0.5N0.5 carbonitride with zirconium on an interaction mechanism with the Ni–Mo melt
Journal Article
Influence of alloying the TiC0.5N0.5 carbonitride with zirconium on an interaction mechanism with the Ni–Mo melt
2017
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Overview
The influence of alloying the TiC0.5N0.5 titanium carbonitride with zirconium on the mechanism and kinetic features of the contact interaction with the Ni–25%Mo melt (t = 1450°C, rarefaction 5 × 10–2 Pa) is investigated for the first time by electron probe microanalysis and scanning electron microscopy. The main effects of the modifying influence of zirconium on the dissolution, phase formation, and structure formation processes which occur during the interaction of the Ti1–nZrnC0.5N0.5 carbonitride (n = 0.05 and 0.20) with the Ni–Mo melt are revealed and the factors promoting their manifestation are analyzed. The practical absence of zirconium and nitrogen in the composition of the K-phase (the Ti1 – nMonCx metastable solid solution, where n ≤ 0.65 and x = 0.7 ± 0.1) is confirmed experimentally. It is shown that the zirconiumenriched Ti0.80Zr0.20C0.5N0.5 carbonitride cannot be recommended as a refractory component of cermet because of the limitations of the chemical character.
Publisher
Springer Nature B.V
Subject
MBRLCatalogueRelatedBooks
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