Structurization of (AlN–TiN)–(Ni–Cr)–(TiN–Cr3C2) composite ceramics under concentrated solar radiation

A complex oxide film forms when (AlN–TiN)–(Ni–Cr)–(TiN–Cr 3 C 2 ) composite ceramics are exposed to concentrated solar radiation. The film has good adhesion to the base and contains oxide phases which show chemical affinity to one another and form solid solutions. This film is continuous and protect...

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Published inPowder metallurgy and metal ceramics Vol. 49; no. 1-2; pp. 66 - 70
Main Authors Kayuk, V. G., Grigor’ev, O. N., Panasyuk, A. D., Mosina, T. V.
Format Journal Article
LanguageEnglish
Published Boston Springer US 01.05.2010
Springer
Springer Nature B.V
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Abstract A complex oxide film forms when (AlN–TiN)–(Ni–Cr)–(TiN–Cr 3 C 2 ) composite ceramics are exposed to concentrated solar radiation. The film has good adhesion to the base and contains oxide phases which show chemical affinity to one another and form solid solutions. This film is continuous and protects the composite against further oxidation.
AbstractList A complex oxide film forms when (AlN-TiN)-(Ni-Cr)-(TiN-Cr^sub 3^C^sub 2^) composite ceramics are exposed to concentrated solar radiation. The film has good adhesion to the base and contains oxide phases which show chemical affinity to one another and form solid solutions. This film is continuous and protects the composite against further oxidation.[PUBLICATION ABSTRACT]
A complex oxide film forms when (AlN-TiN)-(Ni-Cr)-(TiN-[Cr.sub.3][C.sub.2]) composite ceramics are exposed to concentrated solar radiation. The film has good adhesion to the base and contains oxide phases which show chemical affinity to one another and form solid solutions. This film is continuous and protects the composite against further oxidation. Keywords: microstructure, surface layers, concentrated solar radiation, solid solutions, metal sublayer, oxides, microhardness.
A complex oxide film forms when (AlN–TiN)–(Ni–Cr)–(TiN–Cr 3 C 2 ) composite ceramics are exposed to concentrated solar radiation. The film has good adhesion to the base and contains oxide phases which show chemical affinity to one another and form solid solutions. This film is continuous and protects the composite against further oxidation.
Audience Academic
Author Mosina, T. V.
Grigor’ev, O. N.
Panasyuk, A. D.
Kayuk, V. G.
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Cites_doi 10.1007/BF02676071
10.1007/s11106-007-0037-1
10.1023/B:PMMC.0000028270.54924.60
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Keywords metal sublayer
microstructure
oxides
surface layers
concentrated solar radiation
solid solutions
microhardness
Language English
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Kayuk, Maslyuk (CR3) 2004; 43
Mosina, Panasyuk, Yuga (CR1) 1999; 38
Lavrenko, Mosina, Panasyuk (CR4) 1997; 12
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VG Kayuk (9203_CR3) 2004; 43
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Snippet A complex oxide film forms when (AlN–TiN)–(Ni–Cr)–(TiN–Cr 3 C 2 ) composite ceramics are exposed to concentrated solar radiation. The film has good adhesion to...
A complex oxide film forms when (AlN-TiN)-(Ni-Cr)-(TiN-[Cr.sub.3][C.sub.2]) composite ceramics are exposed to concentrated solar radiation. The film has good...
A complex oxide film forms when (AlN-TiN)-(Ni-Cr)-(TiN-Cr^sub 3^C^sub 2^) composite ceramics are exposed to concentrated solar radiation. The film has good...
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SubjectTerms Aluminum compounds
Ceramic materials
Ceramics
Characterization and Evaluation of Materials
Chemistry and Materials Science
Composites
Glass
Materials Science
Metallic Materials
Natural Materials
Nitrides
Nuclear radiation
Oxides
Refractory and Ceramic Materials
Solid solutions
Title Structurization of (AlN–TiN)–(Ni–Cr)–(TiN–Cr3C2) composite ceramics under concentrated solar radiation
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