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 in | Powder metallurgy and metal ceramics Vol. 49; no. 1-2; pp. 66 - 70 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
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. |
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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 |
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References | Kayuk, Koval’chenko, Martsenyuk (CR2) 2007; 46 Kayuk, Maslyuk (CR3) 2004; 43 Mosina, Panasyuk, Yuga (CR1) 1999; 38 Lavrenko, Mosina, Panasyuk (CR4) 1997; 12 CR6 CR5 9203_CR6 VG Kayuk (9203_CR3) 2004; 43 VG Kayuk (9203_CR2) 2007; 46 9203_CR5 TV Mosina (9203_CR1) 1999; 38 VO Lavrenko (9203_CR4) 1997; 12 |
References_xml | – volume: 38 start-page: 517 issue: 9–10 year: 1999 end-page: 520 ident: CR1 article-title: Friction properties of composites of the system TiN–AlN. Effect of structure and phase composition on friction and wear of materials of the system TiN–AlN publication-title: Powder Metall. Met. Ceram. doi: 10.1007/BF02676071 contributor: fullname: Yuga – volume: 46 start-page: 228 issue: 5–6 year: 2007 end-page: 235 ident: CR2 article-title: Effect of the nickel–chromium binder on the densification kinetics of chromium carbide–titanium nitride cermets in hot pressing publication-title: Powder Metall. Met. Ceram. doi: 10.1007/s11106-007-0037-1 contributor: fullname: Martsenyuk – volume: 12 start-page: 139 year: 1997 end-page: 143 ident: CR4 article-title: High-temperature oxidation of TiNAlN powders and composites publication-title: Dop. NAN Ukrainy contributor: fullname: Panasyuk – ident: CR6 – ident: CR5 – volume: 43 start-page: 39 issue: 1–2 year: 2004 end-page: 43 ident: CR3 article-title: Structure formation in alloys of the Cr C –TiN system and the properties of materials based on them publication-title: Powder Metall. Met. Ceram. doi: 10.1023/B:PMMC.0000028270.54924.60 contributor: fullname: Maslyuk – volume: 46 start-page: 228 issue: 5–6 year: 2007 ident: 9203_CR2 publication-title: Powder Metall. Met. Ceram. doi: 10.1007/s11106-007-0037-1 contributor: fullname: VG Kayuk – volume: 12 start-page: 139 year: 1997 ident: 9203_CR4 publication-title: Dop. NAN Ukrainy contributor: fullname: VO Lavrenko – ident: 9203_CR6 – ident: 9203_CR5 – volume: 43 start-page: 39 issue: 1–2 year: 2004 ident: 9203_CR3 publication-title: Powder Metall. Met. Ceram. doi: 10.1023/B:PMMC.0000028270.54924.60 contributor: fullname: VG Kayuk – volume: 38 start-page: 517 issue: 9–10 year: 1999 ident: 9203_CR1 publication-title: Powder Metall. Met. Ceram. doi: 10.1007/BF02676071 contributor: fullname: TV Mosina |
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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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