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Phase Relations in the ZrO2–FeO System

Bechta, Sevostian (author)
A.P. Aleksandrov Research Institute of Technology
Krushinov, E.V. (author)
A.P. Aleksandrov Research Institute of Technology
Almjashev, V.I. (author)
Institute of Silicate Chemistry of Russian Academy of Sciences
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Vitol, S.A (author)
A.P. Aleksandrov Research Institute of Technology
Mezentseva, L.P. (author)
Institute of Silicate Chemistry of Russian Academy of Sciences
Petrov, Yu.B. (author)
Saint-Petersburg Electrotechnical University ‘LETI’
Lopukh, D.B. (author)
Saint-Petersburg Electrotechnical University ‘LETI’
Khabensky, V.B. (author)
A.P. Aleksandrov Research Institute of Technology
Barrachin, M. (author)
Institut de Radioprotection et Suˆrete´ Nucle´aire (IRSN)
Hellmann, S. (author)
Framatome ANP GmbH
Gusarov, V.V. (author)
Institute of Silicate Chemistry of Russian Academy of Sciences
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AP. Aleksandrov Research Institute of Technology Institute of Silicate Chemistry of Russian Academy of Sciences (creator_code:org_t)
2006
2006
English.
In: Russian Journal of Inorganic Chemistry. - 0036-0236 .- 1531-8613. ; 51:2, s. 325-331
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • We present the results of the investigation of the ZrO2-FeO system under an inert atmosphere. We have refined the position of the eutectic point, which lies at 1332 +/- 5 degrees C and 10.3 +/- 0.6 mol % ZrO2. The iron oxide solubility boundaries in zirconium dioxide have been determined over a wide temperature range taking into account the polymorphism in ZrO2. A phase diagram for the system has been designed.

Subject headings

TEKNIK OCH TEKNOLOGIER  -- Maskinteknik -- Energiteknik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Mechanical Engineering -- Energy Engineering (hsv//eng)

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