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Published in: Glass and Ceramics 5-6/2014

01-09-2014 | Science for Ceramic Production

Investigation of High-Temperature Creep in Mullite – Zirconium Oxide Polydisperse Ceramic

Authors: V. G. Maksimov, D. V. Grashchenkov, V. A. Lomovskoi, V. G. Babashov, O. V. Basargin, S. G. Kolyshev

Published in: Glass and Ceramics | Issue 5-6/2014

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Abstract

The behavior of ceramic samples, based on mullite modified by zirconium oxide, during bending at high temperatures is investigated. It is shown that recrystallization annealing can be recommended to improve the properties of this material.

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Literature
1.
go back to reference E. N. Kablov, “Strategic directions for the development of materials and technologies for processing them in the period up to 2030,” Aviats. Mater. Tekhnol., No. 5, 7 – 17 (2012). E. N. Kablov, “Strategic directions for the development of materials and technologies for processing them in the period up to 2030,” Aviats. Mater. Tekhnol., No. 5, 7 – 17 (2012).
2.
go back to reference V. G. Maksimov, O. V. Basargin, and V. Yu. Nikitina, “On the manifestation of superplasticity in polydisperse ceramic mullite – zirconium oxide with crystals larger than 10 μm,” Trudy VIAM, No. 6 (2013), e-journal. V. G. Maksimov, O. V. Basargin, and V. Yu. Nikitina, “On the manifestation of superplasticity in polydisperse ceramic mullite – zirconium oxide with crystals larger than 10 μm,” Trudy VIAM, No. 6 (2013), e-journal.
3.
go back to reference B. V. Shchetanov, Yu. A. Ivakhnenko, and V. G. Babashov, “Heat insulating materials,” Ross. Khim. Zh., 54(1), 12 – 20 (2010). B. V. Shchetanov, Yu. A. Ivakhnenko, and V. G. Babashov, “Heat insulating materials,” Ross. Khim. Zh., 54(1), 12 – 20 (2010).
4.
go back to reference A. P. Garshin, V. M. Gropyanov, G. P. Zaitsev, et al., Ceramics for Machine Engineering [in Russian], Nauchlegtekhizdat, Moscow (2003). A. P. Garshin, V. M. Gropyanov, G. P. Zaitsev, et al., Ceramics for Machine Engineering [in Russian], Nauchlegtekhizdat, Moscow (2003).
5.
go back to reference F. E. Heredia, J. C. McNulty, F. W. Zok, and A. G. Evans, “Oxidation Embrittlement Probe for Ceramic-Matrix Composites,” J. Am. Ceram. Soc., 78(8), 2097 – 2100 (1995).CrossRef F. E. Heredia, J. C. McNulty, F. W. Zok, and A. G. Evans, “Oxidation Embrittlement Probe for Ceramic-Matrix Composites,” J. Am. Ceram. Soc., 78(8), 2097 – 2100 (1995).CrossRef
6.
go back to reference R. Krishnamurthy, J. Rankin, and B. W. Sheldon, “Effect of Oxidation on Crack Deflection in SiC/Al2O3 Laminated Ceramic Composites,” J. Am. Ceram. Soc., 88(5), 1362 – 1365 (2005).CrossRef R. Krishnamurthy, J. Rankin, and B. W. Sheldon, “Effect of Oxidation on Crack Deflection in SiC/Al2O3 Laminated Ceramic Composites,” J. Am. Ceram. Soc., 88(5), 1362 – 1365 (2005).CrossRef
7.
go back to reference Working Scenario: Columbia Accident Investigation Board (CAIB), NASA Accident investigation team (NAIT) (2003). Working Scenario: Columbia Accident Investigation Board (CAIB), NASA Accident investigation team (NAIT) (2003).
8.
go back to reference Yu. A. Ivakhnenko, V. G. Babashov, A. M. Zimichev and E. V. Tinaykova, “High-temperature heat-insulation and heatshielding materials based on refractory compounds,” Aviats. Mater. Tekhnol., No. 5, 380 – 386 (2012). Yu. A. Ivakhnenko, V. G. Babashov, A. M. Zimichev and E. V. Tinaykova, “High-temperature heat-insulation and heatshielding materials based on refractory compounds,” Aviats. Mater. Tekhnol., No. 5, 380 – 386 (2012).
9.
go back to reference V. G. Sevist’yanov, E. P. Simonenko, N. P. Simonenko and N. T. Kuznetsov, “Synthesis of highly disperse refractory zirconium oxide – hafnium – yttrium using sol-gel technology,” Zh. Neorg. Khim., 57, No. 3, 355 – 361 (2012). V. G. Sevist’yanov, E. P. Simonenko, N. P. Simonenko and N. T. Kuznetsov, “Synthesis of highly disperse refractory zirconium oxide – hafnium – yttrium using sol-gel technology,” Zh. Neorg. Khim., 57, No. 3, 355 – 361 (2012).
10.
go back to reference S. V. Chizhevskaga, A. V. Zhukov, O.M. Klimenko, et al., “Obtaining nanostructured powders of partially stabilized zirconium dioxide for ceramic with high mechanical strength,” Steklo Keram., No. 4, 18 – 21 (2010); S. V. Chizhevskaga, A. V. Zhukov, O. M. Klimenko, et al., “Obtaining nanostructured powders of partially stabilized zirconium dioxide for ceramic with high mechanical strength,” Glass Ceram., 67(3 – 4), 114 – 117 (2010).CrossRef S. V. Chizhevskaga, A. V. Zhukov, O.M. Klimenko, et al., “Obtaining nanostructured powders of partially stabilized zirconium dioxide for ceramic with high mechanical strength,” Steklo Keram., No. 4, 18 – 21 (2010); S. V. Chizhevskaga, A. V. Zhukov, O. M. Klimenko, et al., “Obtaining nanostructured powders of partially stabilized zirconium dioxide for ceramic with high mechanical strength,” Glass Ceram., 67(3 – 4), 114 – 117 (2010).CrossRef
11.
go back to reference V. S. Erasov, Physical and Mechanical Characteristics as the Main Integral Quality Indices for Aviation Structural Materials [in Russian], VIAM, Moscow (2011). V. S. Erasov, Physical and Mechanical Characteristics as the Main Integral Quality Indices for Aviation Structural Materials [in Russian], VIAM, Moscow (2011).
12.
go back to reference O. V. Basargin, T. M. Shcheglova, S. G. Kolyshev, et al., “Determination of the high-temperature strength of ceramic oxide materials,” Steklo Keram., No. 2, 6 – 9 (2013); O. V. Basargin, T. M. Shcheglova, S. G. Kolyshev, et al., “Determination of the High-Temperature Strength of Ceramic Oxide Materials,” Glass Ceram., 70(1 – 2), 43 – 46 (2013).CrossRef O. V. Basargin, T. M. Shcheglova, S. G. Kolyshev, et al., “Determination of the high-temperature strength of ceramic oxide materials,” Steklo Keram., No. 2, 6 – 9 (2013); O. V. Basargin, T. M. Shcheglova, S. G. Kolyshev, et al., “Determination of the High-Temperature Strength of Ceramic Oxide Materials,” Glass Ceram., 70(1 – 2), 43 – 46 (2013).CrossRef
13.
go back to reference N. A. Toropov, V. P. Barzakovskii, V. V. Lapin, et al., Handbook of Phase Diagrams of Silicate Systems [in Russian], Nauka, Leningrad (1972), Vol. 3. N. A. Toropov, V. P. Barzakovskii, V. V. Lapin, et al., Handbook of Phase Diagrams of Silicate Systems [in Russian], Nauka, Leningrad (1972), Vol. 3.
Metadata
Title
Investigation of High-Temperature Creep in Mullite – Zirconium Oxide Polydisperse Ceramic
Authors
V. G. Maksimov
D. V. Grashchenkov
V. A. Lomovskoi
V. G. Babashov
O. V. Basargin
S. G. Kolyshev
Publication date
01-09-2014
Publisher
Springer US
Published in
Glass and Ceramics / Issue 5-6/2014
Print ISSN: 0361-7610
Electronic ISSN: 1573-8515
DOI
https://doi.org/10.1007/s10717-014-9646-6

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