Steklo i Keramika (Glass and Ceramics). Monthly scientific, technical and industrial journal

 

ISSN 0131-9582 (Online)

  • Continuous numbering: 1068
  • Pages: 18-22
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Heading: Science for ceramic production

Abraham T. Powder Market Update: Nanoceramic Applications Emerge // Am. Cer. Soc. Bull. 2004. V. 83. N 8. P. 23. Toropov N. A., Barzakovsky V. P., Lapin V. V., Kurtseva N. N. State diagrams of silicate systems. Metal-oxygen compounds of silicate systems: a handbook. Issue 2 / ed. N. A. Toropov. L .: Nauka, 1969.372 p. Karpetyants M. Kh. Methods for Comparative Calculation of Physical and Chemical Properties. Moscow: Nauka, 1965.403 p. Karpetyants M. Kh., Karpetyants M. L. Basic thermodynamic constants of inorganic and organic substances. Moscow: Chemistry, 1968.473 p. Reshtanenko NV Software systems for solving applied problems of the "CHEMISTRY" subject area. Vladivostok: IAPU FEB RAS, 2006.52 p. Ravdel A.A., Ponomareva A.M. 10th ed. SPb .: Ivan Fedorov, 2003.240 p. Thermodynamic properties of inorganic substances: a reference book / UD Veryatin, VP Mashirev, NG Ryabtsev and others; under total. ed. A.P. Zefirova. Moscow: Atomizdat, 1965.460 p. Landia NA Calculation of high-temperature heat capacities of solid inorganic substances by standard entropy. Tbilisi: Publishing house of the Academy of Sciences of the Georgian SSR, 1962.223 p. Samsonov G.V., Kosolapova T.Ya., Gnesin G.G. Carbides and alloys based on them. Kiev: Naukova Dumka, 1976.267 p. Nurumgaliev A.Kh. Thermodynamic modeling and analysis in the systems: SiC? SiO2, SiC? MnO, SiC? Al2O3, SiC? BaO // Bulletin of KazNTU. URL: http://e-lib.kazntu.kz/sites/ default / files / articles / nurumgaliev_2006_4.pdf. Keishi Negita. Effective Sintering Aids for Silicon Carbide Ceramics: Reactivities of Silicon Carbide with Various Additives // J. Am. Ceram. Soc. 1986. V. 69. N 12.P. 308? 310. Moreira MC, Segadaes AM Phase Equilibrium Relationships in the System Al2O3? TiO2? MnO, Relevant to the Sintering of Alumina // J. Europ. Ceram. Soc. 1996. N 16.P. 1089? 1098. Makarov N., Zhukov D., Guseva T. et al. Improving Energy Efficiency of Silicon Carbide Ceramics Production by Batch Regulation // SGEM-2015. V. 1. Nano, Bio and Green? Technologies for a Sustainable Future. P. 11? eighteen.
Dr. Tech. Sciences N. A. MAKAROV ( e-mail: This email address is being protected from spambots. You need JavaScript enabled to view it. ), Cand. tech. D. Yu. ZHUKOV ( e-mail: This email address is being protected from spambots. You need JavaScript enabled to view it. ), Cand. tech. Sciences M. A. VARTANYAN ( e-mail: This email address is being protected from spambots. You need JavaScript enabled to view it. ), Cand. tech. D.O. LEMESHEV ( e-mail: This email address is being protected from spambots. You need JavaScript enabled to view it. ), E.E. NAZAROV; D. I. Mendeleev Russian Chemical-Technological University (D. I. Mendeleev University of Chemical Technology) (Russia, Moscow)
The calculation and analysis of the dependence of the change in the Gibbs energy of the reactions of interaction of SiC with oxides of different nature in the temperature range from 298 to 2300 K in order to select modifiers for obtaining structural ceramics from SiC has been performed. Based on the data obtained, CaO, MgO, SrO, Al 2 O 3 , Y 2 O can be recommended for the synthesis of modifiers in energy-efficient technologies of silicon carbide ceramics. 3 , Sc 2 O 3 and lanthanide oxides

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Makarov N. A., Zhukov D. Yu., Vartanyan M. A., Lemeshev D. O., Nazarov E. E. Thermodynamic analysis as a method for choosing dopants in silicon carbide ceramics production. Steklo i keramika. 2016:89(12):18-22. (in Russ). UDK 666.3: 661.665.1:544.323.2