In the paper a priori prediction of phase complex was conducted, topological image of system’s phase diagram was constructed, invariant points’ characteristics were given, and crystallization fields were outlined.
фазообразование, ликвидус, солидус, перитектика, эвтектика, конгруэнтно-плавящие, инконгруэнтноплавящие, триангуляция, диаграмма, кристаллизация, априорное прогнозирование, комплексообразование, phase-formation, liquidus, solidus, peritectic, eutectic, congruent-melting, incongruent-melting, triangulation, diagram, crystallization, a priori prediction, complexing
1. V.N. Krasil'nikov, M.Ya. Hodos, A.A. Fotiev, Fazovye sootnosheniya v sisteme Cs2O- V2O5 i ental'pii obrazovaniya vanadatov ceziya // Neorgan. mat., 1983, T. 19, № 7, S. 1161-1164.
2. A.A. Fotiev, B.V. Slobodin, M.Ya. Hodos, Vanadaty. Sostav, sintez, struktura, svoystva. M.: Nauka, 1988, 272 s.
3. B.V. Slobodin, N.V. Kiseleva // Zhurn. neorgan. himii. 1993, t. 38, № 7, S. 1225-1228.
4. B.V. Slobodin, Sistemy MVO3-V2O5-Rb2V2O7 (M-Li, Na, Rb, Cs) // ZhNH, 1995, T. 40, № 5, S. 847-848.
5. B.V. Slobodin, L.L. Surat, Fazoobrazovanie v sistemah M2O-SiO-V2O5 (M- Li, Na, Rb, K, Cs) // ZhNH, 2002, T. 47, № 8, S. 1349-1355.
6. B.V. Slobodin, L.L. Surat. Fazovye sootnosheniya v subsolidusnoy oblasti sistem M+2O-M2+O-V2O5 (M- Li, Na, Rb, K, Cs; M2+-Mg, Ca) // Neorgan. materialy, 2004, T. 40, № 2, S. 232-238.
7. O.S. Sirotkin. Edinaya paradigma himicheskogo i fizicheskogo mezhmolekulyarnogo vzaimodeystviy / O.S. Sirotkin, R.O. Sirotkin, P.B. Shibaev // Vestnik KGTU. - 2011. - №1. - S. 22-32.
8. O.S.Sirotkin, A.V.Kalashnikov, V.A.Davydenkov, R.O.Sirotkin, P.B.Shibaev. Elektronno-yadernyy i nanostrukturnyy urovni organizacii neorganicheskih metallicheskih veschestv kak sovremennaya fundamental'naya osnova sovershenstvovaniya tehnologiy pridaniya im novyh zadannyh svoystv//Vestnik KGTU,2012 t.15,№7,s 15-21.