Mathematical description of the lines of monovariant phase equilibria on the MnO-SiO2 phase equilibrium diagram

被引:2
|
作者
V. Tolokonnikova, V. [1 ]
Baisanov, S. O. [2 ]
Saulebek, Zh. K. [3 ]
Orlov, A. S. [4 ]
机构
[1] Chem & Met Inst Named Zh Abishev, Met Melts Lab, Karaganda, Kazakhstan
[2] Chem & Met Inst Named Zh Abishev, Met Proc Lab, Karaganda, Kazakhstan
[3] Chem & Met Inst Named Zh Abishev, Karaganda, Kazakhstan
[4] Chem & Met Inst Named Zh Abishev, Bor Lab, Karaganda, Kazakhstan
来源
CIS IRON AND STEEL REVIEW | 2023年 / 26卷
关键词
manganese; silicium; Bjerrum-Guggenheim coefficient; phases; crystallization; activity; phase equilib-rium diagram; mathematical model; VISCOSITY;
D O I
10.17580/cisisr.2023.02.17
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
When analyzing a number of phase equilibrium diagrams of various types of systems, the regular relationship was found during the formation of phase crystallization fields in the form of a correlation dependence of the osmotic coefficient of a crystallizing component on the ratio of its activity in the liquid and solid phases. The Bjerrum-Guggenheim osmotic coefficient serves as a measure of the deviation of the energy properties of a real system from the ideal one described by the Schroeder-Le Chatelier equation. Mathematical expressions for the liquidus and solidus lines are obtained in the form of semi-empirical dependences on a single analytical basis, which make it pos-sible to calculate the temperature dependence of the composition. Thus, a theoretically substantiated method for the mathematical description of the lines of monovariant phase equilibria has been developed, based on the regulari-ties of the behavior of components in the melt. Mathematical expressions represent the crystallization fields of the phases of the MnO-SiO2 system for the corresponding components and compounds using the Schroeder-Le Chat-elier equation and the correlation dependence of the osmotic coefficient CYRILLIC CAPITAL LETTER EF', experimental and calculated data of the Bjerrum-Guggenheim osmotic coefficient (CYRILLIC CAPITAL LETTER EFi) are calculated. The type of variation in the Bjerrum-Guggenheim osmotic coefficient depends on the intermolecular interaction of the components in the melt. If only van der Waals forces of interaction between the components in the melt prevail, then a correlation dependence is observed. When groups from the initial compounds are formed in the melt, or processes of dissociation or, conversely, association occur, the osmotic coefficient is described by a curvilinear dependence. The paper presents mathematical expres-sions for the fields of crystallization of phases of the MnO-SiO2 system in the form of semi-empirical dependencies. The nature of the change in the Bjerrum-Guggenheim osmotic coefficient of the crystallizing component depending on the ratio of its activity in the liquid and solid phases is shown.
引用
收藏
页码:105 / 110
页数:6
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