四组分体系MgO - CaO - Al2O3 - Cr2O3亚固体结构的细化,包括Сa6Al4Cr2O15化合物

A. Korohodska, H. Shabanova, N. Deviatova, M. Volobuev
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引用次数: 0

摘要

本文给出了考虑三组分化合物Сa6Al4Cr2O15的MgO - CaO - Al2O3 - Cr2O3四组分体系亚固体结构的理论计算结果。采用热力学和几何拓扑分析方法,建立了特定系统中的稳定锥体。当将浓度四面体MgO - CaO - Al2O3 - Cr2O3划分为涉及几何拓扑分析的基本四面体时,可以通过一个公共顶点对具有入射边(结点)的基本四面体进行明确的封闭。使用这种方法可以减少必要的热力学计算的次数。考虑到稳定相,MgO - CaO - Al2O3 - Cr2O3体系的四面体是由于存在三个“内部”共聚物穿过浓度四面体的三维空间造成的:Сa6Al4Cr2O15 - MgO;MgCa3Al4O10 - CaCr2O4, CaCr2O4 - MgAl2O4,测定了在亚固区存在14个基本四面体。采用质心坐标和欧几里得几何元素计算初等四面体的孔洞长度和体积。相对体积最大和不对称最小的四面体组成中包含的相CaCr2O4 - СaAl2O4 - mgal2o4 - MgO(分别为185.6‰和2.55‰)在体系中存在的可能性最高,这将允许开发一种可持续的技术,用于制造基于钙铝铬铁矿水泥的复合材料,以方石石为骨料,无需特殊技术的初始组分剂量。同时,在违反工艺流程的情况下,在未成形材料的成分中会合成铝酸镁尖晶石,不会导致所用复合材料的性能特性恶化。值得注意的是,在预测合成复合材料的相组成时,具有高度不对称性的基本四面体需要适当的剂量准确性,从基于特殊粘结剂材料的未成形耐火材料的角度来看,它位于系统中没有技术优势的区域,并且是陶瓷和耐火材料行业的材料科学家感兴趣的领域。
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REFINEMENT OF THE FOUR-COMPONENT SYSTEM MgO – CaO – Al2O3 – Cr2O3 SUB-SOLIDUS STRUCTURE INCLUDING THE Сa6Al4Cr2O15 COMPOUND
The results of theoretical calculations of the subsolidus structure of the four-component system MgO – CaO – Al2O3 – Cr2O3 are presented, taking into account the three-component compound Сa6Al4Cr2O15. Thermodynamic and geometric topological analysis methods were used to establish stable conodes in the specified system. When dividing the concentration tetrahedron MgO – CaO – Al2O3 – Cr2O3 into elementary ones with the involvement of a geometro-topological analysis, it is possible to make an unambiguous closure to the elementary tetrahedron of faces with incident edges (connodes) through a common vertex. The use of this method allows to minimize the number of necessary thermodynamic calculations. The tetrahedra of the MgO – CaO – Al2O3 – Cr2O3 system, taking into account the stable phases, is caused by the presence of three "internal" conodes passing through the three-dimensional space of the concentration tetrahedron: Сa6Al4Cr2O15 – MgO; MgCa3Al4O10 – CaCr2O4, CaCr2O4 – MgAl2O4, which determine the presence of 14 elementary tetrahedra in the subsolidus region. The lengths of conodes and volumes of elementary tetrahedra were calculated taking into account barycentric coordinates and elements of Euclidean geometry. The phases included in the composition of the tetrahedron with the largest relative volume and the smallest asymmetry CaCr2O4 – СaAl2O4 –MgAl2O4 – MgO (185.6 ‰ and 2.55, respectively) have the highest probability of existence in the system, which will allow the development of a sustainable technology for creating composite materials based on calcium aluminochromite cement, with periclase as an aggregate, without special techniques dosage of initial components. At the same time, in the event of a violation of the technological process, magnesium aluminate spinel will be synthesized in the composition of the unformed material, which will not lead to deterioration of the performance characteristics of the composite used. It should be noted that elementary tetrahedra with a high degree of asymmetry, which require appropriate dosage accuracy when predicting the phase composition of synthesized composite materials, are located in areas of the system that are not technologically advantageous from the point of view of obtaining unformed refractories based on special binder materials, and are interest for materials scientists in the ceramic and refractory industries.
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