Thermophysical properties of synthetic slags of the FeO – MnO – CaO – Al2O3 –– SiO2 system

IF 0.8 Q4 METALLURGY & METALLURGICAL ENGINEERING
D. Yessengaliyev, A. Baisanov, M. Dossekenov, B. Kelamanov, D.M. Almabekov
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引用次数: 1

Abstract

In the electrometallurgy of manganese alloys, viscosity has an important effect on the production indicators from the physicochemical properties of slag. During the smelting of manganese alloys, the main amount of heat spent on reduction reactions is released due to the current passing through the liquid slag phase, since the resistance of the latter, depending on the composition, affects the completeness of the reduction of manganese from melts. In the case of refined ferromanganese by the silicothermic method, the vast majority of silicon of silicomanganese is refined with higher manganese oxides or it is burned out due to oxygen in the air. The paper presents the results of thermophysical properties of slags representing the FeO - MnO - CaO - Al2O3 - SiO2 system. Laboratory experiments were carried out on synthetic slags by varying the slag basicity CaO / SiО2 = 1.5 - 1.9 and the concentration of Al2O3 = 5 - 15%. As a result, graphs of the dependence of these properties on temperature values are constructed, the activation energies of the viscous flow are calculated and the phase compositions of the experimental slags are determined using a mathematical model of the diagram of the FeO - MnO - CaO - Al2O3 - SiO2 system. Thus, an increase in the concentration of aluminum oxide against its usual level, changing the basicity of the slag, significantly affected the physicochemical properties of the slag and thereby contributes to the adjustment of the parameters of the electric melting process. At the same time, it is advisable to study the interaction of some Physical chemical properties of slags on the melting conditions of manganese ferroalloys in relation to the composition of slags.
FeO - MnO - CaO - Al2O3 - SiO2体系合成渣的热物理性质
在锰合金电冶金中,从熔渣的理化性质看,粘度对生产指标有重要影响。在锰合金的熔炼过程中,由于电流通过液渣相,在还原反应中消耗的主要热量被释放,因为液渣相的电阻取决于其成分,影响熔体中锰还原的完整性。在用硅热法精炼锰铁的情况下,硅锰中的绝大多数硅是用较高的锰氧化物精炼的,或者由于空气中的氧气而燃烧殆尽。本文介绍了FeO - MnO - CaO - Al2O3 - SiO2体系炉渣的热物理性质。将矿渣碱度CaO / SiО2 = 1.5 ~ 1.9, Al2O3浓度= 5 ~ 15%,对合成矿渣进行了室内试验。利用FeO - MnO - CaO - Al2O3 - SiO2体系图的数学模型,建立了这些特性与温度值的关系图,计算了黏性流动的活化能,确定了实验渣的相组成。因此,当氧化铝浓度高于其通常水平时,会改变炉渣的碱度,从而显著影响炉渣的物理化学性质,从而有助于调整电熔过程的参数。同时,研究炉渣的某些物理化学性质与锰铁合金熔炼条件的相互作用与炉渣组成的关系也是可取的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
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42.90%
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