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Theoretical Analyses and Experimental Investigations of Selective Carbothermal Reactions of Vanadium-Bearing Titanomagnetite Concentrates for Preparation of Iron-Based Wear-Resistant Material

机译:含钒钛磁铁矿精矿选择性碳热反应制备铁基耐磨材料的理论分析和实验研究

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摘要

Based on FACTSageA (R) software, this paper focuses on the thermodynamic calculations of selective carbothermal reactions of vanadium-bearing titanomagnetite concentrates for preparing iron-based wear-resistant material directly from vanadium-bearing titanomagnetite concentrates. The calculations show that it was most likely to generate metallic iron, titanium carbide and vanadium carbide among all possible carbothermal reactions of vanadium-bearing titanomagnetite concentrates in a vacuum of 10 Pa. The equilibrium composition calculations indicate that Fe3O4 can be reduced to metallic iron by carbon above 400A degrees C, FeTiO3 can be converted into TiC by carbon above 800A degrees C and V2O5 can be converted into VC by carbon above 600A degrees C in a vacuum of 10 Pa. The investigations demonstrated that the percentage of ferrous oxides reduced to metallic iron was about 96%, the conversion percentage of FeTiO3 into TiC was about 75% and the conversion percentage of V2O5 into VC was about 94% after the selective carbothermal reactions of vanadium-bearing titanomagnetite concentrates at 1300A degrees C for 3 h in a vacuum of 10 Pa.
机译:本文基于FACTSageA(R)软件,着重研究了含钒钛磁铁矿精矿用于直接从含钒钛磁铁矿精矿制备铁基耐磨材料的选择性碳热反应的热力学计算。计算表明,在真空度为10 Pa的含钒钛磁铁矿精矿的所有可能的碳热反应中,最有可能生成金属铁,碳化钛和碳化钒。平衡组成计算表明,Fe3O4可通过以下方法还原为金属铁:碳在400A摄氏度以上,FeTiO3可以在800A摄氏度以上被碳转化为TiC,V2O5在60 Pa真空下可以被600A以上的碳转化为VC。研究表明,氧化亚铁还原为金属的百分比含钒钛磁铁矿精矿在1300A真空下进行3 h的选择性碳热反应后,铁含量约为96%,FeTiO3转化为TiC的转化率约为75%,V2O5转化为VC的转化率约为94%。 10 Pa。

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