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High-temperature performance prediction of iron ore fines and the ore-blending programming problem in sintering
Authors:Bing-ji Yan  Jian-liang Zhang  Hong-wei Guo  Ling-kun Chen  Wei Li
Affiliation:1. School of Metallurgical and Ecological Engineering, University of Science and Technology Beijing, Beijing, 100083, China
2. State Key Laboratory of Advanced Metallurgy, University of Science and Technology Beijing, Beijing, 100083, China
3. R&D Center of Wuhan Iron and Steel (Group) Corporation, Wuhan, 430080, China
Abstract:The high-temperature performance of iron ore fines is an important factor in optimizing ore blending in sintering. However, the application of linear regression analysis and the linear combination method in most other studies always leads to a large deviation from the desired results. In this study, the fuzzy membership functions of the assimilation ability temperature and the liquid fluidity were proposed based on the fuzzy mathematics theory to construct a model for predicting the high-temperature performance of mixed iron ore. Comparisons of the prediction model and experimental results were presented. The results illustrate that the prediction model is more accurate and effective than previously developed models. In addition, fuzzy constraints for the high-temperature performance of iron ore in this research make the results of ore blending more comparable. A solution for the quantitative calculation as well as the programming of fuzzy constraints is also introduced.
Keywords:
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