Optimal-packing models in problems of determining the porosity of agglomerated products

IF 0.8 4区 材料科学 Q4 METALLURGY & METALLURGICAL ENGINEERING
Aitber M. Bizhanov
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引用次数: 0

Abstract

The sphere packing theory is used to study the influence of the particle-size distribution in the material on the porosity of briquettes and pellets, and the fractional composition of agglomerated products on the porosity of layers of such charge components. Understanding how the porosity of agglomerates varies with the particle-size distribution in the starting material, it is possible to optimize the metallurgical properties of briquette and pellets. The porosity of a layer of such products largely determines their behavior during both reduction (in blast furnaces, ore-thermal furnaces, and direct-reduction reactors) and pellet firing. The results obtained made it possible to identify for the first time the local extrema in the porosity of agglomerates and the porosity of a layer of pellets (briquettes). The developed heuristic approach can be used for optimizing the composition of mixtures for agglomeration, increasing the efficiency of pellet firing, and achieving high degrees of metallization in reducing an agglomerated charge. This approach accounts for the compressibility and shape irregularity of particles in both starting mixture and agglomerated products.

聚类产品孔隙率确定问题中的最佳填充模型
利用球填料理论研究了物料中颗粒粒度分布对压块和球团孔隙率的影响,以及团聚产物的分级组成对这类装药组分层孔隙率的影响。了解团块的孔隙率随起始物料粒度分布的变化规律,可以优化成型煤和球团的冶金性能。这些产品层的孔隙率在很大程度上决定了它们在还原(在高炉、矿热炉和直接还原反应器中)和球团烧制过程中的行为。所获得的结果使得首次确定团聚体孔隙率和一层球团(压块)孔隙率的局部极值成为可能。所开发的启发式方法可用于优化凝聚混合物的组成,提高球团燃烧的效率,并在减少凝聚电荷的过程中实现高程度的金属化。该方法解释了初始混合物和凝聚产物中颗粒的可压缩性和形状不规则性。
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来源期刊
Metallurgist
Metallurgist 工程技术-冶金工程
CiteScore
1.50
自引率
44.40%
发文量
151
审稿时长
4-8 weeks
期刊介绍: Metallurgist is the leading Russian journal in metallurgy. Publication started in 1956. Basic topics covered include: State of the art and development of enterprises in ferrous and nonferrous metallurgy and mining; Metallurgy of ferrous, nonferrous, rare, and precious metals; Metallurgical equipment; Automation and control; Protection of labor; Protection of the environment; Resources and energy saving; Quality and certification; History of metallurgy; Inventions (patents).
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