通过阻力评估焦风分类的可能性

IF 0.7 4区 材料科学 Q4 METALLURGY & METALLURGICAL ENGINEERING
Ji-A Lee, Bong-Min Jin, Jeong-Whan Han
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引用次数: 0

摘要

用作高炉炉料的烧结矿是通过将铁矿石、焦炭和石灰石混合,然后燃烧焦炭,利用燃烧热将铁矿石烧结而成。在焦炭充填物中,粒度为 0.25 毫米或以下的焦炭作为热源的效果不明显,而且会附着在其他材料表面,抑制氧气与原料的反应,从而降低烧结矿的质量。因此,要想提高燃烧效率,就必须降低装填焦炭中焦炭微风的比例。本研究通过理论计算、实验和模拟,探讨了焦炭通过带式输送机输送后,在下落过程中利用拖曳力进行粒度分级的可能性。带式输送机的高度为 1 米,输送带的速度分别为 1.5、2.3 和 2.6 米/秒,这三个参数被视为实验变量。通过多分散系统的阻力模型,建立了坠落轨迹预测公式模型,并与实验和分析结果进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of Classification Possibility of Coke Breeze by Drag Force
Sintered ore used as blast furnace burden materials is produced by mixing iron ore, coke, and limestone, then burning the coke and sintering the iron ore with the combustion heat. Among the coke charged, A particle size of 0.25 mm or less has an insignificant effect as a heat source and adhere to the surface of other materials to inhibit the reaction between oxygen and raw materials, thereby decreasing the quality of sintered ore. Therefore, to increase combustion efficiency, it is necessary to reduce the ratio of coke breeze in the charged coke. In this study, theoretical calculation, experiment and simulation were conducted to investigate the possibility of size classification by drag force in the process of dropping coke after being transported through a belt conveyor. The height of belt conveyor was at 1m, and velocity of the belt was 1.5, 2.3, and 2.6 m/s, which were considered as experimental variables. After falling, the distribution of coke particle size according to the horizontal travel distance was confirmed, and a fall trajectory prediction formula model was created through the drag model of polydisperse system and compared with the experimental and analysis results.
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来源期刊
Archives of Metallurgy and Materials
Archives of Metallurgy and Materials 工程技术-冶金工程
CiteScore
1.20
自引率
0.00%
发文量
0
审稿时长
4.5 months
期刊介绍: The Archives of Metallurgy and Materials is covered in the following Institute for Scientific Information products: SciSearch (the Science Citation Index - Expanded), Research Alert, Materials Science Citation Index, and Current Contents / Engineering, Computing and Technology. Articles published in the Archives of Metallurgy and Materials are also indexed or abstracted by Cambridge Scientific Abstracts.
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