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Numerical investigation on melting characteristics of scrap with heat and mass transfers in molten steel

Authors :
Yao, Cong-lin
Zhu, Hong-chun
Jiang, Zhou-hua
Li, Hua-bing
Lu, Hong-bin
Zhang, Shu-cai
Feng, Hao
Source :
Journal of Iron and Steel Research International; June 2023, Vol. 30 Issue: 6 p1090-1100, 11p
Publication Year :
2023

Abstract

Herein, a numerical simulation with simultaneous heat and mass transfers is carried out to investigate the scrap melting characteristics in molten steel after model verification by published experimental data. The numerical results show that the scrap melting stages consist of the frozen shell formation stage, the frozen shell remelting stage and the parent scrap melting stage. The heat transfer coefficient and the carbon mass transfer coefficient between the scrap and the molten steel are, respectively, in the range of 4209–6249 W m−2K−1and 6.4 × 10–5m s−1. Meanwhile, the effects of process parameters on scrap melting time were studied. An increase in the scrap preheating temperature Tscrap, the molten steel temperature Tsteeland the carbon content of molten steel Csteel, and a decrease in the scrap thickness dscrap, can reduce the frozen shell existence time, as well as the scrap melting time. On this basis, a quantitative relationship between the aforementioned process parameters and the scrap melting time is obtained to predict the formation of frozen shell (Ψ), which provides process guidance for shortening the scrap melting time. The quantitative relationship is expressed as: lnΨ=311.32-2.34lnTscrap-39.99lnTsteel-0.08lndscrap-0.57lnCsteel.

Details

Language :
English
ISSN :
1006706X and 22103988
Volume :
30
Issue :
6
Database :
Supplemental Index
Journal :
Journal of Iron and Steel Research International
Publication Type :
Periodical
Accession number :
ejs61242688
Full Text :
https://doi.org/10.1007/s42243-022-00864-7