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Effect of CaO/Al2O3 Ratio of Ladle Slag on Formation Behavior of Inclusions in Mn and V Alloyed Steel

Authors
Shin, Jae HongPark, Joo Hyun
Issue Date
Dec-2017
Publisher
Nippon Tekko Kyokai/Iron and Steel Institute of Japan
Keywords
Mn-V-alloyed steel; non-metallic inclusions; secondary refining; ladle slag; refractory-slag-metal-inclusion (ReSMI) multiphase reactions simulation; MgAl2O4 spinel
Citation
ISIJ International, v.58, no.1, pp 88 - 97
Pages
10
Indexed
SCI
SCIE
SCOPUS
Journal Title
ISIJ International
Volume
58
Number
1
Start Page
88
End Page
97
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/7985
DOI
10.2355/isijinternational.ISIJINT-2017-456
ISSN
0915-1559
1347-5460
Abstract
The effect of CaO/Al2O3 (=C/A) ratio of the ladle slag on the formation behavior of non-metallic inclusions in the Mn-V-alloyed steel was investigated using both the experimental method and refractory-slag metal-inclusion (ReSMI) multiphase reactions simulation. The formation behavior of inclusion was strongly affected by the activity of MgO in the initial slag at the early stage of the reaction. However, since the MgO activity converged to unity due to MgO dissolution from refractory to slag during the reaction, the formation behavior of inclusion was affected by the activity of CaO and Al2O3 in the slag rather than that of MgO at the final stage of the reaction. From the experimental results and ReSMI multiphase reaction model, the formation behavior of inclusions could be divided into three cases according to the C/A ratio of the slag as follows; 1) C/A < 1.5; Alumina -> Spinel -> Spinel + Liquid oxide, 2) 1.5 < C/A < 2.5; Alumina -> Spinel -> Liquid oxide, 3) C/A > 3.0; Alumina -> Spinel -> Liquid oxide Magnesia. Therefore, it was concluded that the C/A ratio of the ladle slag should be controlled from about 1.5 to 2.5 in order to suppress the harmful solid inclusions such as spinel during secondary refining processes.
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ERICA 첨단융합대학 (ERICA 신소재·반도체공학전공)
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