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Morphology and Precipitation Kinetics of MnS in Low-Carbon Steel During Thin Slab Continuous Casting Process
by
YU Hao KANG Yong-lin ZHAO Zheng-zhi SUN Hao
in
Carbon content
/ compact strip production
/ Continuous casting
/ CSP
/ Grain boundaries
/ Low carbon steel
/ Low carbon steels
/ Manganese
/ MnS
/ Morphology
/ Nucleation
/ Precipitates
/ precipitation kinetics
/ Slab casting
/ Strip casting
/ TEM
/ thin slab continuous casting
/ 低碳钢
/ 沉淀动力学
/ 紧凑式带钢生产
/ 薄板坯连铸
2006
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Morphology and Precipitation Kinetics of MnS in Low-Carbon Steel During Thin Slab Continuous Casting Process
by
YU Hao KANG Yong-lin ZHAO Zheng-zhi SUN Hao
in
Carbon content
/ compact strip production
/ Continuous casting
/ CSP
/ Grain boundaries
/ Low carbon steel
/ Low carbon steels
/ Manganese
/ MnS
/ Morphology
/ Nucleation
/ Precipitates
/ precipitation kinetics
/ Slab casting
/ Strip casting
/ TEM
/ thin slab continuous casting
/ 低碳钢
/ 沉淀动力学
/ 紧凑式带钢生产
/ 薄板坯连铸
2006
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Morphology and Precipitation Kinetics of MnS in Low-Carbon Steel During Thin Slab Continuous Casting Process
by
YU Hao KANG Yong-lin ZHAO Zheng-zhi SUN Hao
in
Carbon content
/ compact strip production
/ Continuous casting
/ CSP
/ Grain boundaries
/ Low carbon steel
/ Low carbon steels
/ Manganese
/ MnS
/ Morphology
/ Nucleation
/ Precipitates
/ precipitation kinetics
/ Slab casting
/ Strip casting
/ TEM
/ thin slab continuous casting
/ 低碳钢
/ 沉淀动力学
/ 紧凑式带钢生产
/ 薄板坯连铸
2006
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Morphology and Precipitation Kinetics of MnS in Low-Carbon Steel During Thin Slab Continuous Casting Process
Journal Article
Morphology and Precipitation Kinetics of MnS in Low-Carbon Steel During Thin Slab Continuous Casting Process
2006
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Overview
The morphology of manganese sulfide formed during thin slab continuous casting process in low-carbon steel produced by compact strip production (CSP) technique was investigated. Using transmission electron microscopy analysis, it was seen that a majority of manganese sulfides precipitated at austenite grain boundaries, the morphologies of which were spherical or close to the spherical shape and the size of MnS precipitates ranged from 30 nm to 100 nm. A mathematical model of the manganese sulfide precipitation in this process was developed based on classical nucleation theory. Under the given conditions, the starting and finishing precipitation temperatures of MnS in the continuous casting thin slab of the studied low-carbon steel are 1 189 ℃ and 1 171 ℃, respectively, and the average diameter of MnS precipitates is about 48 nm within this precipitation temperature range. The influences of chemical components and thermo-mechanical processing conditions on the precipitation behavior of MnS in the same process were also discussed.
Publisher
Elsevier Ltd,Springer Nature B.V,School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, China%Jinan Iron and Steel Technical Center, Jinan Iron and Steel Group Co, Jinan 250101, Shandong, China
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