Kinetics of Silicon Carbide Dissolution in Molten Fe–C Alloys

  • Park, Joon Beom; 
  • Choi, Moo Eob; 
  • Park, Hyeonwoo; 
  • Park, Jiwoo; 
  • Lee, Joonho
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초록

The dissolution rate of SiC in molten Fe–C alloys was investigated at 1673 ~ 1773 K, while the initial carbon concentration varied from approximately 2–3 wt%. The dissolution of SiC in molten Fe–C alloys occurred to reach the carbon-saturation composition. By assuming a first-order reaction, the dissolution rate constant was estimated to decrease from 8.17 × 10−3 to 2.90 × 10−3 cm/s, as the initial carbon content increased from 2 to 3 wt% at 1673 K. When the temperature increased from 1673 to 1773 K with the sample of the initial carbon content of about 2 wt%, the rate constant increased from 8.17 × 10−3 to 18.41 × 10−3 cm/s. The apparent activation energy was estimated at 199.5 kJ/mol. Based on the experimental results, an empirical equation was suggested for the estimation of the SiC dissolution rate constant: lnkcm/s=12.74-1.37×wt%Ct=0-2.40×104/TK, which can be applied to the numerical simulation of the Si-pickup in the FINEX and the Hydrogen-enriched Blast Furnace operations. Graphical Abstract: (Figure presented.) © The Author(s) under exclusive licence to The Korean Institute of Metals and Materials 2024.

키워드

Dissolution; FINEX; Hot metal; Molten iron; Silicon carbide; BLAST-FURNACE; GRAPHITE; SULFUR; IRON; BED
제목
Kinetics of Silicon Carbide Dissolution in Molten Fe–C Alloys
저자
Park, Joon Beom; Choi, Moo Eob; Park, Hyeonwoo; Park, Jiwoo; Lee, Joonho
DOI
10.1007/s12540-024-01856-w
발행일
2024-12
유형
Article
저널명
Metals and Materials International
권
30
호
12
페이지
3537 ~ 3543