Critical Thermodynamic Evaluation and Optimization of the CaO-MnO-SiO_2 and CaO-MnO-Al_2O_3 Systems
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概要
- 論文の詳細を見る
- 2004-06-15
著者
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Lee Hae-geon
Department Of Materials Science And Engineering Pohang University Of Science And Technology (postech
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KANG Youn-Bae
Department of Materials Science and Engineering, Pohang University of Science and Technology (POSTEC
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JUNG In-Ho
Research Institute of Industrial Science & Technology (RIST)
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DECTEROV Sergei
Centre de Recherche en Calcul Thermochimique (CRCT), Ecole Polytechnique
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PELTON Arthur
Centre de Recherche en Calcul Thermochimique (CRCT), Ecole Polytechnique
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Lee H‐g
Pohang Univ. Sci. And Technol. Pohang Kor
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Lee Hae-geon
Department Of Mining And Metallurgical Engineering The University Of Queensland
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Pelton A
Centre De Recherche En Calcul Thermochimique Ecole Polytechnique De Montreal
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Degterov Sergei
Centre De Recherche En Calcul Thermochimique Ecole Polytechnique De Montreal
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Jung I‐h
Centre De Recherche En Calcul Thermochimique Ecole Polytechnique De Montreal
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Kang Y‐b
Department Of Materials Science And Engineering Pohang University Of Science And Technology (postech
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Kang Youn-bae
Department Of Materials Science And Engineering Pohang University Of Science And Technology (postech
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Pelton Arthur
Centre De Recherche En Calcul Thermochimique (crct) Department Of Chemical Engineering
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Lee Hae-geon
Department Of Materials Science & Engineering Pohang University Of Science & Technology (pos
関連論文
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- Decarburization Kinetics of Fe-C-S Droplets with H_2O
- Effect of System Geometry on Gas Phase Mass Transfer in Electromagnetic Levitation Assembly
- Phase Equilibria and Thermodynamic Properties of the CaO-MnO-Al_2O_3-SiO_2 System by Critical Evaluation, Modeling and Experiment
- Critical Thermodynamic Evaluation and Optimization of the CaO-MnO-SiO_2 and CaO-MnO-Al_2O_3 Systems
- Thermodynamic Modeling of the CaO-MnO-SiO_2-Al_2O_3 System to Predict Inclusion Behavior in Mn/Si Deoxidized Steel
- Thermodynamic Modeling of Gas Solubility In Molten Slags (I) : Carbon and Nitrogen
- Smelting Reduction Mechanism of Fe-O-S Melts Using Solid Carbon
- Sulfur Transfer in Dynamic Conditions of Liquid Steel Drops Falling through Slag Layer