Yamaoka Hideyuki | Corporate R&d Laboratories Sumitomo Metal Industries Ltd.
スポンサーリンク
概要
関連著者
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Yamaoka Hideyuki
Corporate R&d Laboratories Sumitomo Metal Industries Ltd.
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NAKANO Kaoru
Corporate Research & Development Laboratories, SUMITOMO METAL INDUSTRIES, LTD.
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SUYAMA Shinichi
Corporate R&D Laboratories, Sumitomo Metal Industries, Ltd.
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Suyama Shinichi
Corporate R&d Laboratories Sumitomo Metal Industries Ltd.
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NAKANO Kaoru
Corporate R&D Labs, Sumitomo Metal Industries Ltd.
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KAWAGUCHI Takazo
Corporate Research & Development Laboratories, Sumitomo Metal Industries, Ltd.
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TAKATANI Kouji
Corporate Research & Development Laboratories, Sumitomo Metal Industries, Ltd.
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Takatani Kouji
Corporate Research & Development Laboratories Sumitomo Metal Industries Ltd.
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Takatani Kouji
Corporate Res. And Dev. Laboratories Sumitomo Metal Industries Ltd.
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NOGAMI Hiroshi
Corporate Research & Development Laboratories, Sumitomo Metal Industries, Ltd.
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YAMAOKA Hideyuki
Corporate Research & Development Laboratories, Sumitomo Metal Industries, Ltd.
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Yamaoka H
Corporate Research & Development Laboratories Sumitomo Metal Industries Ltd.
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Yamaoka Hideyuki
Corporate R&d Labs
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Yamaoka Hideyuki
Corporate Research And Development Laboratories Sumitomo Metal Industries Ltd.
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Nogami Hiroshi
Corporate Research & Development Laboratories Sumitomo Metal Industries Ltd.
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Nakano K
Corporate Research And Development Laboratories Sumitomo Metal Industries Ltd.
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Nakano Kaoru
Corporate Research And Development Laboratories Sumitomo Metal Industries Ltd.
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Hoshi Masahiko
Sumitomo Metal Industries Ltd.
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KAMIJO Chikashi
Sumitomo Metal Industries, Ltd.
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KAWAGUCHI Takazo
Sumitomo Metal Industries, Ltd.
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KAMEI Yasuo
Head office
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Kamijo Chikashi
Sumitomo Metal Industries Ltd.
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Kawaguchi Takazo
Sumitomo Metal Industries Ltd.
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Kawaguchi T
Sumitomo Metal Industries Ltd.
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Kawaguchi Takazo
Corporate R&d Laboratories Sumitomo Metal Industries Ltd.
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Suyama S
Corporate Research And Development Laboratories Sumitomo Metal Industries Ltd.
著作論文
- Raceway Design for the Innovative Blast Furnace
- A Theoretical Model for the Contact Phenomenon of Coke Particle Accompanied by the Compressive Breakage at the Contact Plane
- Production of direct reduced iron by a sheet material inserting metallization method
- Development of a 3-D Sinter Process Mathematical Simulation Model
- Prediction Model of Coke Strength after Gasification Reaction
- Development of a Size Degradation Model of Coke Particles at the Drum Test and inside the Blast Furnace