OHSASA Kenichi | Graduate School of Engineering, Hokkaido University
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概要
関連著者
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OHSASA Kenichi
Graduate School of Engineering, Hokkaido University
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Ohsasa Kenichi
Graduate School Of Engineering Hokkaido University
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NATSUME Yukinobu
Graduate School of Engineering, Hokkaido University
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Natsume Yukinobu
Graduate School Of Engineering Hokkaido University
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Matsuura Kiyotaka
Graduate School of Engineering, Hokkaido University
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Matsuura Kiyotaka
Graduate School Of Engineering Hokkaido University
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Ohsasa K
Graduate School Of Engineering Hokkaido University
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Ohsasa Kenichi
Graduate School Of Engineering Hokkaidou Univ.
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NATSUME Yukinobu
Kobe Steel Ltd.
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Ohsasa Kenichi
Dep. Of Materials Sci. And Engineering Akita Univ.
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Natsume Yukinobu
Materials Res. Lab. Kobe Steel Ltd.
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NATSUME Yukinobu
Faculty of Engineering, Hokkaido University
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ISHIDA Hitoshi
Kobe Steel Ltd.
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Natsume Y
Hokkaido Univ.
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Ishida Hitoshi
Materials Res. Lab. Kobe Steel Ltd.
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Matsuura Kiyotaka
Div. Of Materials Sci. And Engineering Graduate School Of Engineering Hokkaido Univ.
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Esaka Hisao
Department Of Materials Science & Engineering National Defense Academy
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Esaka H
Department Of Materials Science And Engineering National Defense Academy
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ESAKA Hisao
National Defense Academy, Department of Materials Science and Engineering
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TAMURA Manabu
National Defense Academy, Department of Materials Science and Engineering
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MOMONO Tadashi
Department of Materials Science and Engineering, Muroran Institute of Technology
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Kudoh M
Division Of Materials Science And Engineering Graduate School Of Engineering Hokkaido University
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Kudoh Masayuki
Hokkaido University
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NARITA Toshio
Faculty of Engineering, Hokkaido University
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DAIMON Hiroyasu
National Defense Academy, Dept. of Materials Science & Engineering
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Momono Tadashi
Department Of Materials Science And Engineering Muroran Institute Of Technology
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Esaka H
National Defense Academy Materials Science And Engineering
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Narita T
Hokkaido Univ. Sapporo Jpn
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Narita Toshio
Graduate School Of Engineering Hokkaido University
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HARADA Hiroshi
Nippon Steel Corporation Environment & Process Technology Center
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TAYU Yoshinori
Department of Materials Science and Engineering, Muroran Institute of Technology
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SASAKI Masayoshi
Hokkaido University
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OHNO Munekazu
Graduate School of Engineering, Hokkaido University
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Tayu Yoshinori
Department Of Materials Science And Engineering Muroran Institute Of Technology
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YAMAZAKI Minoru
Hokkaido University
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SATOH Jumpei
Graduate School of Engineering, Hokkaido University
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IGARASHI Kazuaki
Graduate School of Engineering, Hokkaido University
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AKAGIRI Tomohiro
Hokkaido University
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NATSUME Yukinobu
Hokkaido University
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YAMAZAKI Minoru
Graduate School of Engineering, Hokkaido University
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NAKAGAWA Masaki
RICOH Company, Ltd.
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Satoh Jumpei
Graduate School Of Engineering Hokkaido University
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Sasaki Masayoshi
Hokkaido Kushiro Fisheries Experimental Station
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Tamura Manabu
National Defense Academy Dept. Of Materials Science & Engineering
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Daimon Hiroyasu
National Defense Academy Dept. Of Materials Science & Engineering
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Yamazaki Minoru
Graduate School Of Engineering Hokkaido University
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Igarashi Kazuaki
Graduate School Of Engineering Hokkaido University
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Nakagawa Masaki
Ricoh Company Ltd.
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Harada Hiroshi
Nippon Steel Corporation
著作論文
- Growth Direction of Cellular and Dendritic Interface in a Constrained Growth Condition
- Numerical Modeling of the Transient Liquid-phase Diffusion Bonding Process of Al Using Cu Filler Metal
- Effects of Addition of Titanium and Boron on Columnar Austenite Grain in Carbon Steel
- Numerical Model of Solidification Structure Formation in Fe-C Alloy with Peritectic Transformation
- Peritectic Transformation in Low Carbon Steels Containing High Phosphorus Concentration
- Evaluation of Crystal Multiplication at Mold Wall during Solidification of Casting
- Numerical Simulation of Solidification Structure Formation during Continuous Casting in Fe-0.7mass%C Alloy Using Cellular Automaton Method
- Dendrite Growth Model Using Front Tracking Technique with New Growth Algorithm
- Multi-scale Modeling of Solidification Process : Nano-meso scale
- Characterization of Dendrite Morphology for Evaluating Interdendritic Fluidity Based on Phase-field Simulation
- Numerical Simulation of Solidification Structure Formation in High Mn Steel Casting Using Cellular Automaton Method
- Prediction of Casting Structure in Aluminum-base Multi-component Alloys Using Heterogeneous Nucleation Parameter
- Multi-scale Modeling of Solidification Process : Meso-macro scale