Liu Zhongzhu | Graduate School Of Engineering Nagoya Univ.
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概要
関連著者
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Liu Zhongzhu
Graduate School Of Engineering Nagoya Univ.
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LIU Zhongzhu
Graduate School of Engineering, Nagoya University
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Liu Zhongzhu
Graduate School Of Engineering Nagoya University
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Liu Z
Department Of Materials Physics And Energy Engineering Graduate School Of Engineering Nagoya Univers
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Nagai Kotobu
National Institute For Materials Science
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KOBAYASHI Yoshinao
National Institute for Materials Science
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Kobayashi Yuko
National Institute For Materials Science
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Kobayashi Yoshinao
Department Of Metallurgy And Ceramics Science Graduate School Of Science And Engineering Tokyo Insti
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Nagai K
National Institute For Materials Science
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Kuwabara Mamoru
Dept. of Materials, Physics and Energy Eng. Nagoya Univ.
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Kuwabara Mamoru
Shougang Res. Inst. Of Technol.
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Nagai Kotobu
Steel Research Center National Institute For Materials Science
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KUWABARA Mamoru
Graduate School of Engineering, Nagoya University
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KOBAYASHI Yoshinao
Steel Research Center, National Institute for Materials Science
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Kuwabara Mamoru
Graduate School Of Engineering Nagoya University
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Yang J
Department Of Materials Physics And Energy Engineering Graduate School Of Engineering Nagoya Univers
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Yang J
Tsinghua Univ. Beijing Chn
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Yang Jian
Nagoya Univ. Nagoya Jpn
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Yang Jian
Department Of Materials Physics And Energy Engineering Graduate School Of Engineering Nagoya Univers
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LIU Zhongzhu
Steel Research Center, National Institute for Materials Science
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Yang Jian
Graduate School Of Engineering Nagoya University
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Yang J
Department Of Materials Physics And Energy Engineering Graduate School Of Engineering Nagoya Univers
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Nagai Kotobu
National Inst. Materials Sci. Tsukuba Jpn
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YANG Jian
Graduate School of Engineering, Nagoya University
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Nagai Kotobu
National Inst. For Materials Sci.
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Yang Jian
Department of Electronic Engineering, Tsinghua University
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Kuwabara Mamoru
Department of Materials, Physics and Energy Engineering, Gradurate School of Engineering, Nagoya Uni
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SANO Masamichi
Department of Materials, Physics and Energy Engineering, Graduate School of Engineering, Nagoya Univ
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LIU Zhongzhu
Department of Materials, Physics and Energy Engineering, Graduate School of Engineering, Nagoya Univ
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Sano Masamichi
Department Of Materials Physics And Energy Engineering Graduate School Of Engineering Nagoya Univers
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Sano M
School Of Engineering Nagoya University
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Yang Jian
Department Of Cardiology Renmin Hospital Of Wuhan University
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Kuwabara Mamoru
Department Of Materials Physics And Energy Engineering Graduate School Of Engineering Nagoya Univers
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Yang Jian
Department Of Cardiology Daping Hospital The Third Military Medical University
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Yang Jian
Department Of Anesthesiology University Of Florida College Of Medicine
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Asano Takashi
Department Of Molecular Biology And Biotechnology Graduate School Of Pharmaceutical Sciences Chiba U
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Yin Fuxing
National Inst. For Materials Sci.
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Sawada Takashi
Department Of Materials Physics And Energy Engineering Graduate School Of Engineering Nagoya Univers
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Uchida Naoyuki
Nagoya University
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SAKAI Takao
Department of Materials, Physics and Energy Engineering, Graduate School of Engineering, Nagoya Univ
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Asano Takashi
Department Of Electronic Science And Engineering Kyoto University
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Jin Yan
Key Laboratory For Ferrous Metallurgy And Resources Utilization Of Ministry Of Education Wuhan Unive
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TAKATA Ryousuke
Graduate School of Engineering, Nagoya University
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IWATA Yosihisa
Graduate School of Engineering, Nagoya University
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Sakai Takao
Department Of Electrical Engineering Faculty Of Engineering Musashi Institute Of Technology
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Asano Takashi
Department Of Materials Physics And Energy Engineering Graduate School Of Engineering Nagoya Univers
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Takata Ryousuke
Graduate School Of Engineering Nagoya Univ.
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Takata Ryousuke
Graduate School Of Engineering Nagoya University
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Iwata Yosihisa
Graduate School Of Engineering Nagoya University
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Asano Takashi
Department Of Child Neurology Okayama University Medical School
著作論文
- Effect of Nano-Scale Copper Sulfide Precipitation on Mechanical Properties and Microstructure of Rapidly Solidified Steel with Tramp Copper Element
- "In-situ" Observation of the δ/γ Phase Transformation on the Surface of Low Carbon Steel Containing Phosphorus at Various Cooling Rates
- Morphology Control of Copper Sulfide in Strip Casting of Low Carbon Steel
- In Situ Observation of Aluminothermic Reduction of MgO with High Temperature Optical Microscope
- Nucleation of Acicular Ferrite on Sulfide Inclusion during Rapid Solidification of Low Carbon Steel
- Interaction between Phosphorus Micro-Segregation and Sulfide Precipitation in Rapidly Solidified Steel-Utilization of Impurity Elements in Scrap Steel
- Effect of Phosphorus on Sulfide Precipitation in Strip Casting Low Carbon Steel
- Crystallography and Precipitation Kinetics of Copper Sulfide in Strip Casting Low Carbon Steel
- Precipitation of Copper Sulfides and their Effects on Mechanical Properties in Strip Casting Low Carbon Steel
- Effect of Nano-Scale Copper Sulfide Particles on the Yield Strength and Work Hardening Ability in Strip Casting Low Carbon Steel
- Simultaneous Desulfurization and Deoxidation of Molten Steel with in Situ Produced Magnesium Vapor
- Nucleation and Growth of Alumina Inclusion in Early Stages of Deoxidation : Numerical Modeling
- Isothermal Precipitation Behavior of Copper Sulfide in Ultra Low Carbon Steel