Nagai K | National Institute For Materials Science
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概要
関連著者
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Nagai K
National Institute For Materials Science
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Nagai Kotobu
National Institute For Materials Science
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Nagai Kotobu
National Inst. For Materials Sci.
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Nagai K
Nims
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Nagai Kotobu
Steel Research Center National Institute For Materials Science
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LIU Zhongzhu
Graduate School of Engineering, Nagoya University
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KOBAYASHI Yoshinao
National Institute for Materials Science
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Liu Zhongzhu
Graduate School Of Engineering Nagoya University
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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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Liu Z
Department Of Materials Physics And Energy Engineering Graduate School Of Engineering Nagoya Univers
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Liu Zhongzhu
Graduate School Of Engineering Nagoya Univ.
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Yin Fuxing
National Institute For Materials Science
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KOBAYASHI Yoshinao
Steel Research Center, National Institute for Materials Science
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Yin F
National Inst. For Materials Sci. Tsukuba Jpn
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Yin Fuxing
Steel Research Center National Institute For Materials Science
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Yin F
Faculty Of Science Konan University
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Nagai Kotobu
National Inst. Materials Sci. Tsukuba Jpn
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Torizuka S
National Inst. For Materials Sci. Tsukuba Jpn
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Torizuka Shiro
National Institute For Materials Science Nims
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Torizuka Shiro
Frontier Research Center For Structural Materials Nrim
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Torizuka Shiro
National Research Institute For Metals Frontier Research Center For Structural Materials Nrim
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Kuwabara Mamoru
Dept. of Materials, Physics and Energy Eng. Nagoya Univ.
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KUWABARA Mamoru
Graduate School of Engineering, Nagoya University
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LIU Zhongzhu
Steel Research Center, National Institute for Materials Science
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TORIZUKA Shiro
National Institute for Materials Science
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Torizuka Shiro
National Inst. For Materials Sci.
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Torizuka Shiro
National Institute Of Materials Science
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Torizuka Shiro
National Research Institute For Metals
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Kuwabara Mamoru
Shougang Res. Inst. Of Technol.
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Kuwabara Mamoru
Graduate School Of Engineering Nagoya University
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Yin Fuxing
National Inst. For Materials Sci.
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Inoue T
National Inst. Metals Sci.
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Inoue Tadanobu
Nims
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Inoue Tadanobu
Steel Research Center National Institute For Materials Science
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Inoue Tadanobu
Innovative Materials Engineering Laboratory National Institute For Materials Science
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Inoue Tadanobu
Innovative Materials Engineering Lab. National Institute For Materials Science
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Inoue Tadanobu
National Institute For Metals Science
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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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Torizuka S
National Institute For Materials Science
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YANG Jian
Graduate School of Engineering, Nagoya University
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Inoue Tadanobu
Metallurgical Processing Group Steel Research Center National Institute For Materials Science
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Umezawa O
Department Of Mechanical Engineering And Materials Science Yokohama National University
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Yang Jian
Graduate School Of Engineering Nagoya University
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Kobayashi Yoshinao
Materials Reliability Center National Institute For Materials Science
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SAKURAI Atsuko
National Institute for Materials Science
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Inoue T
National Institute For Materials Sciense
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Yoshida Naotsugu
Corporate R&d Laboratories Sumitomo Metal Industries Ltd.
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Yang J
Department Of Materials Physics And Energy Engineering Graduate School Of Engineering Nagoya Univers
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Cho J‐y
School Of Materials Science And Engineering Seoul National University
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Torizuka S.
National Institute For Materials Science
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Cho J‐y
Department Of Agricultural Chemistry
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Cho Jae-young
Steel Research Center National Institute For Materials Science
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INOUE Tadanobu
Steel Research Center, National Institute for Materials Science
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Cho Jae-young
School Of Materials Science And Engineering Seoul National University
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Inoue Tadanobu
National Institute For Materials Science
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YOSHIDA Naotsugu
Steel Research Center, National Institute for Materials Science
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Sakaguchi Takuya
Material Engineering Div. Iii Toyota Motor Corporation
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HIGUCHI Takashi
National Institute for Materials Science
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Tomota Y
Faculty Of Engineering Ibaraki University
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Choi Jin-kyu
Department Of Precision Machinery Systems Tokyo Institute Of Technology
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XU Pingguang
Steel Research Center, National Institute for Materials Science
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TSUCHIDA Noriyuki
Domestic Research Fellow, Japan Society for the Promotion of Science
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Xu Pingguang
Steel Research Center National Institute For Materials Science
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Higuchi T
National Institute For Materials Science
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Hanamura T
National Institute For Materials Science
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Yoshida Naotsugu
Steel Research Center National Institute For Materials Science
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Tsuchida N
Domestic Research Fellow Japan Society For The Promotion Of Science
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Hanamura T
National Inst. For Materials Sci. Ibaraki Jpn
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Yang K
Inst. Metal Res. Chinese Acad. Sci. Shenyang
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Yang Ke
Institute Of Physics Chinese Academy Of Sciences
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HIRATA Kazuto
National Institute for Materials Science
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Hirata Kouichi
National Metrology Institute Of Japan National Institute Of Advanced Industrial Science And Technolo
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Hirata Kouichi
National Institute For Materials Science
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Nagai K
National Inst. For Materials Sci. Tsukuba Jpn
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WATANABE Kenji
National Institute for Materials Science
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Umezawa Osamu
Department Of Mechanical Engineering And Materials Science Yokohama National University
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Umezawa Osamu
National Institute For Materials Science
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NAGAI Kotobu
Materials Engineering Laboratory, National Institute for Materials Science
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HANAMURA Toshihiro
National Institute for Materials Science
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YOSHIDA Naotsugu
National Institute for Materials Science
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ZHAO Ming-Chun
Steel Research Center, National Institute for Materials Science
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HANAMURA Toshihiro
Steel Research Center, National Institute for Materials Science
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QIU Hai
Steel Research Center, National Institute for Materials Science
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SHAN Yi-Yin
Institute of Metal Research, Chinese Academy of Sciences
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SAKUMA Nobuo
National Institute for Materials Science
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HANAMURA T
National Research Institute for Metals
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HIGUCHI T
National Research Institute for Metals
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YAMASHITA T
National Research Institute for Metals
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UMEZAWA O
National Research Institute for Metals
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INOUE Toshihiro
National Research Institute for Metals
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TSUCHIDA N
Frontier Research Center for Structural Materials, National Reserach Institute for Metals
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UMEZAWA O
Frontier Research Center for Structural Materials, National Reserach Institute for Metals
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NAGAI K
Frontier Research Center for Structural Materials, National Reserach Institute for Metals
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TOMOTA Y
Frontier Research Center for Structural Materials, National Reserach Institute for Metals
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NAGAI K.
National Institute for Materials Science
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HANAMURA T.
National Research Inst. for Metals Frontier Research Center for Structural Materials, NRIM
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Shan Yi-yin
Institute Of Metal Research Chinese Academy Of Sciences
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Qiu H
Research Center For Advanced Science And Technology The University Of Tokyo
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Qiu H
Steel Research Center National Institute For Materials Science
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Qiu Hai
Steel Research Center National Institute For Material Science
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Yang Ke
Institute Of Metal Research Chinese Academy Of Sciences
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Zhao Ming-chun
Steel Research Center National Institute For Materials Science
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Tomota Yo
Faculty Of Engineering Ibaraki University
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Umezawa Osamu
Department Of Materials Science And Engineering Faculty Of Engineering Yokohama National University
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IWASAKI Satoshi
Materials Manufacturing and Engineering Station, National Institute for Materials Science
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NAKAZATO Koji
Materials Manufacturing and Engineering Station, National Institute for Materials Science
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HIBARU Takaaki
Materials Manufacturing and Engineering Station, National Institute for Materials Science
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KURODA Shuuji
Materials Manufacturing and Engineering Station, National Institute for Materials Science
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SAKUMA Nobuo
Materials Manufacturing and Engineering Station, National Institute for Materials Science
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YOSHIDA Naotsugu
Corporate R&D Laboratories, Sumitomo Metal Industries Ltd.
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ZHONG Yong
National Institute for Materials Science
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TIAN Qingchao
Technology Center, Baoshan Iron and Steel Co. Ltd.
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YIN Fuxing
物材機構(NIMS)
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SAKURAI Atsuko
物材機構(NIMS)
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NAGAI Kotobu
物材機構(NIMS)
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Kuroda Shuuji
Materials Manufacturing And Engineering Station National Institute For Materials Science
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Nakazato Koji
Materials Manufacturing And Engineering Station National Institute For Materials Science
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Tian Qingchao
Technology Center Baoshan Iron And Steel Co. Ltd.
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Hibaru Takaaki
Materials Manufacturing And Engineering Station National Institute For Materials Science
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Iwasaki Satoshi
Materials Manufacturing And Engineering Station National Inst. For Materials Sci.
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KAWAHARA Kohji
National Institute for Materials Science
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Sakuma Nobuo
Materials Manufacturing And Engineering Station National Institute For Materials Science
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Nagai K
National Inst. Advanced Industrial Technol. And Sci. Ibaraki Jpn
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OTAGUCHI Minoru
National Institute for Materials Science
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Shinohara Hideki
National Institute For Materials Science
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Yamashita T
National Astronomical Observatory
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YIN F.
National Institute for Materials Science
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SALVATORI Ilaria
Centro Sviluppo Materiali
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Umezawa Osamu
National Research Institute For Metals Frontier Res. Center For Structural Mater. Nat'l Res. In
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Yamamoto S
National Institute For Materials Science Nims
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Otaguchi Minoru
National Institute For Materials Science Nims
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YAMAMOTO Shigeo
National Institute for Materials Science, NIMS
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Torizaka Shiro
National Institute Of Materials Science
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Iwasaki Satoshi
Materials Manufacturing And Engineering Station National Institute For Materials Science
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Torizuka S
National Inst. Materials Sci. Ibaraki Jpn
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Watanabe Kenji
National Inst. Materials Sci. (nims) Ibaraki Jpn
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Yamamoto Shigeo
National Institute For Materials Science Nims
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NAGAI Kotobu
NIMS-SRC
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Watanabe K
National Institute For Materials Science
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Hanamura T.
National Institute For Materials Science
著作論文
- Effect of Shear Deformation on Microstructural Evolution of Ni-30Fe Alloy during Hot Deformation
- Effect of Initial Grain Orientation on Evolution of Deformed Microstructure in Hot Compressed Ni-30Fe Alloy
- 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
- Thermodynamics of Phosphorus in the MnO-SiO_2-Fe_tO System
- ニアネットシェイプCCにおける鋳造γ粒径の予測
- Difference in the Role of Non-quench Aging on Mechanical Properties between Acicular Ferrite and Ferrite-Pearlite Pipeline Steels
- Continuously cast 0.1wt% C steels with high phosphorus : microstructural design and control
- Textures introduced by high-cross-angle cross rolling
- Relationship between Flow Stress and True Plastic Strain : Description by Work Hardening Rate as a function of True Stress
- Evolution of Columnar γ Grain in Low Carbon Steel and Its Refinement by Additional Elements in Thin Slab Casting Simulator
- 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
- EBSD Characterization of the Twinning Microstructure in a High-Damping Mn-Cu Alloy
- The Twinning Microstructure and Damping Behavior in Mn-30Cu (at%) Alloy
- 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
- The Thickness Gradient of Microstructure and Mechanical Property in an As-cast Thin Steel Slab
- EBSD結晶粒径分布測定結果の検証
- Effect of Nano-Scale Copper Sulfide Particles on the Yield Strength and Work Hardening Ability in Strip Casting Low Carbon Steel
- Plastic Anisotropy of Strip-Cast Low-Carbon Steels
- Compromise between environmental burdens and performance in strengthening steels
- 超微細フェライト粒組織形成におけるオーステナイト粒径の重要度
- The Damping Behavior of Ni Added Mn-Cu Damping Alloys
- Ultrafine grain structure through dynamic recrystallization for SUS 304 stainless steel
- 超細粒鋼の被削性について
- Numerical analysis of deformation behavior for over-matched weld joints
- Influence of Interstitial Content on Low Temperature Fatigue Fracture (High - cycle Fatigue Behavior of Extra - low Carbon Steel - 1)
- 超微細粒鋼の展望と課題-STX-21を例として-
- パンキーキγ粒厚さと生成する粒界α厚さの関係
- 大ひずみ加工下で均一・微細フェライト粒組織形成に必要なひずみ
- 超微細フェライト粒組織形成におけるオーステナイト粒径の重要度
- 超微細フェライト粒組織形成におけるオーステナイト粒径の重要度
- Ductile-Brittle Transition Temperature of Ultrafine Ferrite/Cementite Microstructure in a Low Carbon Steel Controlled by Effective Grain Size
- NIMSにおけるリサイクル鉄を用いた材料開発プロジェクト
- 変形γから生成するフェライトの大きさを支配するパンケーキγの厚さ
- Concepts and attempts for ULTRA STEELs at NIMS
- Utilization of Impurities for Ultrafine Grain Steels