KISHI Shigeo | Fracture Research Institute, Graduate School of Engineering, Tohoku University
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概要
- KISHI Shigeoの詳細を見る
- 同名の論文著者
- Fracture Research Institute, Graduate School of Engineering, Tohoku Universityの論文著者
関連著者
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KOMAZAKI Shin-ichi
Department of Materials Science and Engineering, Muroran Institute of Technology
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KISHI Shigeo
Fracture Research Institute, Graduate School of Engineering, Tohoku University
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Kishi Shigeo
Fracture Research Institute Graduate School Of Engineering Tohoku University
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Komazaki Shinichi
Department Of Materials Science And Engineering Muroran Institute Of Technology
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庄子 哲雄
東北大学
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SUZUKI Koshi
Thermal Power Engineering Department, Tohoku Electric Power Co., Inc.
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Shoji Tetsuo
Fracture And Reliability Research Institute Tohoku University
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HIGUCHI Kojiro
Thermal Power Engineering Department, Tohoku Electric Power Co., Inc.
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Higuchi Kojiro
Thermal Power Engineering Department Tohoku Electric Power Co. Inc.
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Kumazawa Tetsuo
Department Of Machine Intelligence And Systems Engineering Akita Prefectural University
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Shoji Tetsuo
Tohoku University
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Chiba Hideki
Thermal Power Engineering Department Tohoku Electric Power Co. Inc.
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Shoji Tetsuo
Fracture And Reliability Research Institute Tohoku University Graduate School
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KOMAZAKI Shinichi
Department of Materials Science and Engineering, Muroran Institute of Technology
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KOMAZAKI Shin-ichi
Materials Science and Engineering, Muroran Institute of Technology
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KUMAZAWA Tetsuo
Department of Machine Intelligence and Systems Engineering, Akita Prefectural University
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KOMAZAKI Shin-ichi
Muroran Institute of Technology
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KISHI Shigeo
Tohoku University
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KUMAZAWA Tetsuo
Akita Prefectural University
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HIGUCHI Kojiro
Tohoku Electric Power Co., Inc.
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SUZUKI Koshi
Tohoku Electric Power Co., Inc.
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Komazaki Shin-ichi
Materials Science And Engineering Muroran Institute Of Technology
著作論文
- Thermal Aging Embrittlement of Tungsten-Alloyed 9% Cr Ferritic Steels and Electrochemical Evaluation
- Influence of Pre-Aging on Creep Rupture Strength of Tungsten Alloyed 9%Cr Ferritic Steel and Creep Damage Evaluation by Electrochemical Method(Special Issue on Creep and Fatigue at Elevated Temperatures)
- SB-06-5(036) Influence of Pre-Aging on Creep Rupture Strength of Tungsten Alloyed 9%Cr Ferritic Steel and Creep Damage Evaluation by Electrochemical Method(Changes in Microstructure 1)