Enoki Manabu | Department Of Materials Engineering School Of Engineering The University Of Tokyo
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概要
関連著者
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Enoki Manabu
Department Of Materials Engineering School Of Engineering The University Of Tokyo
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Enoki Manabu
Department Of Engineering The University Of Tokyo
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Ito Kaita
Department Of Materials Engineering School Of Engineering The University Of Tokyo
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Li Yunping
Department Of Materials Engineering School Of Engineering The University Of Tokyo
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Yamawaki Hisashi
National Institute For Materials Science
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Enoki Manabu
Department Of Materials Engineering Graduate School Of Engineering The University Of Tokyo
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SHIWA Mitsuharu
National Institute for Materials Science
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Shiwa Mitsuharu
Non-destructive Evaluation Group National Institute For Materials Science (nims)
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Shiwa Mitsuharu
Nde Center Japan Power Engineering And Inspection Corp.
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Enoki Manabu
Department of Materials Engineering, The University of Tokyo
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Masuda Hiroyuki
Tokyo University of Science
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Shiraiwa Takayuki
Department Of Civil Engineering Kitami Institute Of Technology
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MASUDA Hiroyuki
National Institute for Materials Science
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FURUYA Yoshiyuki
National Institute for Materials Science
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Furuya Yoshiyuki
National Research Institute For Materials Science
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Furuya Yoshiyuki
Materials Information Technology Station National Institute For Materials Science (mits/nims)
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Furuya Yoshiyuki
Kyushu University Department Of Mechanical Science And Engineering
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Masuda H
National Research Institute For Metals
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Masuda Hiroyuki
Department Of Life Science University Of Tokyo
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Shiraiwa Takayuki
Department Of Materials Engineering School Of Engineering The University Of Tokyo
著作論文
- Fatigue Process Evaluation of Ultrasonic Fatigue Testing in High Strength Steel Analyzed by Acoustic Emission and Non-Linear Ultrasonic
- SCC Monitoring of Chloride Droplets on Thin SUS304 Plate Specimens by Analysis of Continuous Recorded AE Waveform
- Deformation and Anelastic Recovery of Pure Magnesium and AZ31B Alloy Investigated by AE
- Recovery Behaviour of Pure Magnesium in Cyclic Compression-Quick Unloading-Recovery Process at Room Temperature Investigated by AE
- Strain-Controlled Fatigue Behavior in Thin Pure Copper Sheet for Smart Stress-Memory Patch