Effect of Cooling Rate on Microstructure and Fracture Characteristics of β-Rich α+β Type Ti-4.5Al-3V-2Mo-2Fe Alloy
スポンサーリンク
概要
- 論文の詳細を見る
- Japan Institute of Metalsの論文
- 2001-07-20
著者
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Ouchi C
Department Of Materials Processing Tohoku University
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Ouchi Chiaki
Tohoku University
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Ouchi Chiaki
Materials And Processing Research Center Nkk Corporation
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Ouchi Chiaki
Department Of Metallurgy Tohoku University
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Ouchi Chiaki
Department Of Materials Processing Graduate School Of Engineering Tohoku University
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EYLON Daniel
Graduate Materials Engineering, University of Dayton
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Niinomi Mitsuo
Department Of Biomaterials Science Institute For Materials Research Tohoku University
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Eylon D.
Graduate Materials Engineering University Of Dayton
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FUKUNAGA Kei-ichi
Department of Production Systems Engineering, Tyohashi University of Technology
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FUJISHIRO Shiro
Formar Asian Office of Aerospace R & D, US Air Force Office of Scientific Research
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Fujishiro S.
Asian Office Of Aerospace R&d Usafosr
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Fukunaga Kei-ichi
Department Of Production Systems Engineering Toyohashi University Of Technology
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Fukunaga Kei-ichi
Department Of Production Systems Engineering Tyohashi University Of Technology
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Eylon Daniel
Graduate Materials Engineering KL-407, University of Dayton
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- PREFACE
- Biologically and Mechanically Biocompatible Titanium Alloys
- 軽金属の科学と技術--21世紀への展望 Advances in Titanium Technology--an Overview〔含 英語原文〕
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- Microstructure Control of Titanium Aluminide Powder Compacts by Thermochemical Processing
- Recovery of Calcium from BF Slag and Synthesis of Zeolite A Using Its Residue
- Toughness and Strength of Microstructurally Controlled Titanium Alloys.