Assessment of Strain Energy by Measuring Dislocation Density in Copper and Aluminium Prepared by ECAP and ARB
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概要
- 論文の詳細を見る
- Japan Institute of Metalsの論文
- 2008-01-01
著者
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Murata Yoshinori
Department Of Geriatric Dentistry Osaka Dental University
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MORINAGA Masahiko
Department of Materials Science and Engineering, Graduate School of Engineering, Nagoya University
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Murata Yoshinori
Department Of Applied Biological Chemistry Faculty Of Agriculture Osaka Prefecture University:(prese
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Morinaga Masahiko
Department Of Physics Materials And Energy Engineering Graduate School Of Engineering Nagoya Univers
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Morinaga Masahiko
Department Of Materals Science And Engineering Graduate School Of Engineering Nagoya University
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Murata Yoshinori
Department Of Physics Materials And Energy Engineering Graduate School Of Engineering Nagoya Univers
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NAKAYA Ippei
Department of Physics, Materials and Energy Engineering, Graduate School of Engineering, Nagoya Univ
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Nakaya Ippei
Department Of Physics Materials And Energy Engineering Graduate School Of Engineering Nagoya Univers
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- Evaluation of Dislocation Density in a Mg-Al-Mn-Ca Alloy Determined by X-ray Diffractometry and Transmission Electron Microscopy
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- Assessment of Strain Energy by Measuring Dislocation Density in Copper and Aluminium Prepared by ECAP and ARB
- PREFACE
- Prospect of Nickel-based Superalloys with Low Cr and High Re Contents
- Mass Loss of Cr_2O_3 during Exposure to Steam at 923K and Its Suppression by Sulfur Doping
- Assessment of Creep Rupture Life of Die-Cast Mg-Al-Mn Alloy
- Dislocation Density of Lath Martensite in 10Cr-5W Heat-Resistant Steels
- Prediction of the Maximum Dislocation Density in Lath Martensitic Steel by Elasto-Plastic Phase-Field Method
- Creep Properties of Binary Mg-Ca Cast Alloys at 473K
- Phase Field Simulation of the Sub-Block Microstructure in Lath Martensitic Steels
- Equilibrium phase diagram of Fe-Cr-Mn ternary system.
- Diffusion of Al and Al-Substituting Elements in Ni_3Al at Elevated Temperatures
- Remarkable Improvement in Steam Oxidation Resistance Due to the Presence of Sulfur in High Cr Ferrtic Steels.