Carbon Enrichment in Retained Austenite Films in Low Carbon Lath Martensite Steel
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概要
- 論文の詳細を見る
- 社団法人 日本鉄鋼協会の論文
- 2011-07-15
著者
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Ohba Takuya
Department Of Materials Science And Engineering Teikyo University
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Morito Shigekazu
Department Of Material Science Shimane University
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Hono Kazuhiro
Magnetic Materials Center National Institute For Materials Science
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OH-ISHI Keiichiro
Magnetic Materials Center, National Institute for Materials Science
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Oh-ishi Keiichiro
Magnetic Materials Center National Institute For Materials Science
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Morito Shigekazu
Department Of Materials Science And Engineering Shimane University
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Ohba Takuya
Department Of Materials Science And Engineering Shimane University
関連論文
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- X-ray Diffraction Studies of Fe-N Bulk-Processed in a Magnetic Field Using Synchrotron Radiation
- Effect of Magnetic Field on γ→α' Martensitic Transformation and Magnetization of α' and α' Iron-Nitrides
- Experimental Consideration of Multistage Martensitic Transformation and Precipitation Behavior in Aged Ni-Rich Ti-Ni Shape Memory Alloys
- Structural Study of R-Phase in Ti-50.23 at. %Ni and Ti-47.75 at. %Ni-1.50 at. %Fe Alloys
- Phonon Softening in Au-49.5 at%Cd Alloy
- Characteristics of Retained Austenite in Quenched High C-High Cr Alloy Steels
- Separation of Two Subsystems in Nd_Fe_B_ Composite Crystal Utilizing Synchrotron Radiation
- Shape-Strain Analysis of Martensite in Ceria-Doped Zirconia
- The Origin of Midrib in Lenticular Martensite
- Phonon Softening and Time Dependence of Elastic Peak Appearing Prior to the Martensitic Transformation in Au-47.5 at % Cd
- Microstructure and Electrical Property of Sputtered Cr-Mo Thin Films
- Structure Parameters of the Au-49.5at%Cd Martensite at Various Temperatures Approaching the Reverse Transformation Temperature A_s
- Rietveld Analysis on Hydrogenated TiNi Shape Memory Alloy and Multiple-Stage Transformation
- Effect of Initial Structure on Microstructure Change during Cold Rolling in an Ultra-low Carbon Steel
- Carbon Enrichment in Retained Austenite Films in Low Carbon Lath Martensite Steel
- Variant Selection of Low Carbon High Alloy Steel in an Austenite Grain during Martensite Transformation