In Situ Production of Locally Reinforced Steel-based Composites with TiC Particulates Using High-frequency Induction Process
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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
- 2006-04-15
著者
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JIANG Q.
Key Laboratory of Automobile Materials of Ministry of Education and Department of Materials Science
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FANG S.
Key Laboratory of Automobile Materials of Ministry of Education and Department of Materials Science
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Jiang Q.
Key Laboratory Of Automobile Materials Of Ministry Of Education And Department Of Materials Science
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Fang S.
Key Laboratory Of Automobile Materials Of Ministry Of Education And Department Of Materials Science
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Zhao Y.
Key Lab. Of Automobile Materials Of Ministry Of Education As Well As Dep. Of Materials Sci. & En
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Cong Y.
Key Laboratory Of Automobile Materials Of Ministry Of Education And Department Of Materials Science
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TU M.
Key Laboratory of Automobile Materials of Ministry of Education and Department of Materials Science
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WANG L.
Key Laboratory of Automobile Materials of Ministry of Education and Department of Materials Science
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Tu M.
Key Laboratory Of Automobile Materials Of Ministry Of Education And Department Of Materials Science
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Zhao Y.
Key Laboratory Of Automobile Materials Of Ministry Of Education And Department Of Materials Science
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Wang L.
Key Laboratory Of Automobile Materials Of Ministry Of Education And Department Of Materials Science And Engineering Jilin University At Nanling Campus
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- Influence of Cu^ on Sulfate-reducing Bacteria Associated with Magnesium Alloy
- Reaction Mechanism of in Situ TiC_p/Fe Composite in (Ti-Fe)-C-Al System
- Effect of a Current Pulse on the Thermal Fatigue Behavior of Cast Hot Work Die Steel
- In Situ Production of Locally Reinforced Steel-based Composites with TiC Particulates Using High-frequency Induction Process
- Effect of Y-Ce Complex Modification on Thermal Fatigue Behavior of High Cr Cast Hot Working Die Steels
- Numerical Simulation of Temperature and Thermal Stress Fields in Cast-hot-working-die Steel under High Density Electropulsing
- Fabrication of in Situ TiSi (Ti_5Si_3, TiSi)/TiC Local Reinforced Steel Matrix Composite via Combustion Synthesis