FANG Hong-Sheng | Department of Materials Science and Engineering, Tsinghua University
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概要
- Fang Hong-Shengの詳細を見る
- 同名の論文著者
- Department of Materials Science and Engineering, Tsinghua Universityの論文著者
関連著者
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FANG Hong-Sheng
Department of Materials Science and Engineering, Tsinghua University
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Fang H‐s
Department Of Materials Science And Engineering Tsinghua University
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Fang Hong-sheng
Department Of Materials Science And Engineering Tsinghua University
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Yang Z‐g
Department Of Materials Science And Engineering Tsinghua University
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Yang Z‐g
Tsinghua Univ. Chn
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Yang Zhi-gang
Department Of Materials Science And Engineering Tsinghua University
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BAI Bing-Zhe
Department of Materials Science and Engineering, Tsinghua University
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Bai Bing-zhe
Department Of Materials Science And Engineering Tsinghua University
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Yin J
Shanghai No. 5 Steel
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BO Xiang-Zheng
Department of Materials Science and Engineering, Tsinghua University
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WANG Jia-Jun
Department of Materials Science and Engineering, Tsinghua University
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Wang J‐j
Department Of Materials Science And Engineering Tsinghua University
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Yang Fu-bao
Department Of Materials Science And Engineering Tsinghua University
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Bo Xiang-zheng
Department Of Materials Science And Engineering Tsinghua University
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Wang Jia-jun
Department Of Materials Science And Engineering Tsinghua University
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YIN Jiang
Shanghai No. 5 Steel
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Huang Wei-gang
Department Of Materials Science And Engineering Tsinghua University
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Chang Kai-di
Department Of Materials Science And Engineering Tsinghua University
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GU Jia-Lin
Department of Materials Science and Engineering, Tsinghua University
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ZHANG Wen-Zheng
Department of Materials Science and Engineering, Tsinghua University
著作論文
- Surface Relief Accompanying Bainitic Transformation in an Fe-C-Si-Mn Alloy Studied by Scanning Tunneling Microscopy
- A Model for Surface Reliefs Formation in Bainite Transformation Mechanism
- Recent Development of Mn Series Air-cooled Bainitic Steels (Part 2)
- Recent Development of Mn Series Air-cooled Bainitic Steels (Part 1)
- Effects of Heat-treatment Process of a Novel Bainite/Martensite Dual-phase High Strength Steel on lts Susceptibility to Hydrogen Embrittlement