Effect of Temperature and Strain Amplitude on Dislocation Structure of M963 Superalloy during High-Temperature Low Cycle Fatigue
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概要
- 論文の詳細を見る
- 2006-01-20
著者
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HE Lizi
Department of Superalloys, Institute of Metal Research, Chinese Academy of Sciences
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ZHENG Qi
Department of Superalloys, Institute of Metal Research, Chinese Academy of Sciences
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SUN Xiaofeng
Department of Superalloys, Institute of Metal Research, Chinese Academy of Sciences
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GUAN Hengrong
Department of Superalloys, Institute of Metal Research, Chinese Academy of Sciences
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HU Zhuangqi
Department of Superalloys, Institute of Metal Research, Chinese Academy of Sciences
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TIEU Kiet
School of Mechanical, Materials and Mechatronics Engineering, University of Wollongong
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LU Cheng
School of Mechanical, Materials and Mechatronics Engineering, University of Wollongong
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ZHU Hongtao
School of Mechanical, Materials and Mechatronics Engineering, University of Wollongong
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He Lizi
Department Of Superalloys Institute Of Metal Research Chinese Academy Of Sciences
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Lu Cheng
School Of Mechanical Materials And Mechatronics Engineering University Of Wollongong
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Zheng Qi
Department Of Superalloys Institute Of Metal Research Chinese Academy Of Sciences
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Zheng Qi
Department Of Biology Tianjin Normal University
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Tieu Kiet
School Of Mechanical Materials And Mechatronics Engineering University Of Wollongong
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Hu Zhuangqi
Department Of Materials Science And Engineering Tsinghua University
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Zhu Hongtao
School Of Energy And Power Engineering Central South University
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Zhu Hongtao
School Of Mechanical Materials And Mechatronics Engineering University Of Wollongong
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Sun Xiaofeng
Department Of Mathematics Lehigh University
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Sun Xiaofeng
Department Of Superalloys Institute Of Metal Research Chinese Academy Of Sciences
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Guan Hengrong
Department Of Superalloys Institute Of Metal Research Chinese Academy Of Sciences
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Zheng Qi
Department Of Biochemistry And Molecular Biology College Of Life Science Nanjing Agricultural Univer
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- Effect of Temperature and Strain Amplitude on Dislocation Structure of M963 Superalloy during High-Temperature Low Cycle Fatigue
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