Recent Research on the Deformation Behavior of Particle Reinforced Magnesium Matrix Composite: A Review
来源期刊:Acta Metallurgica Sinica2019年第4期
论文作者:Kun-Kun Deng Cui-Ju Wang Kai-Bo Nie Xiao-Jun Wang
文章页码:413 - 425
摘 要:Particle reinforced magnesium matrix composite(PMMC) possesses the merits of high specific strength, high specific modulus, better dimensional stability, good wear resistance and lower production cost, which is thought as a promising material in the field of aerospace, automobile, electronic communication, etc. To eliminate the casting defect, the PMMC is usually experienced hot deformation process. The present paper mainly focuses on the deformation behavior of PMMCs. First, the development of PMMCs based on particle size is introduced. Then, the hot deformation technology and deformation mechanism of PMMCs at elevated temperature are given and analyzed, respectively. After reviewing the dynamic recrystallization and texture of PMMCs, its future development is suggested based on the current research progress.
Kun-Kun Deng1,Cui-Ju Wang1,Kai-Bo Nie1,Xiao-Jun Wang2
1. Shanxi Key Laboratory of Advanced Magnesium-Based Materials,College of Materials Science and Engineering ,Taiyuan University of Technology2. School of Materials Science and Engineering ,Harbin Institute of Technology
摘 要:Particle reinforced magnesium matrix composite(PMMC) possesses the merits of high specific strength, high specific modulus, better dimensional stability, good wear resistance and lower production cost, which is thought as a promising material in the field of aerospace, automobile, electronic communication, etc. To eliminate the casting defect, the PMMC is usually experienced hot deformation process. The present paper mainly focuses on the deformation behavior of PMMCs. First, the development of PMMCs based on particle size is introduced. Then, the hot deformation technology and deformation mechanism of PMMCs at elevated temperature are given and analyzed, respectively. After reviewing the dynamic recrystallization and texture of PMMCs, its future development is suggested based on the current research progress.
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