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Dynamic modeling of twin roll casting AZ41 magnesium alloy during hot compression processing 被引量:1

Dynamic modeling of twin roll casting AZ41 magnesium alloy during hot compression processing
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摘要 A dynamic material model of Mg-4.51Al-1.19Zn-0.5Mn-0.5Ca(AZ41,mass fraction,%)magnesium alloy was put forward.The results show that the dynamic material model can characterize the deformation behavior and microstructure evolution and describe the relations among flow stress,strain,strain rates and deformation temperatures.Statistical analysis shows the validity of the proposed model.The model predicts that lower deformation temperature and higher strain rate cause the sharp strain hardening. Meanwhile,the flow stress curve turns into a steady state at high temperature and lower strain rate.The moderate temperature of 350 ℃and strain rate of 0.01 s-1 are appropriate to this alloy. A dynamic material model of Mg-4.51Al-1.19Zn-0.5Mn-0.5Ca(AZ41,mass fraction,%)magnesium alloy was put forward.The results show that the dynamic material model can characterize the deformation behavior and microstructure evolution and describe the relations among flow stress,strain,strain rates and deformation temperatures.Statistical analysis shows the validity of the proposed model.The model predicts that lower deformation temperature and higher strain rate cause the sharp strain hardening. Meanwhile,the flow stress curve turns into a steady state at high temperature and lower strain rate.The moderate temperature of 350 ℃and strain rate of 0.01 s^-1 are appropriate to this alloy.
出处 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2010年第B07期513-518,共6页 中国有色金属学报(英文版)
基金 Project(Y2008F27)supported by the Natural Science Foundation of Shandong Province,China
关键词 镁合金 压缩处理 双辊铸轧 动态模拟 低应变速率 材料模型 变形温度 流动应力 AZ41 alloy flow stress deformation behavior dynamic model twin-roll casting hot compression
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  • 1SIVAKESAVAM O,,RAO I S,PRADAD Y V R K.Processing mapfor hot working of as cast magnesium. Materials Science and Technology . 1993
  • 2SRINIVASAN N,PRASAD Y V R K,RAMA RAO P.Hot deformation behavior of Mg-3Al alloy—A study using processing map. Materials Science Engineering A Structural Materials Properties Microstructure and Processing . 2008
  • 3BEER A G,BARNETT M R.Influence of initial microstructure on the hot working flow stress of Mg-3Al-1Zn. Materials Science Engineering A Structural Materials Properties Microstructure and Processing . 2006
  • 4LIU Juan,CUI Zhen-shan,LI Cong-xing.Modeling of flow stress characterizing dynamic recrystallization for magnesium alloy AZ31B. Computational Materials Science . 2008
  • 5SLOOFF F A,ZHOU J,DUSZCZYK J,KATGERMAN L.Constitutive analysis of wrought magnesium alloy Mg-Al4-Zn1. Scripta Materialia . 2007
  • 6SONG S X,HORTON J A,KIM N J,NIEH T G.Deformation behavior of a twin-roll-cast Mg-6Zn-0.5Mn-0.3Cu-0.02Zr alloy at intermediate temperatures. Scripta Materialia . 2007
  • 7ALTIOK T,MELAMED B.Simulation modeling and analysis with ARENA. . 2007
  • 8DUNN S M,CONSTANTINIDES A,MOGHE P V.Numerical methods in biomedical engineering. . 2006
  • 9McQueen HJ,Ryan ND.Constitutive analysis in hot working. Journal of Materials Science . 2002
  • 10Myshlyaev M M,McQueen H J,Mwembela A,et al.Twinning, dynamic recovery and recrystallization in hot worked Mg-Al-Zn alloy. Journal of Materials Science . 2002

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