期刊文献+

Static Recrystallization Kinetics Model After Hot Deformation of Low-Alloy Steel Q345B 被引量:19

Static Recrystallization Kinetics Model After Hot Deformation of Low-Alloy Steel Q345B
原文传递
导出
摘要 The static recrystallization behavior of low-alloy steel Q345B during double-pass hot compression deformation tests was investigated in the temperature range of 900-1000 ℃,the true strain range of 0.15-0.25 and the interpass time range of 0.5-50 s on Gleeble-3500 thermo-simulation machine.The results show that static recrystallization during the interpass time is observed.As the deformation temperature and strain increase,softening caused by static recrystallization is obvious.According to the analysis and calculation of thermo-simulation data,the static recrystallization activation energy was obtained and static recrystallization kinetics model was built.Finally,the error analysis of static recrystallization kinetics model proved that the model had good accuracy.Therefore,this model provides a theoretical basis for static recrystallization(SRX)and will contribute to the development of multipass hot rolling process,in order to control the rolling process more accurately. The static recrystallization behavior of low-alloy steel Q345B during double-pass hot compression deformation tests was investigated in the temperature range of 900-1000 ℃,the true strain range of 0.15-0.25 and the interpass time range of 0.5-50 s on Gleeble-3500 thermo-simulation machine.The results show that static recrystallization during the interpass time is observed.As the deformation temperature and strain increase,softening caused by static recrystallization is obvious.According to the analysis and calculation of thermo-simulation data,the static recrystallization activation energy was obtained and static recrystallization kinetics model was built.Finally,the error analysis of static recrystallization kinetics model proved that the model had good accuracy.Therefore,this model provides a theoretical basis for static recrystallization(SRX)and will contribute to the development of multipass hot rolling process,in order to control the rolling process more accurately.
出处 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2010年第8期61-66,共6页 钢铁研究学报(英文版)
基金 Item Sponsored by Fok Ying Tung Education Foundation(101048) Natural Science Foundation of Hebei Province of China(E2008000835)
关键词 Gleeble-3500 low-alloy steel static recrystallization activation energy kinetics model Gleeble-3500 low-alloy steel static recrystallization activation energy kinetics model
  • 相关文献

参考文献23

  • 1ZHOU Ji-hua, GUAN Kezhi. Deformation Resistance of Metals [M]. Beijing: Mechanical Industry Press, 1988 (in Chinese).
  • 2Medina S F, Mancilla J E. Static Recrystallization Modelling of Hot Deformed Steels Containing Several Alloying Elements [J]. ISIJ International, 1996, 36(8): 1070.
  • 3Abad R, Fernandez A I, Lopez B, et al. Interaction Between Recrystallization and Precipitation During Multipass Rolling in a Low Carbon Niobium Microalloyed Steel [J]. ISIJ International, 2001, 41(11): 1373.
  • 4Fernandez A I, I.opez B, Rodriguez-Ibabe J M. Relationship Between the Austenite Recrystallization Fraction and the Softening Measured From the Interrupted Torsion Test Technique [J]. Scripta Materialia, 1999, 40(5): 543.
  • 5DU Lin-xiu ZHANG Zhong-ping SHE Guang-fu LIU Xiang-hua WANG Guo-dong.Austenite Recrystallization and Controlled Rolling of Low Carbon Steels[J].Journal of Iron and Steel Research(International),2006,13(3):31-35. 被引量:4
  • 6Elwazri A M, Essadiqi E, Yue S. The Kinetics of Static Recrystallization in Microalloyed Hypereutectoid Steels [J]. ISIJ International, 2004, 44(1): 162.
  • 7Uranga P, Fernandez A I, Lopez B, et al. Transition Between Static and Metadynamic Recrystallization Kinetics in Coarse Nb Microalloyed Austenite[J]. Mater Sci Eng, 2003, 345A: 319.
  • 8Sun W P, Hawbolt E B. Comparison Between Static and Metadynamic Reerystallization: An Application to the Hot Rolling of Steels [J]. ISIJ International, 1997, 37(10):1000.
  • 9Uranga P, Fernandez A I, Lopez B, et al. Modeling of Austenire Grain Size Distribution in Nb Miroalloyed Steels Processed by Thin Slab Casting and Direct Rolling (TSDR) Route [J]. ISIJ International, 2004, 44(8): 1416.
  • 10Matthias Militzer. Computer Simulation of Mirostructure Evolution in Low Carbon Sheet Steels [J]. ISIJ International, 2007, 47(1): 1.

二级参考文献9

  • 1A. Laasraoui,J. J. Jonas.Prediction of steel flow stresses at high temperatures and strain rates[J].Metallurgical Transactions A.1991(7)
  • 2Pentti L,Maccagno T,Jonas J J.Softening and Flow Stress Behavior of Nb Microalloyed Steels During Hot Rolling Si mula- tion[].Iron and Steel Institute of Japan.1995
  • 3Vega MI,Medina S F,Chapa M,et al.Determination of Crit- ical Temperature (Tnr,Ar3,Ar1) in Hot Rolling Structural Steels With Different Ti and N Contents[].Iron and Steel Institute of Japan.1999
  • 4Sellars C M.Annealing Processes—Recovery , Recrystalliza- tion and Grain Growth[]..1986
  • 5Senuma T,Yada H.Annealing Processes—Recovery , Re- crystallization and Grain Growth[]..1986
  • 6DU Lin-xiu,DI NG Hua,LI U Xiang-hua,et al.Microstruc- tural Evolution of a Low Carbon Mn Steel During Control Rolling at Different Temperatures[].Journal of Northeast- ern University (Natural Science).2002
  • 7Samuel F H,Yue S,Jonas J J,et al.Modeling of FlowStress and Rolling Load of a Hot Strip Mill by Torsion Testing[].Iron and Steel Institute of Japan.1989
  • 8Sun WP,Hawbolt E B.Comparison Between Static and Meta- dynamic Recrystallization—An Application to the Hot Rolling of Steels[].Iron and Steel Institute of Japan.1997
  • 9DU Lin-xiu,ZHANG Cai-bei,DI NG Hua,et al.Determina- tion of Upper Li mit Temperature of Strain-Induced Transfor- mation of Low Carbon Steels[].Iron and Steel Institute of Japan.2002

共引文献3

同被引文献150

引证文献19

二级引证文献51

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部