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Dynamic recrystallization behavior and kinetics of high strength steel 被引量:1

Dynamic recrystallization behavior and kinetics of high strength steel
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摘要 The dynamic recrystallization behavior of high strength steel during hot deformation was investigated.The hot compression test was conducted in the temperature range of 950-1150 °C under strain rates of 0.1,1 and 5 s-1.It is observed that dynamic recrystallization(DRX) is the main flow softening mechanism and the flow stress increases with decreasing temperature and increasing strain rate.The relationship between material constants(Q,n,α and ln A) and strain is identified by the sixth order polynomial fit.The constitutive model is developed to predict the flow stress of the material incorporating the strain softening effect and verified.Moreover,the critical characteristics of DRX are extracted from the stress-strain curves under different deformation conditions by linear regression.The dynamic recrystallization volume fraction decreases with increasing strain rate at a constant temperature or decreasing deformation temperature under a constant strain rate.The kinetics of DRX increases with increasing deformation temperature or strain rate. The dynamic recrystallization behavior of high strength steel during hot deformation was investigated.The hot compression test was conducted in the temperature range of 950-1150 °C under strain rates of 0.1,1 and 5 s-1.It is observed that dynamic recrystallization(DRX) is the main flow softening mechanism and the flow stress increases with decreasing temperature and increasing strain rate.The relationship between material constants(Q,n,α and ln A) and strain is identified by the sixth order polynomial fit.The constitutive model is developed to predict the flow stress of the material incorporating the strain softening effect and verified.Moreover,the critical characteristics of DRX are extracted from the stress-strain curves under different deformation conditions by linear regression.The dynamic recrystallization volume fraction decreases with increasing strain rate at a constant temperature or decreasing deformation temperature under a constant strain rate.The kinetics of DRX increases with increasing deformation temperature or strain rate.
出处 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第5期1007-1014,共8页 中南大学学报(英文版)
基金 Project (51322405) supported by the National Natural Science Foundation of China Project (CX2013B085) supported by Hunan Provincial Innovation Foundation for Postgraduate,China
关键词 flow stress dynamic recrystallization kinetics high strength steel constitutive model material constants 再结晶动力学 再结晶行为 高强度钢 动态再结晶 应力-应变曲线 应变速率 流动应力 材料常数
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  • 1伍来智,李雪松,陈军,张鸿冰,崔振山.Dynamic Recrystallization Behavior and Microstructural Evolution in SPHC Steel[J].Journal of Shanghai Jiaotong university(Science),2010,15(3):301-306. 被引量:2
  • 2MIRZADEH H, NAJAFIZADEH A. Prediction of the critical conditions for initiation of dynamic recrystallization [J], Materials and Design, 2010,31(3): 1174-1179.
  • 3MANDAL S, BHADURI A K, SARMA V S. A study on microstructural evolution and dynamic recrystallization during isothermal deformation of a Ti-modified austenitic stainless steel [J]. Metallurgical and Materials Transactions A, 2011, 42(4): 1062-1072.
  • 4BANDYOPADHYAY P S, KUNDU S, GHOSH S K, CHATTERJEE S. Structure and properties of a low-carbon microalloyed ultra-high-strength steel [J]. Metallurgical and Materials Transactions A, 2011, 42(4): 1051-1061.
  • 5SHUKLA R, DAS S K, RAVIKUMAR B, GHOSH S K, KUNDU S, CHATTERJEE S. An ultra-low carbon, thermomechanically controlled processed microalloyed steel: Microstructure and mechanical properties [J]. Metallurgical and Materials Transactions A, 2012, 43(12): 4835-4845.
  • 6OPIELA M. Effect of thermomechanical processing on the microstructure and mechanical properties of Nb-Ti-V microalloyed steel [J]. Journal of Materials Engineering and Performance, 2014, 23(9): 3379-3388.
  • 7Bing-hua Chen Hao Yu.Hot ductility behavior of V-N and V-Nb microalloyed steels[J].International Journal of Minerals,Metallurgy and Materials,2012,19(6):525-529. 被引量:11
  • 8RAJPUT S K, CHAUDHARI G P, NATH S K. Physical simulation of hot deformation of low-carbon Ti-Nb microalloyed steel and microstructural studies [J]. Journal of Materials Engineering and Performance, 2014, 23(8): 2930-2942.
  • 9MA Liqiang,LIU Zhenyu,JIAO Sihai,YUAN Xiangqian,WU Di.Dynamic Recrystallization Behaviour of Nb-Ti Microalloyed Steels[J].Journal of Wuhan University of Technology(Materials Science),2008,23(4):551-557. 被引量:3
  • 10SAIKALY W, CHARRIN L, CHARAI A, BANO X, ISSARTEL C.The effects of thermomechanical processing on the precipitation in an industrial dual-phase steel microalloyed with titanium [J]. Metallurgical and Materials Transactions A, 2001, 32(8): 1939-1947.

二级参考文献35

  • 1冯艳秋,潘傥,李莉,叶晓英.ICP-AES法测定23Co13Ni11Cr3Mo钢中La,Ce元素的分析方法[J].材料工程,2007,35(6):31-34. 被引量:7
  • 2SELLARS C M, WHITEMAN J A. Recrystallization and grain growth in hot rolling [J]. Metal Science, 1979, 13(3-4): 187-194.
  • 3JONAS J J. Dynamic recrystallizaiton: Scientific curious or industrial tool [J]. Materials Science and Engineering A, 1994, 184(2): 155-165.
  • 4KIM S, YOO Y C. Dynamic recrystallization behavior of AISI 304 stainless steel [J]. Materials Science and Engineering A, 2001, 311(1-2): 108-113.
  • 5SALVATORI I, INOUE T, NAGAI K. Ultrafine grain structure through dynamic recrystallization for type 304 stainless steel [J]. ISIJ International, 2002, 42(7): 744-750.
  • 6FUJITA N, NARUSHIMA T, IGUCHI Y, et al. Grain refinement of as cast austenite by dynamic recrystal- lization in HSLA steels [J]. ISIJ International, 2003, 43(7): 1063-1072.
  • 7WANG B X, LIU X H, WANG G D. Dynamic recrystallization behavior and microstructural evolution in Mn-Cr gear steel [J]. Materials Science and Engineering A, 2005, 393(1-2): 102-108.
  • 8SELLARS C M, MCTEGART W J. On the mechanism of hot deformation [J]. Acta Metallurgica, 1966, 14(9): 1136-1138.
  • 9KARHAUSEN K, KOPP R. Model for integrated process and microstructure simulation in hot forming [J].Steel Research, 1992, 63(6): 247-256.
  • 10SELLARS C M. The physical metallurgy of hot working [C]// The Proceeding of the International Conference on Hot Working and Forming Process. London: the Metal Society,1980: 3-15.

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