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低碳钢热塑性成形过程本构模型 被引量:13

Constitutive Model for High Temperature Plastic Deformation of Low Carbon Steel
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摘要 根据高温流动应力行为的主导软化机制不同,建立了低碳钢热塑性成形过程的动态回复和动态再结晶两阶段本构模型.采用单一内变量的位错密度演化模型描述加工硬化和动态回复对流动应力的影响;应用Avrami方程表达动态再结晶软化作用对流动应力的影响.采用Gleeble1500热模拟实验机对低碳钢进行热压缩实验,依据实验流动应力曲线确定本构模型中的参数,并分析了模型参数随变形条件的变化规律.应用建立的本构模型计算实验条件下的流变曲线,结果计算值与实验值吻合良好,表明所建立的本构模型可以用于低碳钢热压缩成形过程的数值模拟. Based on the analysis of hot deformation behavior,a two-stage constitutive model of low carbon steel was developed.In the model,the effect of work hardening and dynamic recovery on the flow stress is described by a one-structure parameter model(dislocation evolution model);the softening effect of dynamic recrystallization is expressed by the Avrami equation.The model parameters are identified by using the experimental stress-strain curves obtained from the hot compressive deformation on Gleeble-1500 thermo-simulation machine,and then the variation of model parameters with deformation condition are investigated.The calculated flow stress curves agree well with the measured ones,which indicates that the developed constitutive model is applicable to the hot deformation process numerical simulation of the investigated low carbon steel.
出处 《上海交通大学学报》 EI CAS CSCD 北大核心 2010年第4期437-441,446,共6页 Journal of Shanghai Jiaotong University
基金 国家重点基础研究发展规划(973)项目(2006CB705401) 国家自然科学基金资助项目(50675133)
关键词 低碳钢 本构模型 加工硬化 动态回复 动态再结晶 low carbon steel constitutive model work hardening dynamic recovery dynamic (recrystallization)
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参考文献13

  • 1Sellars C M. Modelling mierostructural development during hot rolling[J]. Materials Science and Technology, 1990(6): 1072-1081.
  • 2Sellars C M. Computer modeling of hot-working process[J]. Materials Science and Technology, 1985 (1) :325-332.
  • 3沈丙振,方能炜,沈厚发,柳百成.低碳钢奥氏体再结晶模型的建立[J].材料科学与工艺,2005,13(5):516-520. 被引量:16
  • 4Laasraoui A, Jonas J J. Recrystallization of austenite after deformation at high temperature and strain rates-analysis and modeling[J]. Metallurgical Transactions A, 1991,22A(7): 151-160.
  • 5Serajzadeh S, Taheri A K. Prediction of flow stress at hot working condition [J]. Mechanics Research Communications, 2003, 30: 87-93.
  • 6王进,陈军,张斌,赵震,阮雪榆.35CrMo结构钢热塑性变形流动应力模型[J].上海交通大学学报,2005,39(11):1784-1786. 被引量:14
  • 7Mecking H, Kocks U F. Kinetics of flow and strainhardening[J]. Acta Metallurgical, 1981, 29: 1865- 1875.
  • 8Yoshie A, Morikawa H, Onoe Y, et al. Formulation of static recrystallization of austenite in hot rolling process of steel plate[J]. Transactions ISlJ, 1987, 27 :425-431.
  • 9Laasraoui A, Jonas J J. Prediction of steel flow stresses at high temperatures and strain rates[J]. Metallurgical Transactions A, 1991,22A(7), 1545-1558.
  • 10Takeuchi S, Argon A S. Review.. Steady state creep of single phase crystal line matter of high temperature[J]. Journal of Material Science, 1976, 11: 1542- 1566.

二级参考文献22

  • 1YONGSJ, DAE C K, BYUNGM K. Application of the finite element method to predict microstructure evolution in the hot forgring of steel [ J]. J Mater Sci,2000, 101:85-94.
  • 2LAASRAOUI A, JONAS J J. Prediction of temperature distribution, flow stress and microstructure during the multipass hot rolling of steel plate and strip [J]. ISIJ Int, 1991, 31(1): 95 -105.
  • 3BEYNON J H, SELLARS C M. Modelling microstructure and its effects during multipass hot rolling [J]. ISIJInl, 1992,32(3): 359.
  • 4JONG J P. Prediction of the folw stress and grain size of steel during thick - plate rolling [ J]. J Mater Sci,2001, 113(5): 581 -586.
  • 5SICILIANO Jr F, MINAMI K, MACCAGNO T M, et al. Mathematical modeling of the mean folw stress,fractional softening and grain size during the hot strip rolling of C- Mn steels [J]. ISIJ Int, 1996, 36(12): 1500-1506.
  • 6SELLARS C M, TAGART W J. Study on the mechanism of hot deformation [J]. Acta. Metall, 1966, 14(11): 1136-1138.
  • 7KARHAUSEN K, KOPP R. Model for integrated process and microstructure simulation in hot forming [J]. SteelReaserch, 1992, 63(3): 247 -256.
  • 8Bergstrom Y. A dislocation model for the stressstrain behaviour of polycrystalline α-Fe with special emphasis on the variation of the densities of mobile and immobile dislocations[J]. Material Science and Engineering, 1970, 5 (4): 193- 200.
  • 9Colas R. A model for the hot deformation of lowcarbon steel [J]. Journal of Materials Processing Technology, 1996, 62 (1 - 3): 180- 184.
  • 10Laasraoui A, Jonas J J. Prediction of steel flow stresses at high temperatures and strain rates [J].Metallurgical Transactions A (Physical Metallurgy and Materials Science), 1991, 22A(7) : 1545- 1558.

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