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基于数值模拟的20A钢棒材热连轧晶粒尺寸
英文标题:Prediction on grain size of steel bar 20A in hot continuous rolling based on numerical simulation
作者:    单慧云     
单位:重庆理工大学 
关键词:20A钢棒材 热连轧 有限元模拟 晶粒尺寸 物理实验 
分类号:TG335.6
出版年,卷(期):页码:2017,42(3):159-164
摘要:

通过Deform-3D有限元分析软件及正交实验,模拟并优化了20A钢棒材热连轧过程的工艺参数,并对该热轧工艺条件下的20A钢棒材的晶粒组织的有限元数值模拟以及物理实验验证进行探索。对比数值模拟值与物理实验值,研究结果表明:在最佳工艺参数条件下,数值模拟的20A钢棒材平均晶粒尺寸为45.8 mm,而物理实验中的平均晶粒尺寸为47.56 mm,二者数值均满足技术要求,且误差仅为3.7%,通过有限元模拟能够成功地预测热轧变形过程晶粒尺寸大小。
 

The parameters of steel bar 20A in hot rolling process were simulated and optimized by Deform-3D finite element analysis software and orthogonal tests, and the finite element numerical simulation and physical experiment verification of the grain structure for steel bar 20A under the hot rolling technology were carried out. Comparing with the numerical simulation and physical experiments, the result shows that under the condition of optimum technological parameters, the average grain size of steel bar 20A is 45.8 mm and 47.56 mm from the results of simulation and experiment respectively. The above two values are all satisfied with the technical requirements and the error is only 3.7%. The grain size in hot rolling deformation process can be predicted successfully by FEM.

 

基金项目:
重庆市模具技术重点实验室(重庆理工大学)开放课题(MT201503)
作者简介:
张 驰(1964-),男,硕士,教授
参考文献:


[1]张焰,白亚斌.大圆钢轧制三维塑性变形有限元模拟[J].四川冶金,2008, 30(5):1001-5108.Zhang Y, Bai Y B. Simulation of large section round bar by finite element method [J]. Sichuan Metallurgy,2008, 30(5):1001-5108.
[2]李云雁,胡传荣.试验设计与数据处理[M].北京:化学工业出版社,2009.Li Y Y, Hu C R.  Experiment Design and Data Processing [M].Beijing: Chemical Industry Press, 2009.
[3]孔哲.高速线材粗中轧机组孔型系统分析[J].冶金设备管理与维修,2013,31(2):47-53.Kong Z. Analysis of roll pass systems for highspeed wire rod roughing and intermediate mills[J]. Metallurgical Equipment Management and Maintenance, 2013,31(2): 47-53.
[4]胡韬,岳晓丽,陈慧敏. P110石油管用钢坯热轧工艺数值模拟[J].锻压技术,2016, 40(10):153-157.Hu T,Yue X L,Chen H M. Numerical simulation on steel billet of oil well pipe P110 in hot rolling [J].Forging & Stamping Technology,2016,40(10):153-157.
[5]蔡飞飞,刘新宽,刘平,等.铜镁合金CuMg0.3棒料连续挤压微观组织演变数值模拟分析[J].锻压技术,2015,40(3):142-146.Cai F F, Liu X K, Liu P, et al.Numerical simulation analysis of microstructure evolution in the continuou sextrusion for CuMg 0.3 CuMg alloy [J]. Forging & Stamping Technology,2015,40(3):142-146.
[6]付金良.国内标准材料数据库的开发及在铸造CAE中的应用[D].兰州:兰州理工大学,2007.Fu J L. Exploitation of Domestic Standard Materials Database and Its Application in Cast CAE[D].Lanzhou: Lanzhou University of Technology, 2007.
[7]白梅, 张驰, 沈国保. 20A钢热塑性变形的应力-应变本构模型研究[J]. 精密成形工程, 2014, 6(4):52-57.Bai M, Zhang C, Shen G B. Stressstrain constitutive model for hot deformation of 20A steel[J]. Journal of Netshape Forming Engineering, 2014, 6(4):52-57.
[8]白梅.低碳钢热轧计算机模拟及工艺优化研究[D]. 重庆:重庆理工大学,2015.Bai M. Study on the Computer Simulation and Process Optimization of Low Carbon Steel in Hot Bar Rolling[D]. Chongqing: Chongqing University of Technology,2015.
[9]周志明,张驰.材料成形原理[M].北京:北京大学出版社,2011.Zhou Z M, Zhang C. Metal Forging Fundamentals and Applications[M].Beijing: Beijing University Industry Publisher, 2011.
[10]许杰, 谢颂海, 曹勇,等. 基于VB的电镜图片中粒径分布统计程序的开发[J]. 电子显微学报, 2010, 29(4):344-349.Xu J, Xie S H, Cao Y, et al. The develoment of diameter distribution statistic progaram of electron microscopicimage based on VB [J]. Journal of Chinese Electron Microscopy Society, 2010, 29(4):344-349.

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