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Prediction of Rolling Load, Recrystallization Kinetics, and Microstructure During Hot Strip Rolling
作者姓名:XU Yunbo  YU Yongmei  LIU Xianghua  WANG Guodong
作者单位:State Key Laboratory of Rolling and Automation,Northeastern University,Shenyang 110004,Liaoning,China
摘    要: The recrystallization kinetics and grain size models were developed for the C Mn and niobium containing steels to describe the metallurgical phenomenon such as softening, grain growth, and strain accumulation. Based on the recrystallization kinetics equations, the mean flow stress and the rolling load of each pass were predicted and the optimum rolling schedule was proposed for hot strip rolling. The austenite grain refinement is associated with the addition of niobium, the decrease of starting temperature of finish rolling, and the reduction of finished thickness. The mean flow stress curve with a continuous rising characteristic can be usually observed in the finish rolling of niobium containing steel, which is formed as a result of the heavy incomplete softening and strain accumulation. The predicted rolling loads are in good agreement with the measured ones.

关 键 词:流动应力  应变积累  粒度  热连轧窄带钢
收稿时间:6 July 2006. 
修稿时间:2006-07-06

Prediction of Rolling Load, Recrystallization Kinetics, and Microstructure During Hot Strip Rolling
XU Yun-bo,YU Yong-mei,LIU Xiang-hua,WANG Guo-dong.Prediction of Rolling Load, Recrystallization Kinetics, and Microstructure During Hot Strip Rolling[J].Journal of Iron and Steel Research,2007,14(6):42-0.
Authors:XU Yun-bo  YU Yong-mei  LIU Xiang-hua  WANG Guo-dong
Affiliation:State Key Laboratory of Rolling and Automation, Northeastern University, Shenyang 110004, Liaoning, China
Abstract:The recrystallization kinetics and grain size models were developed for the C-Mn and niobium-containing steels to describe the metallurgical phenomenon such as softening, grain growth, and strain accumulation. Based on the recrystallization kinetics equations, the mean flow stress and the rolling load of each pass were predicted and the optimum rolling schedule was proposed for hot strip rolling. The austenite grain refinement is associated with the addition of niobium, the decrease of starting temperature of finish rolling, and the reduction of finished thickness. The mean flow stress curve with a continuous rising characteristic can be usually observed in the finish rolling of niobiumcontaining steel, which is formed as a result of the heavy incomplete softening and strain accumulation. The predicted rolling loads are in good agreement with the measured ones.
Keywords:hot strip rolling  recrystallization  mean flow stress  strain accumulation  grain size
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