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Numerical Simulation of Temperature Field and Thermal Stress Field of Work Roll During Hot Strip Rolling
作者姓名:LI Changsheng  YU Hailiang  DENG Guanyu  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:  Based on the thermal conduction equations, the three dimensional (3D) temperature field of a work roll was investigated using finite element method (FEM). The variations in the surface temperature of the work roll during hot strip rolling were described, and the thermal stress field of the work roll was also analyzed. The results showed that the highest roll surface temperature is 593 ℃, and the difference between the minimum and maximum values of thermal stress of the work roll surface is 1457 MPa. Furthermore, the results of this analysis indicate that temperature and thermal stress are useful parameters for the investigation of roll thermal fatigue and also for improving the quality of strip during rolling.

关 键 词:轧辊  温度  热应力  有限元分析
收稿时间:2006-05-26

Numerical Simulation of Temperature Field and Thermal Stress Field of Work Roll During Hot Strip Rolling
LI Chang-sheng,YU Hai-liang,DENG Guan-yu,LIU Xiang-hua,WANG Guo-dong.Numerical Simulation of Temperature Field and Thermal Stress Field of Work Roll During Hot Strip Rolling[J].Journal of Iron and Steel Research,2007,14(5):18-0.
Authors:LI Chang-sheng  YU Hai-liang  DENG Guan-yu  LIU Xiang-hua  WANG Guo-dong
Affiliation:State Key Laboratory of Rolling and Automation, Northeastern University, Shenyang 110004, Liaoning, China
Abstract:Based on the thermal conduction equations, the three-dimensional (3D) temperature field of a work roll was investigated using finite element method (FEM). The variations in the surface temperature of the work roll during hot strip rolling were described, and the thermal stress field of the work roll was also analyzed. The results showed that the highest roll surface temperature is 593 ℃, and the difference between the minimum and maximum values of thermal stress of the work roll surface is 145.7 MPa. Furthermore, the results of this analysis indicate that temperature and thermal stress are useful parameters for the investigation of roll thermal fatigue and also for improving the quality of strip during rolling.
Keywords:hot strip mill  roll  temperature field  thermal stress  finite element method
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