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Friction Estimation and Roll Force Prediction during Hot Strip Rolling 被引量:1

Friction Estimation and Roll Force Prediction during Hot Strip Rolling
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摘要 A mathematical model of friction coefficient was proposed for the roll force calculation of hot-rolled strips. The online numerical solving method of the roll force calculation formula based on the proposed friction model was developed and illustrated by the practical calculation case. Then, the friction coefficient during hot strip rolling was estimated from the measured roll force by force model inversion. And then, the expression of friction model was pro posed by analyzing the calculation process of stress state coefficient, and the model parameters were determined by the shared parameter multi-model nonlinear optimization method. Finally, the industrial experiments demonstrated the feasibility and effectiveness of the related models. The accuracy of the new roll force model based on the built friction model was much higher than that of the traditional Sims model, and it could be applied in the online hot rolling process control. A mathematical model of friction coefficient was proposed for the roll force calculation of hot-rolled strips. The online numerical solving method of the roll force calculation formula based on the proposed friction model was developed and illustrated by the practical calculation case. Then, the friction coefficient during hot strip rolling was estimated from the measured roll force by force model inversion. And then, the expression of friction model was pro posed by analyzing the calculation process of stress state coefficient, and the model parameters were determined by the shared parameter multi-model nonlinear optimization method. Finally, the industrial experiments demonstrated the feasibility and effectiveness of the related models. The accuracy of the new roll force model based on the built friction model was much higher than that of the traditional Sims model, and it could be applied in the online hot rolling process control.
出处 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2016年第12期1268-1276,共9页
基金 Item Sponsored by Science and Technology Research Program of Hubei Ministry of Education of China(D20161103) Youth Science and Technology Program of Wuhan of China(2016070204010099)
关键词 hot rolling roll force friction coefficient soft measurement multi objective optimization hot rolling roll force friction coefficient soft measurement multi objective optimization
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