Preset model of bending force for 6-high reversing cold rolling mill based on genetic algorithm
The hydraulic roll-bending device was studied, which was widely used in modern cold rolling mills to regulate the strip flatness. The loaded roll gap crown mathematic model and the strip crown mathematic model of the reversing cold rolling process were established, and the deformation model of roll...
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| Published in | Journal of Central South University Vol. 18; no. 5; pp. 1487 - 1492 |
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| Main Authors | , , , , , |
| Format | Journal Article |
| Language | English |
| Published |
Changsha
Central South University
01.10.2011
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| Subjects | |
| Online Access | Get full text |
| ISSN | 2095-2899 2227-5223 |
| DOI | 10.1007/s11771-011-0864-6 |
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| Abstract | The hydraulic roll-bending device was studied, which was widely used in modern cold rolling mills to regulate the strip flatness. The loaded roll gap crown mathematic model and the strip crown mathematic model of the reversing cold rolling process were established, and the deformation model of roll stack system of the 6-high 1 250 mm high crown (HC) reversing cold rolling mill was built by slit beam method. The simulation results show that, the quadratic component of strip crown decreases nearly linearly with the increase of the work roll bending force, when the shifting value of intermediate roll is determined by the rolling process. From the first pass to the fifth pass of reversing rolling process, the crown controllability of bending force is gradually weakened. Base on analyzing the relationship among the main factors associated with roll-bending force in reversing multi-pass rolling, such as strip width and rolling force, a preset mathematic model of bending force is developed by genetic algorithm. The simulation data demonstrate that the relative deviation of flatness criterions in each rolling pass is improved significantly and the mean relative deviation of all five passes is decreased from 25.1% to 1.7%. The model can keep good shape in multi-pass reversing cold rolling process with the high prediction accuracy and can be used to guide the production process. |
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| AbstractList | The hydraulic roll-bending device was studied, which was widely used in modern cold rolling mills to regulate the strip flatness. The loaded roll gap crown mathematic model and the strip crown mathematic model of the reversing cold rolling process were established, and the deformation model of roll stack system of the 6-high 1 250 mm high crown (HC) reversing cold rolling mill was built by slit beam method. The simulation results show that, the quadratic component of strip crown decreases nearly linearly with the increase of the work roll bending force, when the shifting value of intermediate roll is determined by the rolling process. From the first pass to the fifth pass of reversing rolling process, the crown controllability of bending force is gradually weakened. Base on analyzing the relationship among the main factors associated with roll-bending force in reversing multi-pass rolling, such as strip width and rolling force, a preset mathematic model of bending force is developed by genetic algorithm. The simulation data demonstrate that the relative deviation of flatness criterions in each rolling pass is improved significantly and the mean relative deviation of all five passes is decreased from 25.1% to 1.7%. The model can keep good shape in multi-pass reversing cold rolling process with the high prediction accuracy and can be used to guide the production process. |
| Author | Gong, Gui-liang Zeng, Wei Xu, Xiao-zhao Zhang, Jie Song, Mu-qing Cao, Jian-guo |
| Author_xml | – sequence: 1 givenname: Jian-guo surname: Cao fullname: Cao, Jian-guo email: geocao@ustb.edu.cn organization: National Engineering Research Center of Flat Rolling Equipment, School of Mechanical Engineering, University of Science and Technology Beijing – sequence: 2 givenname: Xiao-zhao surname: Xu fullname: Xu, Xiao-zhao organization: National Engineering Research Center of Flat Rolling Equipment, School of Mechanical Engineering, University of Science and Technology Beijing – sequence: 3 givenname: Jie surname: Zhang fullname: Zhang, Jie organization: National Engineering Research Center of Flat Rolling Equipment, School of Mechanical Engineering, University of Science and Technology Beijing – sequence: 4 givenname: Mu-qing surname: Song fullname: Song, Mu-qing organization: Wuhan Iron & Steel (Group) Corp – sequence: 5 givenname: Gui-liang surname: Gong fullname: Gong, Gui-liang organization: Wuhan Iron & Steel (Group) Corp – sequence: 6 givenname: Wei surname: Zeng fullname: Zeng, Wei organization: Wuhan Iron & Steel (Group) Corp |
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| Cites_doi | 10.2355/isijinternational.43.1947 10.1016/S1005-8850(07)60037-1 10.1007/s11771-008-0049-0 10.1016/j.jmatprotec.2008.10.035 10.1016/j.jprocont.2010.02.003 10.1016/j.jmatprotec.2005.02.126 10.1016/S0924-0136(03)00834-3 10.1016/j.jmatprotec.2004.01.005 10.1016/S1006-706X(08)60024-2 10.1016/j.jmatprotec.2005.02.103 10.1016/j.jmatprotec.2007.08.075 |
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| Keywords | genetic algorithm bending force strip cold rolling mill mathematic model |
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| References | Li, Zhang, Cao, Si, Zhang, Li (CR18) 2008; 40 CR2 Cao, Wei, Zhang, Chen, Zhou (CR22) 2008; 15 Yang, Che, Dou, Zhou (CR8) 2008; 15 Jiang, Wei, Tieu (CR21) 2009; 209 CR19 Alberto, Daniele, Francesco, Andrea (CR3) 2010; 20 Peng, Liu, Du (CR4) 2008; 202 Gu, Zhang, Zhang, Yang (CR11) 2000; 22 Chen (CR23) 1997; 19 CR13 Kim, Lee, Hang (CR12) 2003; 43 Liang, Zhu, Yan (CR7) 2009; 40 Wang, Jiang, Tieu, Liu, Wang (CR16) 2005; 162/163 Jiang, Zhu, Tieu (CR20) 2005; 162/163 Wang, Tieu, Lu, D’ALESSIO, Yuen (CR9) 2003; 140 Ma (CR10) 2009; 26 Wang, He, Yang, Xie, Yang (CR15) 2007; 14 Chang, Di, Tong, Bai, Yang (CR5) 2006; 23 Bai (CR6) 2006 Hu, Zhao, Qiu, Liu (CR14) 2004; 25 Arif, Khan, Sheikh (CR1) 2004; 147 Cao, Dai, Zhang, Yang, Song, Su, Yan (CR17) 2008; 39 J.-g. Cao (864_CR22) 2008; 15 Y.-z. Gu (864_CR11) 2000; 22 J.-g. Cao (864_CR17) 2008; 39 X.-d. Wang (864_CR15) 2007; 14 Z. Y. Jiang (864_CR20) 2005; 162/163 864_CR19 A. Chang (864_CR5) 2006; 23 Z. Y. Jiang (864_CR21) 2009; 209 X.-l. Hu (864_CR14) 2004; 25 X.-lin. Chen (864_CR23) 1997; 19 A. F. M. Arif (864_CR1) 2004; 147 H.-wen. Ma (864_CR10) 2009; 26 T. H. Kim (864_CR12) 2003; 43 864_CR2 864_CR13 D. D. Wang (864_CR9) 2003; 140 J.-lan. Bai (864_CR6) 2006 Y. Peng (864_CR4) 2008; 202 X.-m. Liang (864_CR7) 2009; 40 H.-b. Li (864_CR18) 2008; 40 B. Alberto (864_CR3) 2010; 20 J.-m. Yang (864_CR8) 2008; 15 J. S. Wang (864_CR16) 2005; 162/163 |
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| Title | Preset model of bending force for 6-high reversing cold rolling mill based on genetic algorithm |
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