MYEON J K, SEOUK P. Nozzle arrangement for optimal performance of cooling process of run out table[J]. ISIJ International, 2013, 53(12): 2192-2196.
[2]
GUO R M. Heat transfer of laminar flow cooling during strip acceleration on hot strip mill run-out tables [ J].Trans ISS-AIME, 1993(8): 49-65.
[3]
WLODZIMIERZ F, FREDRICK W, CHANG Fu-hsiang.Advanced control of coiling temperature in China steel's hot mill[C/ OL]//12th IFAC Symposium on Automation in Mining, Mineral and Metal Processing. Laxenburg:IFAC, 2007: 421-426 [2014-12-20]. http://www.ifac papersonline. net/ Detailed/31759. html.
[4]
宋勇, 苏岚, 谢新亮. 基于有限差分算法的带钢卷取温度在线控制模型[J]. 钢铁, 2009, 44(5): 44-47.SONG Yong, SU Lan, XIE Xin-liang. Online control
[5]
model for coiling temperature of hot strip based on FDM[J]. Iron and Steel, 2009, 44 ( 5 ): 44-47. ( in Chinese)
[6]
IMANARI H, DENG Wei-feng, SHIMODA N. Advanced coiling temperature control system in hot strip mill[C]// Proceedings of the 10th International Conference on Steel Rolling. Beijing: Metallurgical Industry Press, 2010:473-479.
[7]
STEVEN C C, RAYMOND P C. Numerical Methods for Engineers[M]. 3rd ed. Beijing: China Science Press,2000: 841-844.
[8]
张大志, 叶海丽, 项晓菲, 等. 升速轧制对热轧带钢层冷却出口温度的影响[J]. 北京工业大学学报,2012, 38(1): 33-38.ZHANG Da-zhi, YE Hai-li, XIANG Xiao-fei, et al.Influence of accelerating rolling on the laminar cooling exit
[9]
temperature in hot strip mill [ J]. Journal of Beijing University of Technology, 2012, 38 (1): 33-38. ( in Chinese)
[10]
龚殿尧, 陈华昕, 徐芳, 等. 调节轧制速度和水流量进行终轧温度控制的比较[J]. 东北大学学报: 自然科学版, 2014, 35(7): 979-982.GONG Dian-yao, CHEN Hua-xin, XU Fang, et al.Comparison of the rolling speed and water flow adjusting on the finishing rolling temperature control [J]. Journal of
[11]
Northeastern University: Natural Science, 2014, 35(7):979-982. (in Chinese)
[12]
余伟, 张立杰, 何春雨, 等. 热轧带钢超快速层流冷却装置的开发与应用[J]. 轧钢, 2011, 28(1): 18-21.YU Wei, ZHANG Li-jie, HE Chun-yu, et al.Development and application of ultra-fast laminar cooling device for hot-rolled strip[J]. Steel Rolling, 2011, 28(1): 18-21. (in Chinese)
[13]
刘相华, 佘广夫, 焦景明, 等.超快速冷却装置及其在新品种开发中的应用[J]. 钢铁, 2004, 39(8): 71-74.LIU Xiang-hua, SHE Guang-fu, JIAO Jing-ming, et al.An ultra fast cooling system for the products of hot flat rolling[J]. Iron and Steel, 2004, 39(8): 71-74. (in Chinese)
[14]
CHEOL J P, KANG S Y, CHANG H L. Advanced temperature control of high carbon steel for hot strip mills[ J]. Journal of Mechanical Science and Technology,2010, 24(5): 1011-1017.
[15]
KLAUS W, RAINER B, OTTO S. Siemens VAI drives innovation in hot strip mill automation: new cooling model improves manufacture of multiphase steels [ C ]//Proceedings of the Annual Meeting of the China Iron and Steel. Beijing: Metallurgical Industry Press, 2007: 397-
[16]
402.
[17]
MAIERL J, HARING B, BURGER R, et al. Advanced strip cooling solutions for hot-strip mills mechanical actuators, microstructure target cooling and microstructure monitor for online control of strip properties [ C ]// Proceedings of the 10th International Conference on Steel Rolling. Beijing: Metallurgical Industry Press, 2010: 492-498.
[18]
CHEN Shui-xuan, ZOU Jun, FU Xin. Coupled models of heat transfer and phase transformation for the run-out table in hot rolling[J]. J Zhejiang Univ Sci A, 2008, 9(7):932-939.
[19]
HOMBERG D, KRUMBIEGEL K, TOGOBYTSKA N.Modelling, simulation and control of multiphase steel production [ C/ OL ]//19th International congress on modeling and simulation. Perth: MSSANZ, 2011: 77-83
[20]
[2014-12-. http://mssanz. org. au/ modsim2011.
[21]
MARMULEV A V, KAPUTKINA L M, POLIAK E I,et al. Online non-destructive monitoring of phase transformation on run-out table of CSP hot strip mill[J].Machines, Technologies, Materials, 2013(9): 27-29.
[22]
URIJ M, TONCHO K, SERGEJ B, et al. Simulation of accelerated strip cooling on the hot rolling mill run-out roller table [ J]. Journal of Chemical Technology and Metallurgy, 2014, 49(1): 60-64.