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Development of New Generation Cooling Control System After Rolling in Hot Rolled Strip Based on UFC 被引量:9

Development of New Generation Cooling Control System After Rolling in Hot Rolled Strip Based on UFC
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摘要 Ultra-fast cooling (UFC) is an advanced technology in hot rolling field. Through this technology, great changes on the run-out table are produced in the strip cooling process. In order to adapt to these changes, a new gen-eration of hot strip cooling control system after rolling was developed based on the UFC basic principle. The system can not only accomplish temperature of UFC delivery side, coiling temperature, cooling rate, etc, and multi-objective accuracy control, but also offer more flexibility and new attractive possibilities in terms of cooling pattern on the run-out table, which could be of prime importance for the production of some difficult steels. In addition, through the time-velocity-distance (TVD) profile prediction combined with speed feed-forward control and coiling temperature feedback control, the coiling temperature control precision can be effectively improved during accelerative rolling in the system. At present, the system has been successfully used in the conventional strip production line and CSP short process production line, and its application effect is perfect. Ultra-fast cooling (UFC) is an advanced technology in hot rolling field. Through this technology, great changes on the run-out table are produced in the strip cooling process. In order to adapt to these changes, a new gen-eration of hot strip cooling control system after rolling was developed based on the UFC basic principle. The system can not only accomplish temperature of UFC delivery side, coiling temperature, cooling rate, etc, and multi-objective accuracy control, but also offer more flexibility and new attractive possibilities in terms of cooling pattern on the run-out table, which could be of prime importance for the production of some difficult steels. In addition, through the time-velocity-distance (TVD) profile prediction combined with speed feed-forward control and coiling temperature feedback control, the coiling temperature control precision can be effectively improved during accelerative rolling in the system. At present, the system has been successfully used in the conventional strip production line and CSP short process production line, and its application effect is perfect.
出处 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2013年第7期29-34,共6页
基金 Item Sponsored by National Natural Science and Technology Support Program in 12th Five-Year Plan of China ( 2012BAF04B01 )
关键词 ultra-fast cooling hot rolled strip laminar cooling new generation cooling control system run-out rollertable strip cooling ultra-fast cooling hot rolled strip laminar cooling new generation cooling control system run-out rollertable strip cooling
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  • 1小指军夫.控制轧制控制冷却--改善钢材材质的轧制技术发展[M].李伏桃,陈岿,译.北京:冶金工业出版社,2002.
  • 2Houyoux C,Herman J C,Simon P,et al.Metallurgical aspects of ultra fast cooling on a hot strip mill[J].Revue de Metallurgie,1997,97:58-59.
  • 3NKK'S Fukuyama.Super-OLAC H introduced at hot strip mill for automotive steel sheet production[EB/OL].(2002-07-15).htrp://www.jfe-holdings.co/jp/en/release/nkk/42-5/art06.html.
  • 4Gladman T,Dulieu D,Mclvor I D.Structure-property relationships in high-strength microalloyed steel[C]//Proe of Symp on Microalloying'75.New York:Union Carbide Corp,1976:32-55.
  • 5吴迪,王国栋,赵宪明.利用新一代TMCP生产Ⅲ,Ⅳ级热轧带肋钢筋的理论与实践[C]∥2009年全国建筑用钢筋生产、设计与应用技术交流研讨会.北京,2009.
  • 6Kagechika H.Recent progress and future trends in the research and development of steel[J].NKK Technical Review,2003,88:6-9.
  • 7Omata K,Yoshimura H,Yamamoto S.Leading high performance steel plates with advanced manufacturing technologies[J].NKK Technical Review,2003,88:73-80.
  • 8高穴広.げ性高炭素熟间圧延(鲷)板「ハイパ一バ一リンケェスシ一(@)」[J].JFE技报,2007(16):56-57.
  • 9Kagechika H.Production and technology of iron and steel[J].ISIJ International,2006,46(7):939-958.
  • 10鹿内伸夫 三田尾(真)司 速藤茂.最近のTMCPによる厚板(徂撒)制御技术の发展と高性能化.JFE 技报,2007,(18):1-6.

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