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Model Building of Backup Roller Diameter Effect Rate in 4-High Mill 被引量:1

Model Building of Backup Roller Diameter Effect Rate in 4-High Mill
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摘要 Software for calculating the strip profile in 4-high hot rolling mill was developed using influence coefficient method. Regularity of backup roller diameter effect rate was studied systematically using the software. The results show that backup roller diameter effect rates decrease versus the increase of strip width, increase significantly versus the increase of backup roller diameter and obscurely increase versus the increase of reduction. The difference between backup roller diameter effect rate and it is reference value increases versus strip width increasing. When backup rollers diameter is set to be 1.64 m and strip width is 1.85 m, the error of strip profile calculated using the model of backup roller diameter effect rate reference value will be 3.55μm. Based on the results, reference values of roller diameter effect rate and six power polynomial fitting coefficients of modification coefficients were determined considering coherent parameters. The high precision model of backup roller diameter effect rate was established. When the model is used to predict strip profile, the accuracy is less than 5.0 μm. Software for calculating the strip profile in 4-high hot rolling mill was developed using influence coefficient method. Regularity of backup roller diameter effect rate was studied systematically using the software. The results show that backup roller diameter effect rates decrease versus the increase of strip width, increase significantly versus the increase of backup roller diameter and obscurely increase versus the increase of reduction. The difference between backup roller diameter effect rate and it is reference value increases versus strip width increasing. When backup rollers diameter is set to be 1.64 m and strip width is 1.85 m, the error of strip profile calculated using the model of backup roller diameter effect rate reference value will be 3.55μm. Based on the results, reference values of roller diameter effect rate and six power polynomial fitting coefficients of modification coefficients were determined considering coherent parameters. The high precision model of backup roller diameter effect rate was established. When the model is used to predict strip profile, the accuracy is less than 5.0 μm.
出处 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2004年第4期454-456,共3页 材料科学技术(英文版)
基金 the National Natu-ral Science Foundation of China,under the contract No.59995440 the State Key Development Prograrmming Research under the contract No.G2000027208-4 the Natural Science Foundation ofLiaoning Province,under the contract No.2001101021.
关键词 4-high mill Influence coefficient method Strip profile Hot rolling Backup roller diameter Effect rate 4-high mill, Influence coefficient method, Strip profile, Hot rolling, Backup roller diameter, Effect rate
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  • 1[1]G.K.Yi and J.S.Li: The Hot Strip Rolling Technology of Japan,NEU press, Shenyang, 1993, 51-54. (in Chinese) 被引量:1
  • 2[2]Bing HAN, Xianghua LIU and Guodong WANG: Research on Iron and Steel, 1995, 84(3), 22-28. (in Chinese) 被引量:1
  • 3[3]Masanori Kitahama: Iron Steel Eng., 1987, 64(11), 34-43. 被引量:1
  • 4[4]G.E.Wood, Humphries Kenneth and P.W.Arnold: Metall.Plant Technol., 1989, 12(5), 92-96. 被引量:1
  • 5[5]M.Espenhahn, K.E.Friedrich, H.Osterburg, P.Tese and W.Wolpert: Metall. Plant Technol., 1995, 18(1), 18-22. 被引量:1
  • 6[6]Y.Shimizhu, J.Iwatani, Y.Yamasaki, T.Takeguchi and A.Kametani: Technology Review-Mitsubishi Heavy Industries,2000, 37(2), 45-47. 被引量:1
  • 7[7]S.X.Zhou, P.Funke and J.Zhong: Steel Research, 1996, 67(5),200-204. (in Chinese) 被引量:1
  • 8[8]J.C.Parks: ASIE Steel Technol., 2000, 77(7/8), 60-62. 被引量:1
  • 9[9]Guodong WANG: Metallurgical Industry Press, Beijing, 1986,11, 289-306. 被引量:1
  • 10[10]V.B.Ginzburg: High-Quality Steel Rolling: Theory and Practice, Marcel Dekker Inc, New York., 1993, 345-346. 被引量:1

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