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Control Method for Steel Strip Roughness in Two-stand Temper Mill Rolling 被引量:8

Control Method for Steel Strip Roughness in Two-stand Temper Mill Rolling
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摘要 How to control surface roughness of steel strip in a narrow range for a long time has become an important question because surface roughness would significantly influence the appearance of the products. However, there are few effective solutions to solve the problem currently. In this paper, considering both asperities of work roll pressing in and squeezing the steel strip, two asperity contact models including squeezing model and pressing in model in a two-stand temper mill rolling are established by using finite element method(FEM). The simulation investigates the influences of multiple process parameters, such as work roll surface roughness, roll radius and roll force on the surface roughness of steel strip. The simulation results indicate that work rolls surface roughness and roll force play important roles in the products; furthermore, the effect of roll force in the first stand is opposite to the second. According to the analysis, a control method for steel strip surface roughness in a narrow range for a long time is proposed, which applies higher work roll roughness in the first stand and lower roll roughness in the second to make the steel strip roughness in a required narrow range. In the later stage of the production, decreasing the roll force in the first stand and increasing the roll force in the second stand guarantee the steel strip roughness relatively stable in a long time. The following experimental measurements on the surface topography and roughness of the steel strips during the whole process are also conducted. The results validate the simulation conclusions and prove the effect of the control method. The application of the proposed method in the steel strip production shows excellent performance including long service life of work roll and high finished product rate. How to control surface roughness of steel strip in a narrow range for a long time has become an important question because surface roughness would significantly influence the appearance of the products. However, there are few effective solutions to solve the problem currently. In this paper, considering both asperities of work roll pressing in and squeezing the steel strip, two asperity contact models including squeezing model and pressing in model in a two-stand temper mill rolling are established by using finite element method(FEM). The simulation investigates the influences of multiple process parameters, such as work roll surface roughness, roll radius and roll force on the surface roughness of steel strip. The simulation results indicate that work rolls surface roughness and roll force play important roles in the products; furthermore, the effect of roll force in the first stand is opposite to the second. According to the analysis, a control method for steel strip surface roughness in a narrow range for a long time is proposed, which applies higher work roll roughness in the first stand and lower roll roughness in the second to make the steel strip roughness in a required narrow range. In the later stage of the production, decreasing the roll force in the first stand and increasing the roll force in the second stand guarantee the steel strip roughness relatively stable in a long time. The following experimental measurements on the surface topography and roughness of the steel strips during the whole process are also conducted. The results validate the simulation conclusions and prove the effect of the control method. The application of the proposed method in the steel strip production shows excellent performance including long service life of work roll and high finished product rate.
出处 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2015年第3期573-579,共7页 中国机械工程学报(英文版)
基金 Supported by National Natural Science Foundation of China(Grant Nos.51174248,51475039)
关键词 temper mill rolling surface roughness interface contact temper mill rolling,surface roughness,interface contact
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  • 1魏峰,侯健,胡宁.正确应用表面粗糙度参数[J].计量与测试技术,1994,21(4):5-6. 被引量:5
  • 2Johnson K L 徐秉业 罗学富等译.Contact mechanics[M].北京:高等教育出版社,1992..
  • 3周庆田,白振华,王骏飞.冷连轧过程板面粗糙度模型及其应用的研究[J].中国机械工程,2007,18(14):1743-1746. 被引量:17
  • 4[5]Padwo Z,Sabatier P. Skinpass roughness transfer on galvanized and noncoated steel products. Foreign Iron and Steel,1995,20(6):62~66
  • 5Dundurs J,J Elasticity,1973年,3卷,109页
  • 6Kri mpelstatter K,,Zeman K,Kainz A.Non Circular Arc Temper Rolling Model Considering Radial and Circumferen- tial Work Roll Displacement[].Proceedings of the Eighth International Conference on Numerical Methods in Industrial Forming Processes.2004
  • 7Kiji ma H,Bay N.Modelling of Skinpass Rolling by Elasto- Plastic Analysis of Plane Strain Upsetting[].Journal of Materials.2006
  • 8Von Karman T.Onthe Theory of Rolling[].Journal of Applied Mathematics and Mechanics.1925
  • 9Fleck N A,,Johnson K L.Cold Rolling of Foil[].Proceedingsof the Institution of Mechanical EngineersPart B:Journal of Engineering Manufacture.1992
  • 10Lubomirski MS,Egan S J,Fryer C A.Application of a Non- circular Arc Roll Force Model to Temper Rolling[].AISE Steel Research.2000

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