Analysis of Influence of the Roller Number and Rolling Schedule to Straighten Quality of the Project Steel Bar

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Abstract:

Roll number and rolling schedule are the important parameters affecting the quality of steel bar straightening,when domestic manufacturer design the straightening equipment, these two parameters design basic is by analogy, so it is necessary to study these two parameters. This paper calculated the straightening roller to obtain reasonable roll number; next step quantitative calculate to obtains the theory rolling schedule, in the meantime actual measurement to obtains the practical rolling schedule of the same equipment;then based on rigid-flexible virtual prototype technology to build straightening system dynamics model. At the theory rolling schedule, and the practical rolling schedule for steel bar straighten emulation, obtained straightness and deviation of different diameter steel bar after straightening. By comparison and analysis the simulation results, we obtain the reasonable roll number and rolling schedule. In this paper, this method have reference value to design the roll number and rolling schedule for similar straightening equipment.

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590-596

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October 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] Benyue Gon. Research of Straightening Process parameters Based on Dynamic Finite Element Method. Wuhan University of Science and Technology. (2011) 1.

Google Scholar

[2] Zhifang Liu. Technological Parameter Analysis and Parametric Design and Study of Roller Leveler. Chongqing University. (2010)10-11.

Google Scholar

[3] Fu Cui. The straightening theory and straightening machine. Beijing: Metallurgical Industry Press, (2007).

Google Scholar

[4] Xijian Zheng, Zhongnan Wang, Lei Ma. Analysis of Influence Parameters of the Project Ribbed Bar Machining Quality. Applied Mechanics and Materials. 328 (2013) 426-431.

DOI: 10.4028/www.scientific.net/amm.328.426

Google Scholar

[5] Ailian Zhang, Shujian Chen. Research the flexible body modeling in ADAMS. Coal Mine Machinery. 06 (2011) 95-97.

Google Scholar

[6] Weidon Guo. Virtual Prototype Technology with ADMAS Application Instance Tutorial. Beijing : BeiHang University Press. (2008).

Google Scholar