Research on Finite Element Simulation of the Big Size Spring Steel in Continuous Grooveless Rolling

Article Preview

Abstract:

The basis of the rolling process parameters of large size spring steel for the simulation calculation,the finite element model was establishe. the calculation results reveal the reasons about the billet heap and the low precision products, the rolling program file about continuous rolling pass and technology of the rolling mill was revised and perfected, the continuity and stability of the large size spring flat steel in continuous slotless roughing rolling is improved greatly, and the unit operation efficiency increased.

You might also be interested in these eBooks

Info:

Periodical:

Advanced Materials Research (Volumes 941-944)

Pages:

1859-1864

Citation:

Online since:

June 2014

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2014 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] R.D. W Eben. Wire rod rolling on flat rolls [J]. Journal of Wire INDUSTRY, 1975, (3) : 200-203.

Google Scholar

[2] Jinghua Liu. Small rolling mill technology and electrical control. Beijing: metallurgical industry press, 2000: 101. 107 In Chinese.

Google Scholar

[3] Dexian Song. No rolling [J]. Jiangsu metallurgy, 2000, (5) : 10. 13 In Chinese.

Google Scholar

[4] Changdong Zhong. Bar rolling production practice of sichuan. Shuicheng steel science and technology, 1994, (2) In Chinese.

Google Scholar

[5] GuoDong Xiao. Rod roughing mill group without rolling technology development and application. Steel rolling, the third stage: 2005 15-17 In Chinese.

Google Scholar

[6] Huiyu Wang. Slotless rolling technology in roughing H - V on the development and application of unit. Shandong metallurgy, 2011. 10 In Chinese.

Google Scholar

[7] Huohong Chen. New MARC finite element instance tutorial. Machinery industry press, August 2007 In Chinese.

Google Scholar

[8] Jiangbo Dai. 2800 mm plate mill rolling force model research. Journal of USTB(University of Science and Technology Beijing), 2002. 6 In Chinese.

Google Scholar

[9] Shouhan Huang. Plastic deformation and rolling principle [M]. Beijing: metallurgical industry press, 1991. 172 200. In Chinese.

Google Scholar

[10] Chun Xu. Rolling pass design [M]. Beijing: chemical industry press, 2008 In Chinese.

Google Scholar

[11] Weigang Zhang, without rolling workpiece stability condition research [J]. Journal of hunan metallurgical, 1989 (3) : 11-14 In Chinese.

Google Scholar