FEM simulation and experimental verification of roll forming and springback process under complex contact conditions

被引:0
作者
Yan, Yu [1 ]
Wu, Qingyuan [1 ]
Ai, Zhengqing [1 ]
Jia, Fanghui [1 ]
机构
[1] School of Mechanical and Materials Engineering, North China University of Technology, Beijing
基金
中国国家自然科学基金;
关键词
Complex contact condition; Experiment; FEM simulation; Roll forming; Springback;
D O I
10.3772/j.issn.1006-6748.2015.04.009
中图分类号
学科分类号
摘要
The application of advanced high strength steel (AHSS) has an important significance in the development of the lightweight of automobile, but the parts made of AHSS usually have defects, such as fracture and large amount of springback, etc. In this paper, a model of multi-pass roll forming and springback process of AHSS is established with finite element software ABAQUS. Then a roll forming experiment is performed, and simulation and experimental results have been compared and analyzed. The model is established under complex contact conditions, including self-contact condition. The results shows that during the process of sheet bending, large Mises stresses appear at bending corners. The smaller the bending radius is, the larger the Mises stress and strain are. Thickness of sheet metal changes differently if the bending radius is different. When the bending radius exceeds a certain limit, the change tendency of the sheet thickness turns from increase to decrease. Copyright © by HIGH TECHNOLOGY LETTERS PRESS.
引用
收藏
页码:433 / 438
页数:5
相关论文
共 10 条
[1]  
Ma M.T., Shi M.F., Advanced High Strength Steel and it's Applications in Automobile Industry, Iron and Seel, 39, 7, pp. 68-72, (2004)
[2]  
Hu S.D., Luo W., Chen N., Et al., Simulation program for cold roll forming, Journal of Wuhan University of Science and Technology (Natural Science Edition), 33, 5, pp. 468-472, (2010)
[3]  
Ni Z.Y., Wang L.F., Wu Z.Q., FEM Simulation of Cold Roll Forming Process, Journal of Shandong Jiaotong University, 15, 3, pp. 72-75, (2007)
[4]  
Cavaguti M., Ferreira J.V., Minimizing the edge buckling of the cold roll-forming process, IOP Conference Series: Materials Science and Engineering, 10, 1, (2010)
[5]  
Wiebenga J.H., Weiss M., Rolfe B., Et al., Product defect compensation by robust optimization of a cold roll forming process, Journal of Material Processing Technology, 213, 6, pp. 978-986, (2013)
[6]  
Yan Y., Wang H.B., Li Q., Et al., Simulation and experimental verification of flexible roll forming of steel sheets, The International Journal of Advanced Manufacturing Technology, 72, pp. 209-220, (2014)
[7]  
Han F., Wang S.P., Research of edge-wave mechanism in flexible roll-forming, Journal of Plasticity Engineering, 20, 5, pp. 117-121, (2013)
[8]  
Yang W.Z., Yan Y., Cao K.Y., Et al., Analysis of local heating of high-strength steel roll forming, Journal of North China University of Technology, 25, 3, pp. 76-81, (2013)
[9]  
Liu X.F., Lei J.X., Ding H., Et al., Numerical simulation of multi-pass roll forming process of anode plate, Die & Mould Industry, 35, 10, pp. 6-11, (2009)
[10]  
(2011)