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A novel approach to springback control of high-strength steel in cold roll forming.

Authors :
Jiao-Jiao, Cheng
Jian-Guo, Cao
Qiu-Fang, Zhao
Jiang, Liu
Ning, Yu
Rong-guo, Zhao
Source :
International Journal of Advanced Manufacturing Technology; Mar2020, Vol. 107 Issue 3/4, p1793-1804, 12p, 1 Color Photograph, 1 Black and White Photograph, 7 Diagrams, 2 Charts, 14 Graphs
Publication Year :
2020

Abstract

To high-precision control the springback of high-strength steel (HSS) in cold roll forming, the 3D finite element analysis (FEA) models of hat-shaped sectional HSS roll forming process were built with the professional roll forming software COPRA. Two conventional angle adjusting methods for HSS, i.e., the Namaste-type and the Platform-type applied widely for complex-sectional normal steel, easily lead to the edge waves and asymmetric behavior, respectively, especially high springback that is difficult to control by the FEA simulation and practical production of HSS cold roll forming process. The roll design of the UDT (USTB-Durable T)-type angle adjusting method was developed to significantly reduce springback with the improvement of the edge waves and asymmetric behavior in the hat-shaped sectional HSS roll forming process by the FEA simulation. The proposed angle compensation method based on UDT-type angle adjusting method achieved high-precision springback control by the FEA simulation, which provides a novel approach for springback control effectively in complex-sectional HSS roll forming process. The industrial application gives remarkable results that the hat-shaped sectional HSS product can strictly meet market requirements of less than 0.5° by the proposed angle compensation method based on UDT-type angle adjusting method. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02683768
Volume :
107
Issue :
3/4
Database :
Complementary Index
Journal :
International Journal of Advanced Manufacturing Technology
Publication Type :
Academic Journal
Accession number :
142648792
Full Text :
https://doi.org/10.1007/s00170-020-05154-8