Experimental and numerical prediction and comprehensive compensation of springback in cold roll forming of UHSS

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ORIGINAL ARTICLE

Experimental and numerical prediction and comprehensive compensation of springback in cold roll forming of UHSS Xiao-li Liu 1 & Jian-guo Cao 2 & Su-xia Huang 1,2 & Bin Yan 2 & Yan-lin Li 2 & Rong-guo Zhao 3 Received: 12 September 2019 / Accepted: 22 September 2020 / Published online: 2 October 2020 # Springer-Verlag London Ltd., part of Springer Nature 2020

Abstract Ultra-high-strength steels (UHSS), for instance, dual phase (DP) and martensitic steels, get growing challenges in strip metal forming processes of car industry manufacturing to achieve lightweight and improve passenger security. Predict and compensate for springback is still a major problems to be solved in cold roll forming (CRF) for complex section materials. In this study, the springback performance UHSS in cold roll forming is discussed by simulation and experimental methods. At the same time, one 3D FEA model was established to analyze the CRF process by COPPA RF and MSC MARC, in which planar swift’s model, anisotropic Hill’s 48 model, and Yid2000-2d model in the company with Yoshida-Uemori kinematic hardening pattern were investigated. Automobile threshold section CRF experiment and springback evaluation carried out through the comparison of numerical results. Considering Yoshida-Uemori kinematic hardening, the anisotropic Yid2000-2d model improves the springback prediction accuracy in CRF car threshold section in comparison with other models. The improved model is used to compensate the springback of product. A new method is proposed, which takes into account angle overbending compensation (AOC), small radius compensation (SRC), and revere-bending compensation (RBC) based on roll shape design. The method, which we call “USTB-Durable Integration of Springback Control (UDI),” is general for it considers the fact radius and angle would occur during springback. Compared with the AOC, SRC, and RBC method, the new method has higher precision especially for the springback compensation of ultra-high-strength complex section in CRF. The researchers are expected to conduct design engineer to calculate and compensate the springback trend before applying roller design to actual production. Keywords UHSS . Springback . Cold roll forming . UDI method . Finite element analyses

1 Introduction UHSS has been applied in automotive to better the crashworthiness, lightweight design, and cost-effective production methods [1]. In particular, dual phase (DP) and martensitic steel has been drawn attention in auto manufacturing to lighten the weight and increase the security of passengers. Compared with others forming, CRF is the gradually forming processes of strips by pairs of silhouetted rollers at ordinary

* Xiao-li Liu [email protected] 1

College of Mechanical and Equipment Engineering, Hebei University of Engineering, Handan 056038, Hebei, China

2

School of Mechanical Engineering, University of Science and Technology Beijing, Beijing 100083, China

3

Jiangsu Durable Machinery Co., Yangzhou 225100, Jiangsu, China

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