During a sheet metal forming process of automotive outer panels, the air trapped between a blank sheet and a die tool can become highly compressed, ultimately influencing the blank deformation and the press force. To prevent this problem, vent holes are drilled into die tools and needs several tens to hundreds according to the model size. The design and the drilling of vent holes are based on expert's experience and try-out result and thus the process can be one of reasons increasing development cycle. Therefore the study on the size, the number, and the position of vent holes is demanded for reducing development cycle, but there is no simulation technology for analyzing forming defects, making numerical sheet metal forming process simulations that incorporate the fluid dynamics of air. This study presents a sheet metal forming simulation of automotive outer panels (a roof and a body side outer) that simultaneously simulates the behavior of air in a die cavity. Through CAE results, the effect of air behavior and vent holes to blank deformation was analyzed. For this study, the commercial software PAM-STAMP{trade mark, serif} and PAM-SAFE{trade mark, serif} was used.
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16 December 2013
NUMISHEET 2014: The 9th International Conference and Workshop on Numerical Simulation of 3D Sheet Metal Forming Processes: Part A Benchmark Problems and Results and Part B General Papers
6–10 January 2014
Melbourne, Australia
Research Article|
December 16 2013
A sheet metal forming simulation of automotive outer panels considering the behavior of air in die cavity
Kwang Yong Choi;
Kwang Yong Choi
Virtual Manufacturing Solution, Hankook ESI Co., 4F Ryuhsan Bldg. 134-1, Gayang-dong, Gangseo-Gu, Seoul, 157-033,
Republic of Korea
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Yun Chang Kim;
Yun Chang Kim
Stamping Tool Design Team 2, Production Development Division, Kia Motors, 1714, Ihwa-Ri, Ujeong-Eub, Hwaseong-Si, Gyeonggi-Do, 445-706,
Republic of Korea
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Hee Kwan Choi;
Hee Kwan Choi
Stamping Tool Design Team 2, Production Development Division, Kia Motors, 1714, Ihwa-Ri, Ujeong-Eub, Hwaseong-Si, Gyeonggi-Do, 445-706,
Republic of Korea
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Chul Ho Kang;
Chul Ho Kang
Stamping Tool Design Team 2, Production Development Division, Kia Motors, 1714, Ihwa-Ri, Ujeong-Eub, Hwaseong-Si, Gyeonggi-Do, 445-706,
Republic of Korea
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Heon Young Kim
Heon Young Kim
Department of Mechanical and Biomedical Engineering, Kangwon National University, 192-1, Hyoja2-dong, Chuncheon-si, Gangwon-do, 200-701,
Republic of Korea
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Kwang Yong Choi
Yun Chang Kim
Hee Kwan Choi
Chul Ho Kang
Heon Young Kim
Virtual Manufacturing Solution, Hankook ESI Co., 4F Ryuhsan Bldg. 134-1, Gayang-dong, Gangseo-Gu, Seoul, 157-033,
Republic of Korea
AIP Conf. Proc. 1567, 808–811 (2013)
Citation
Kwang Yong Choi, Yun Chang Kim, Hee Kwan Choi, Chul Ho Kang, Heon Young Kim; A sheet metal forming simulation of automotive outer panels considering the behavior of air in die cavity. AIP Conf. Proc. 16 December 2013; 1567 (1): 808–811. https://doi.org/10.1063/1.4850093
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