A study on the parametric optimization of drawing metal stamping process for aluminum alloy tailgate parts using response surface methodology

Author:

Kim S.‐Y.1ORCID,Kim B.‐G.2,Lee T.‐G.3

Affiliation:

1. Kongju National University Future Automotive Intelligent Electronics Core Technology Cheonan-si Republic of Korea

2. Gyeongbuk Institute of IT Convergence Industry Technology Research and Development Division Gyeongsan-si Republic of Korea

3. Samsung Tech CO., LTD., R&D Center Gyeongsan-si Republic of Korea

Abstract

AbstractThe tailgate‐extension in a vehicle is a part that connects the upper and lower parts of the tailgate. Since this part does not require high strength, aluminum must be used in order to reduce the weight of the vehicle. However, when choosing aluminum, it is difficult to satisfy the shape quality with the existing manufacturing process. Therefore, this study was conducted for the purpose of optimizing the draw metal stamping process for the development of tailgate extensions for vehicles using aluminum. The response surface methodology was utilized to optimize the draw metal stamping process. The process design parameters were established as blank holding force, coefficient of friction and die speed. Finally, the reliability of the optimization process and finite element analysis was secured by conducting field experiments to review the derived optimal process conditions.

Funder

Ministry of Higher Education and Scientific Research

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference16 articles.

1. Y. D. Chung H. Kang W. S. Cho presented atSeoul 2000 FISITA World Automotive Congress Seoul Korea June 12 2000 pp. 1–4.

2. Analysis of Energy Saving and Emission Reduction of Vehicles Using Light Weight Materials

3. High strain rate tensile testing of automotive aluminum alloy sheet

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