Wrinkling Prediction of Rectangular Cup Deep Drawing Process for Aluminum Alloy Sheets by Using the Modified Yoshida Buckling Test

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Abstract:

Nowadays, the industry has been growing interest in lightweight material for automotive and cookware manufacturing. The formability of sheet material is an important issue in these industries. The wrinkling behavior is one of the most failure in sheet metal forming and is often occurred in deep drawing process in cookware manufacturing. In this work, the developed wrinkling limit curves (WLCs) using experimental and numerical simulation of a modified Yoshida buckling test were precisely used to predict the wrinkling behavior of rectangular cup deep drawing for aluminum alloy sheets grade AA5054-O and AA5052-H32. The Industrial parts, the rectangular cup deep drawing was firstly performed for both investigated aluminum sheets for obtaining the wrinkling initiation on the side wall area of deep drawing parts. Subsequently, the experimental formed parts were carefully measured the draw-in of deformed blank sheets and drawing depth to validate the finite element (FE) model. Then, the FE simulation of the corresponding drawing tests were calculated, by which were implemented with the Hill’48 yield criterion and Swift hardening law to descript anisotropic plastic deformation. As a result, the local principle Major and Minor principle strains of observed wrinkle areas were gathered in the side wall area of the rectangular cup deep drawing test. Finally, the developed WLCs of aluminum alloy sheets were applied to predict the wrinkling formation of the formed deep drawing parts. Comparatively, the influence of different aluminum alloy grades on the WLCs and wrinkling behavior were explicitly investigated.

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143-151

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August 2020

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© 2020 Trans Tech Publications Ltd. All Rights Reserved

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[1] D. Banabic, Sheet Metal Forming Processes Constitutive Modelling and Numerical Simulation, First ed., Springer Verlag Berlin Heidelberg, (2010).

Google Scholar

[2] C. H. Pham, T. H. Sandrine, Y.M. Pierre, Twisting analysis of ultra-thin metallic sheets, J. Mater. Proc.Tech. 214 (4) (2014) 844-855.

Google Scholar

[3] S.H. Kim, Improvement of the surface quality of an automotive member by a modification of the stamping tool, J.Mater. Proc.Tech. 187 (2007) 387-391.

DOI: 10.1016/j.jmatprotec.2006.11.210

Google Scholar

[4] S.S. Anarestani, M.R. Morovvati, Y.A. Vaghasloo, Influence of anisotropy and lubrication on wrinkling of circular plates using bifurcation theory, Int. J. Mater. Forming. 8 (3) (2015) 439-454.

DOI: 10.1007/s12289-014-1187-6

Google Scholar

[5] J.B. Kim, D.Y. Yang, Prediction of wrinkling initiation in sheet metal forming processes, J. Eng. Comput. 20 (1) (2003) 6-39.

DOI: 10.1108/02644400310458810

Google Scholar

[6] J.B. Kim, J.W. Yoon, D.Y. Yang, Investigation into the wrinkling behaviour of thin sheets in the cylindrical cup deep drawing process using bifurcation theory, Int. J. Num. Method. Eng. 56 (12) (2003) 1673-1705.

DOI: 10.1002/nme.629

Google Scholar

[7] T.X. Yu, W. Johnson, The buckling of annular plates in relation to the deep-drawing process, Int. J. Mech. Sci. 24 (3) (1982) 175-188.

DOI: 10.1016/0020-7403(82)90036-4

Google Scholar

[8] M. Liewald, F. Han, A new approach for determination of the wrinking limit curve (WLC) in deep drawing, Proceeding of Forming Technology Forum (FTF2015), Zurich, 29-30 June (2015).

Google Scholar

[9] F. Han, M. Liewald, A New Method to Enhance the Accuracy of the Buckling Test Using Modified Yoshida Sample, Adv. Mater. Res. 1018. (2014) 199-206.

DOI: 10.4028/www.scientific.net/amr.1018.199

Google Scholar

[10] F. Han, R. Radonjic, New Approach for Wrinkle Prediction in Deep Drawing Process, Key. Eng. Mater. 639 (2015) 459-466.

DOI: 10.4028/www.scientific.net/kem.639.459

Google Scholar

[11] M. Liewald, F. Han, R. Radonjic, New Criterion for Prediction of the Wrinkle Formation in Deep Drawing Process, Key Eng. Mater. 651 (2015) 71-76.

DOI: 10.4028/www.scientific.net/kem.651-653.71

Google Scholar

[12] C.Yamchoang, N. Seemuang, V. Uthaisangsuk, S. Panich, submitted to e-proceeding of 2nd MRS Thailand International Conference, Pattaya, Thailand, 10-12 July (2019).

Google Scholar

[13] R. Hill, A theory of the yielding and plastic flow of anisotropic metals, Proc. R. Soc. Lond, 193 (1948) 281-297.

Google Scholar