Interface Performance Analyses of Electrodeposited Nickel Coating on ABAQUS

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In this paper, ABAQUS was used to simulate the stamping process for electrodeposited nickel coating. In the simulation, a built-in cohesive zone model of ABAQUS was used to present electrodeposited nickel coating steel‘s interface performance. The computational results shows that, at the interface, the normal stress was between -113.765~3MPa,and the maximum tangential stress is 50 MPa. The maximum interface stress is at the die fillet during the process of stamping,and we analyze the case of delaminating and is used to assess the influence of the blank holder force,the clearance between the punch and the die and the tool radii. This method can be used as guidance for battery shell’s forming manufacture.

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143-147

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July 2011

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© 2011 Trans Tech Publications Ltd. All Rights Reserved

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[1] H.X. LIU, G.Q. JIAO, W. XIONG and G.Y. GUAN: Journal of Mechanical Strength, VOL. 30 (2008), No. 2, pp.301-304.

Google Scholar

[2] B.Q. YE, X.M. YI, S.Y. JI and Z.R. LIANG: Applied Mathematics and Mechanics, VOL. 17 (1996) No. 4, pp.343-348.

Google Scholar

[3] W.C. CUI: ACTA MATERIAE COMPOSITAE SINICA, VOL. 13 (1996) No. 4, pp.102-111.

Google Scholar

[4] Van den Bosch, M.J., et al.: Journal of Materials Processing Technology, VOL. 209(2009) No. 1, pp.297-302.

Google Scholar

[5] P.H. CHEN and Y.N. CHAI: Journal of Nanjing University of Aeronautics &Astronautics, VOL. 40(2008) No. 4, pp.442-446.

Google Scholar

[6] L.M. JIANG: A Pressurized Blister Test Model for the Interface Adhesion of Dissimilar Elastic-plastic Materials (MS., Xiangtan University, China 2008), pp.19-22.

Google Scholar

[7] C.X. HU and Y.H. SONG: Theory and Application of Coating Technology (Chemical Industry Press, China 2000), pp.374-375.

Google Scholar

[8] L.H. Xiao, X.P. Su, J.H. Wang and Y.C. Zhou: Materials Science and Engineering, VOL. 501(A) (2009), pp.235-241.

Google Scholar