Study of the Parameters of Deep Drawing Process Based on the Simulation of Dynaform

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A simulation of deep drawing process on the sheet metal was done by using Dynaform, the influence of blank holder force, deep drawing speed and friction coefficient on the forming speed of sheet metal in the deep drawing process were got. The forming speed of sheet metal determines the quality of deep drawing, in the deep drawing process the blank holder force and the deep drawing speed are controllable parameters, the friction coefficient can be intervened and controlled, and it’s a manifestation of the interaction of all parameters, the main factors which influence the friction coefficient just have blank holder force, deep drawing speed and lubrication except the material. The conclusion of this study provides the basic data for the analysis of the lubrication of mould, the study of lubricant and the prediction of the service life of deep drawing die.

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51-58

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December 2012

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] QIN Siji, Analytical solution of stress in flange deformation in axisymmetrical deep drawing process, J. Journal of Mechanical Engineering. 47(24) (2011) 20-25.

DOI: 10.3901/jme.2011.24.020

Google Scholar

[2] XIE Yanmin, YU Huping, CHEN Jun, et al, Application of grey theory in deep drawing robust design, J. Journal of Mechanical Engineering. 43(3) (2007) 54-59.

DOI: 10.3901/jme.2007.03.054

Google Scholar

[3] ZHANG ZHiyuan, ZHAO Shengdun, ZHANG Yong, et al, Analysis on various of rupture instability during cylindrical cups deep drawing, J. Journal of Mechanical Engineering. 43(3) (2007) 155-159.

DOI: 10.3901/jme.2007.03.154

Google Scholar

[4] REN Yunlai, LÜ Yachen, PENG Jiageng, et al, Effect of relative thickness on tapered part drawing , J. Journal of Mechanical Engineering. 46(8) (2010) 51-55.

DOI: 10.3901/jme.2010.08.051

Google Scholar

[5] MA Rui, ZHAO Jun, QU Xiaoyang, Control law of variable BHF and its prediction in intelligent deep drawing for rectangular box, J. Journal of Mechanical Engineering. 46(8) (2010) 32-36.

DOI: 10.3901/jme.2010.08.032

Google Scholar

[6] WANG Huiting, ZHANG Jing, GAO Lin, et al, Hydrodynamic deep drawing process with hybrid blank holder, J. Journal of Mechanical Engineering. 47(16) (2011) 73-78.

DOI: 10.3901/jme.2011.16.073

Google Scholar

[7] WANG Huiting, GAO Lin, SHEN Xiaohui, et al, Hydraulic-pressure augmented deep drawing with fluid assisted blank holder, J. Journal of Mechanical Engineering. 46(12) (2010) 76-80.

DOI: 10.3901/jme.2010.12.076

Google Scholar

[8] Salman Norouzi, Amir Reza Yaghoubi, Mohammad Bakhshi-Jooybari, et al, Experimental study of drawing load curves in forming conical parts by hydroforming and conventional deep drawing processes, J. Advanced Materials Research. 291-294(2011).

DOI: 10.4028/www.scientific.net/amr.291-294.556

Google Scholar

[9] P. Groche, C. Kloepsch, N. Moeller, Numerical analysis of the potential of deep drawing processes with hydrostatic pressure lubrication, J. Production Engineering. 6(2) (2012)157-167.

DOI: 10.1007/s11740-012-0374-x

Google Scholar

[10] Jianzhong Wang, Jingang Qi, Experimental investigation of formability enhancement using hydraulic counter pressure assisted warm deep drawing, J. Advanced Materials Research. 299-300(2011) 364-367.

DOI: 10.4028/www.scientific.net/amr.299-300.364

Google Scholar

[11] WANG Yinzhi, Numerical simulation and analysis of rectangular case's forming based on Dynaform, J. Machine Tool & Hydraulics. 39(13) (2011) 114-117.

Google Scholar

[12] YANG Lijun, QI Yanmei, DANG Xin'an, Technology of numerical simulation for deep drawing cylindrical parts based on DYNAFORM, J. Machinery Design & Manufacture. 10(2011) 228-230.

Google Scholar

[13] XIA Mujian, ZHANG Yue, ZHOU Guanghong, et al, Numerical simulation of deep drawing process for shallow tapered surface based on Dynaform, J. Hot Working Technology. 40(1) (2011) 102-104.

Google Scholar

[14] WANG Hui, WEI Ruiyuan, YUAN Juntao, et al, The research of box-drawing based on variable blank-holder force, J. Machinery Design & Manufacture. 7(2010) 95-96.

Google Scholar

[15] CHANG Chenyang, ZHAI Jingmei, XIA Qinxiang, et al, Numerical analysis of deep drawing process for cylindrical cup with flange based on servo-press, J. Forging & Stamping Technology. 36(4) (2011) 59-63.

Google Scholar