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Modeling of Critical Blank Holder Force Based on a Gap Limit and Unbending Strain Energy in Deep Drawing Process Ubaya Repository IJET Full New

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Candra, Susila

University of Surabaya, Department of

Manufacturing Engineering, Surabaya, Indonesia Author ID: 55655694300

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Other name formats: Candra, S.

Subject area: Engineering Materials Science

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Document title Authors Year Source Cited by

Modeling of the minimum variable blank holder force based on forming limit diagram (FLD) in deep drawing process

Open Access

Candra, S., Batan, I.M.L., Berata, W., Pramono, A.S.

2017 IOP Conference Series: Materials Science and Engineering

0

Analytical study and FEM simulation of the maximum varying blank holder force to prevent cracking on cylindrical cup deep drawing

Open Access

Candra, S., Batan, I.M.L., Berata, W., Pramono, A.S.

2015 Procedia CIRP 3

Modeling of critical blank holder force based on a gap limit and unbending strain energy in deep drawing process

Candra, S., Batan, I.M.L., Berata, W., Pramono, A.S.

2015 International Journal of Engineering and Technology

0

Simulation of semi-active the blank holder force control to prevent wrinkling and cracking in deep drawing process

Candra, S., Batan, I.M.L., Berata, W., Pramono, A.S.

2014 Applied Mechanics and Materials

2

Simulation of metal flow to investigate the application of antilock brake mechanic system in deep drawing process of cup

Candra, S., Batan, I.M.L., Pramono, A.S., Pramujati, B.

2013 Advanced Materials Research 2

Experimental study and analysis of the influence of drawbead against restriction and deep drawing force of rectangular cup-cans with tin plate material

Candra, S., Batan, I.M.L. 2013 Applied Mechanics and Materials

2

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Gambar

Figul'c3. f inite element model ッヲ
TABLE I Oirm:nsion ofTools
Table II I shows the gap limitanals around 180% of initial thickness, is still permitted to usc as a reference
Figure6. FE simulation resulls; Wrinkling wave he1ght of cross sec lion ofnange at punch stroke of I 0 mm and 14 mm

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