Application of the finite-element method to a design of optimized tool geometry for the O.S.U. formability test

Author:

Suh Y. S.,Wagoner R. H.

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference21 articles.

1. A.S. Kasper, How We Will Predict Sheet Metal Formability,Met. Prog., Oct 1969, p 159-160

2. J. Gronostjski and C. Banasiak, The Effect of Anisotropie Plasticity and Work-Hardening on the Sheet Metal Drawability,Sheet Metal Forming and Energy Conservation, Ninth Biennial Congress, International Deep Drawing Research Group, American Society for Metals, 1976, p 81-96

3. S.S. Hecker, A Cup Test for Assessing Stretchability,Met. Eng. Q., Vol 14, 1974, p 30–36

4. A.K. Ghosh, The Effect of Lateral Drawing-In on Stretch Formability,Met. Eng. Q., Vol 15,1975, p 53–64

5. R.A. Ayres, W.G. Brazier, and V.F. Sajewski, Evaluating the GMR-Limiting Dome Height Test as a New Measure of Press Formability Near Plane Strain,J. Appl. Met. Wort, Vol 1,1979, p 41–49

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1. Finite element analysis to optimize forming conditions for lower control arm;Metallurgical and Materials Transactions A;2006-08

2. Formability Testing of Sheet Metals;Metalworking: Sheet Forming;2006-01-01

3. Formability of friction-stir-welded dissimilar-aluminum-alloy sheets;Metallurgical and Materials Transactions A;2005-12

4. Variability of sheet formability and formability testing;Journal of Materials Processing Technology;2002-02

5. The use of the finite-element method to design an optimized tool for the plain-strain punch stretching test;Metallurgical and Materials Transactions A;2000-01

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