The onset of flange wrinkling in the Swift cup test is analyzed as a plastic bifurcation problem. The flange is modelled as an annular plate made of an orthotropic elastic-plastic material that is isotropic in the plane of the plate. The critical drawing stress and displacement obtained employing a deformation theory of plasticity and a flow theory of plasticity are compared. The effects of flange geometry and material properties on wrinkling are investigated. Employing a simple linear elastic spring model of the blankholder, the effect of blankholder stiffness on wrinkling is studied. The present results for the critical stress at the onset of wrinkling and for the number of wrinkles are compared with those obtained previously employing a beam model of the flange.
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July 1980
Research Papers
An Analysis of Wrinkling in the Swift Cup Test
N. Triantafyllidis,
N. Triantafyllidis
Division of Engineering, Brown University, Providence, R.I. 02912
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A. Needleman
A. Needleman
Division of Engineering, Brown University, Providence, R.I. 02912
Search for other works by this author on:
N. Triantafyllidis
Division of Engineering, Brown University, Providence, R.I. 02912
A. Needleman
Division of Engineering, Brown University, Providence, R.I. 02912
J. Eng. Mater. Technol. Jul 1980, 102(3): 241-248 (8 pages)
Published Online: July 1, 1980
Article history
Received:
November 13, 1979
Online:
September 15, 2009
Citation
Triantafyllidis, N., and Needleman, A. (July 1, 1980). "An Analysis of Wrinkling in the Swift Cup Test." ASME. J. Eng. Mater. Technol. July 1980; 102(3): 241–248. https://doi.org/10.1115/1.3224806
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