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Criterion and mode of the forming limit in sheet forming

✍ Scribed by Hitoshi Moritoki


Publisher
Elsevier Science
Year
1992
Tongue
English
Weight
755 KB
Volume
31
Category
Article
ISSN
0924-0136

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✦ Synopsis


In this paper, the forming limit of sheet metals is examined, with respect to the collapse of the unique solution. In general, there are two cases bringing about multiplicity: one is statically-admissible multiplicity and the other is kinematically-admissible multiplicity. The multiplicities are considered to correspond to plastic instability. After the appearance of statical instability, the strain path cannot be controlled as freely as would be preferred. Ultimately, localized necking occurs when the process satisfies the condition of kinematical instability, the mode of which is consistent with one of the two modes required from the condition permitting strain-rate discontinuity under the continuity of velocity. These instabilities are compared with the diffuse necking of Swift and with the localized necking of Hill from the standpoints of criterion and mode. The dependency of formabilities on the strain path is discussed in terms of several assumed strain paths.


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The application of a ductile fracture cr
✍ Hongsheng Liu; Yuying Yang; Zhongqi Yu; Zhenzhong Sun; Yongzhi Wang πŸ“‚ Article πŸ“… 2009 πŸ› Elsevier Science 🌐 English βš– 665 KB

To predict accurately the forming limit in sheet metal forming, the combination of FE simulation with tension tests is adopted in this paper to determine the material constants p and C in a ductile fracture criterion (DFC), which is advanced by the author. Forming limits of bore-expanding, hemispher