Failure analysis based on microvoid growth for sheet metal during uniaxial and biaxial tensile tests
Author:
Publisher
Elsevier BV
Subject
Applied Mathematics,General Mathematics
Reference36 articles.
1. Baldi A, Medda A, Bertolino F. Comparing two different approaches to the identification of the plastic parameters of metals in post-necking regime. In: Proceedings of the SEM annual conference, Indianapolis, Indiana, USA, June 7–10, 2010.
2. Computer-aided identification of the yield curve of a sheet metal after onset of necking;Koc;Comput Mater Sci,2004
3. Finite element analysis of tensile testing with emphasis on necking;Joun;Comput Mater Sci,2007
4. A parametric finite element study and an analytical model of particle distributions on post-necking deformation and failure mode in AA5754 aluminum alloy sheets;Hu;Int J Fract,2010
5. An analysis of shear localization during bending of a polycrystalline sheet;Becker;J Appl Mech-Trans ASME,1992
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