DarianiB. M.AzodiH. D., ‘Finding the optimum Hill index in the determination of the forming limit diagram’Proc. IMechE, Part B: J. Engineering Manufacture217 (B12) (2003): 1677–1683 DOI: 10.1243/095440503772680604.
2.
HutchinsonJ. W.NealeK. W.Sheet necking II, time-independent behavior. In Mechanics of sheet metal forming (Eds KoistinenD. P.WangN. M.), 1978, pp. 127–153 (Plenum Press, New York–London).
3.
SignorelliJ. W.BertinettiM. A.TurnerP. A.Predictions of forming limit diagrams using a ratedependent polycrystal self-consistent plasticity model. Int. J. Plasticity, 2008 (in press).
4.
JohnN. C.AgnewS. R.Crystal plasticity-based forming limit prediction for non-cubic metals: Application to Mg alloy AZ31B. Int. J. Plasticity, 2008 (in press).
5.
ShakeriM.SadoughA.DarianiB. M.Effect of prestraining and grain size on the limit strains in sheet metal forming. Proc. IMechE, Part B: J. Engineering Manufacture, 2000, 214(B9), 821–827. DOI: 10.1243/0954405001517892.
6.
ShakeriM.DarianiB. M.SadoughA.Forming limit diagram of metal sheet in actual strain path with respect to forming process. In Proceedings of fifth International Conference on Computational methods in contact mechanics, Seville, Spain, 2001, pp. 153–161.
7.
SadoughA.ShakeriM.DarianiB. M.Theoretical and experimental analysis of sheet metal formability limits. Rev. Metall. CIT Sci. Genie Mater., May 2000, 663–670.