Advanced Models for the Prediction of Forming Limit Curves
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Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/978-3-319-44070-5_5
Reference222 articles.
1. Abbasi M, Ketabchi M, Izadkhah H, Fatmehsaria DH, Aghbash AN (2011) Identification of GTN model parameters by application of response surface methodology. Procedia Eng 10:415–420
2. Abbasi M, Shafaat MA, Ketabchi M, Haghshenas DF, Abbasi M (2012a) Application of the GTN model to predict the forming limit diagram of IF-Steel. J Mech Sci Technol 26:345–352
3. Abbasi M, Bagheri B, Ketabchi M, Haghshenas DF (2012b) Application of response surface methodology to drive GTN model parameters and determine the FLD of tailor welded blank. Comp Mater Sci 53:368–376
4. Abbasi M, Ketabchi M, Ramazani A, Abbasi M, Prahl U (2012c) Investigation into the effects of weld zone and geometric discontinuity on the formability reduction of tailor welded blanks. Comp Mater Sci 59:158–164
5. Abedrabbo N, Pourboghrat F, Carsley J (2006) Forming of aluminium alloys at elevated temperatures—Part 2: numerical modelling and experimental verification. Int J Plast 22:342–373
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