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Published in: Journal of Materials Engineering and Performance 6/2020

26-06-2020

Determination of the Forming-Limit Diagram from Deformations within Necking Instability: A Digital Image Correlation-Based Approach

Authors: A. Roatta, M. Stout, J. W. Signorelli

Published in: Journal of Materials Engineering and Performance | Issue 6/2020

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Abstract

It is now possible using digital-image correlation techniques to precisely measure deformation within a developing necking instability, during forming-limit experiments. However, the current standards for measuring limit strains rely only on data outside of the instability. We propose exactly the opposite, to use just those deformations from the material where the instability will develop. Marciniak and Kuczynski experiments were performed on a drawing-quality steel and the entire deformation history recorded with a high-resolution photographic camera. The strain fields from these image were analyzed with the digital-image correlation program NCORR, concentrating on where the necking instability would form. The Merklein et al. (CIRP Ann Manuf Technol 59:295-298, 2010) and Hotz et al. (Key Eng Mater 549:397-404, 2013) temporal analyses were modified through an original smoothing technique to uniquely identify, through a correspondence of results, when the deformation acceleration rate begins to rapidly increase within the developing instability. This defines a limit strain. These results were compared to the standard Bragard-type determination specified in the norm International Standard ISO 12004-2:2008 (Metallic materials—sheet and strip: determination of forming-limit curves. Part 2—determination of forming-limit curves in the laboratory, International Organization for Standardization, Geneva, 2008). We found a close agreement in balanced-biaxial tension between our proposed technique and the standard Bragard-type analysis. However, in plane-strain and uniaxial deformation the standard analysis appeared to be excessively conservative, by as much as 40% for our steel.

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Appendix
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Literature
1.
go back to reference J. Blaber, B. Adair, and A. Antoniou, Ncorr: Open-Source 2D Digital Image Correlation Matlab Software, Exp. Mech., 2015, 55, p 1105–1122CrossRef J. Blaber, B. Adair, and A. Antoniou, Ncorr: Open-Source 2D Digital Image Correlation Matlab Software, Exp. Mech., 2015, 55, p 1105–1122CrossRef
2.
go back to reference A. Bragard, J.C. Baret, and H. Bonnarens, A Simplified Technique to Determine the FLD at the Onset of Necking, Rapp. Centre Rech. Metall., 1972, 33, p 53–63 A. Bragard, J.C. Baret, and H. Bonnarens, A Simplified Technique to Determine the FLD at the Onset of Necking, Rapp. Centre Rech. Metall., 1972, 33, p 53–63
3.
go back to reference M. Gensamer, Strength and Ductility, Trans. Am. Soc. Met., 1946, 36, p 30–60 M. Gensamer, Strength and Ductility, Trans. Am. Soc. Met., 1946, 36, p 30–60
4.
go back to reference G.M. Goodwin, Application of Strain Analysis to Sheet Metal Forming Problems in the Press Shop, SAE Technical Paper, No. 680093 (1968), pp. 380–387 G.M. Goodwin, Application of Strain Analysis to Sheet Metal Forming Problems in the Press Shop, SAE Technical Paper, No. 680093 (1968), pp. 380–387
6.
go back to reference A.K. Ghosh and S. Hecker, Failure in Thin Sheets Stretched Over Rigid Punches, Metall. Mater. Trans. A, 1975, 6A, p 1065–1074CrossRef A.K. Ghosh and S. Hecker, Failure in Thin Sheets Stretched Over Rigid Punches, Metall. Mater. Trans. A, 1975, 6A, p 1065–1074CrossRef
7.
go back to reference A.K. Ghosh, The Influence of Strain Hardening and Strain-Rate Sensitivity on Sheet Metal Forming, Trans. ASME J. Eng. Mater. Technol., 1977, 99(3), p 264–274CrossRef A.K. Ghosh, The Influence of Strain Hardening and Strain-Rate Sensitivity on Sheet Metal Forming, Trans. ASME J. Eng. Mater. Technol., 1977, 99(3), p 264–274CrossRef
8.
go back to reference W. Hotz, M. Merklein, A. Kuppert, H. Friebe, and M. Klein, Time Dependent FLC Determination: Comparison of Different Algorithms to Detect the Onset of Unstable Necking Before Fracture, Key Eng. Mater., 2013, 549, p 397–404CrossRef W. Hotz, M. Merklein, A. Kuppert, H. Friebe, and M. Klein, Time Dependent FLC Determination: Comparison of Different Algorithms to Detect the Onset of Unstable Necking Before Fracture, Key Eng. Mater., 2013, 549, p 397–404CrossRef
9.
go back to reference International Standard ISO 12004-2:2008, Metallic Materials—Sheet and Strip: Determination of Forming-Limit Curves. Part 2—Determination of Forming-Limit Curves in the Laboratory, International Organization for Standardization, Geneva, 2008 International Standard ISO 12004-2:2008, Metallic Materials—Sheet and Strip: Determination of Forming-Limit Curves. Part 2—Determination of Forming-Limit Curves in the Laboratory, International Organization for Standardization, Geneva, 2008
10.
go back to reference R.A. Iquilio, F.M. Castro Cerda, A. Monsalve, C.F. Guzmán, S.J. Yanez, J.C. Pina, F. Vercruysse, R.H. Petrov, and E.I. Saavedra, Novel Experimental Method to Determine the Limit Strain by Means of Thickness Variation, Int. J. Mech. Sci., 2019, 153-154, p 208–218CrossRef R.A. Iquilio, F.M. Castro Cerda, A. Monsalve, C.F. Guzmán, S.J. Yanez, J.C. Pina, F. Vercruysse, R.H. Petrov, and E.I. Saavedra, Novel Experimental Method to Determine the Limit Strain by Means of Thickness Variation, Int. J. Mech. Sci., 2019, 153-154, p 208–218CrossRef
11.
go back to reference S.P. Keeler and W.A. Backofen, Plastic Instability and Fracture in Sheets Stretched Over Rigid Punches, Trans. Am. Soc. Met., 1963, 56, p 25–48 S.P. Keeler and W.A. Backofen, Plastic Instability and Fracture in Sheets Stretched Over Rigid Punches, Trans. Am. Soc. Met., 1963, 56, p 25–48
12.
go back to reference M.E. Leonard, F. Ugo, M. Stout, and J.W. Signorelli, A Miniaturized Device for the Measurement of Sheet Metal Formability Using Digital Image Correlation, Rev. Sci. Instrum., 2018, 085114, p 89–95 M.E. Leonard, F. Ugo, M. Stout, and J.W. Signorelli, A Miniaturized Device for the Measurement of Sheet Metal Formability Using Digital Image Correlation, Rev. Sci. Instrum., 2018, 085114, p 89–95
13.
go back to reference Z. Marciniak and K. Kuczynski, Limit Strains in the Processes of Stretch-Forming Sheet Metal, Int. J. Mech. Sci., 1967, 9, p 609–620CrossRef Z. Marciniak and K. Kuczynski, Limit Strains in the Processes of Stretch-Forming Sheet Metal, Int. J. Mech. Sci., 1967, 9, p 609–620CrossRef
14.
go back to reference A.J. Martínez-Donaire, F.J. García-Lomas, and C. Vallellano, New Approaches to Detect the Onset of Localised Necking in Sheets under through-Thickness Strain Gradients, Mater. Des., 2014, 57, p 135–145CrossRef A.J. Martínez-Donaire, F.J. García-Lomas, and C. Vallellano, New Approaches to Detect the Onset of Localised Necking in Sheets under through-Thickness Strain Gradients, Mater. Des., 2014, 57, p 135–145CrossRef
15.
go back to reference M. Merklein, A. Kuppert, and M. Geiger, Time Dependent Determination of Forming Limit Diagrams, CIRP Ann. Manuf. Technol., 2010, 59, p 295–298CrossRef M. Merklein, A. Kuppert, and M. Geiger, Time Dependent Determination of Forming Limit Diagrams, CIRP Ann. Manuf. Technol., 2010, 59, p 295–298CrossRef
16.
go back to reference J. Min, T.B. Stoughton, J.E. Carsley, and J. Lin, Comparison of DIC Methods of Determining Forming Limit Strains, in International Conference on Sustainable Materials Processing and Manufacturing, SMPM 2017. Procedia Manufacturing, vol. 7 (2017), pp. 668–674 J. Min, T.B. Stoughton, J.E. Carsley, and J. Lin, Comparison of DIC Methods of Determining Forming Limit Strains, in International Conference on Sustainable Materials Processing and Manufacturing, SMPM 2017. Procedia Manufacturing, vol. 7 (2017), pp. 668–674
17.
go back to reference K. Nakazima, T. Kikuma, and K. Hasuka, Study on the Formability of Steel Sheets, Yawata Technical Report, No. 264, (1968), pp. 8517–8530 K. Nakazima, T. Kikuma, and K. Hasuka, Study on the Formability of Steel Sheets, Yawata Technical Report, No. 264, (1968), pp. 8517–8530
18.
go back to reference M.A. Sutton, J.-J. Orteu, and H.W. Schreier, Image Correlation for Shape, Motion and Deformation Measurements, Springer, New York, 2009 M.A. Sutton, J.-J. Orteu, and H.W. Schreier, Image Correlation for Shape, Motion and Deformation Measurements, Springer, New York, 2009
19.
go back to reference P. Vacher, A. Haddad, and R. Arrieux, Determination of the Forming Limit Diagrams Using Image Analysis by the Correlation Method, CIRP Ann. Manuf. Technol., 1999, 48, p 227–230CrossRef P. Vacher, A. Haddad, and R. Arrieux, Determination of the Forming Limit Diagrams Using Image Analysis by the Correlation Method, CIRP Ann. Manuf. Technol., 1999, 48, p 227–230CrossRef
20.
go back to reference W. Volk and P. Hora, New Algorithm for a Robust User-Independent Evaluation of Beginning Instability for the Experimental FLC Determination, Int. J. Mater. Form., 2010, 4, p 1–8 W. Volk and P. Hora, New Algorithm for a Robust User-Independent Evaluation of Beginning Instability for the Experimental FLC Determination, Int. J. Mater. Form., 2010, 4, p 1–8
21.
go back to reference K. Wang, J.E. Carsley, B. He, J. Li, and L. Zhang, Measuring Forming Limit Strains with Digital Image Correlation Analysis, J. Mater. Process. Technol., 2014, 214, p 1120–1130CrossRef K. Wang, J.E. Carsley, B. He, J. Li, and L. Zhang, Measuring Forming Limit Strains with Digital Image Correlation Analysis, J. Mater. Process. Technol., 2014, 214, p 1120–1130CrossRef
Metadata
Title
Determination of the Forming-Limit Diagram from Deformations within Necking Instability: A Digital Image Correlation-Based Approach
Authors
A. Roatta
M. Stout
J. W. Signorelli
Publication date
26-06-2020
Publisher
Springer US
Published in
Journal of Materials Engineering and Performance / Issue 6/2020
Print ISSN: 1059-9495
Electronic ISSN: 1544-1024
DOI
https://doi.org/10.1007/s11665-020-04908-5

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