Open Access
Review
Issue
Mechanics & Industry
Volume 27, 2026
Article Number 17
Number of page(s) 13
DOI https://doi.org/10.1051/meca/2026014
Published online 21 April 2026
  1. F.S.M. Mballa, Modélisation du comportement magnéto-mécanique d'un acier Dual Phase à partir de sa description microstructurale, PhD thesis, Ecole Normale Supérieure de CACHAN, 2013 [Google Scholar]
  2. M. Ollat, Characterization and modeling of microstructural evolutions during the thermal treatment of cold-rolled Dual-Phase steels, PhD thesis, Université de Lyon, 2017 [Google Scholar]
  3. C.C. Tasan, M. Diehl, D. Yan, M. Bechtold, F. Roters, L. Schemmann, C. Zheng, N. Peranio, D. Ponge, M. Koyama, K. Tsuzaki, D. Raabe, An overview of dual-phase steels: advances in microstructure-oriented processing and micromechanically guided design, Annu. Rev. Mater. Res. 45, 391–431 (2015) [CrossRef] [Google Scholar]
  4. O. Çavuşoğlu, S. Toros, H. Gürün, Microstructure based modelling of stress–strain relationship on dual phase steels, Ironmak. Steelmak. 46, 313–319 (2019) [Google Scholar]
  5. I. Pushkareva, Evolution microstructurale d'un acier Dual Phase. Optimisation de la résistance à l'endommagement, PhD thesis, Université de Lorraine, 2009 [Google Scholar]
  6. Y. Gabi, Modélisation FEM du système de contrôle non destructif 3MA en ligne de production des aciers dual phase, PhD thesis, Université de Grenoble, 2012 [Google Scholar]
  7. B. Haddag, Contribution à la modélisation de la mise en forme des tôles métalliques : application au retour élastique et à la localisation, PhD thesis, École Nationale Supérieure d'Arts et Métiers, 2007 [Google Scholar]
  8. P.A. Eggertsen, K. Mattiasson, On constitutive modeling for springback analysis, Int. J. Mech. Sci. 52, 804–818 (2010) [Google Scholar]
  9. X. Li, Y. Yang, Y. Wang, J. Bao, S. Li, Effect of the material-hardening mode on the springback simulation accuracy of V-free bending, J. Mater. Process. Technol. 123, 209–211 (2002) [Google Scholar]
  10. R.M. Cleveland, A.K. Ghosh, Inelastic effects on springback in metals, Int. J. Plast. 18, 769–785 (2002) [Google Scholar]
  11. J.R. Cho, S.J. Moon, Y.H. Moon, S.S. Kang, Finite element investigation on spring-back characteristics in sheet metal U-bending process, J. Mater. Process. Technol. 141, 109–116 (2003) [Google Scholar]
  12. R.H. Wagoner, H. Lim, M.G. Lee, Advanced issues in springback, Int. J. Plast. 45, 3–20 (2013) [Google Scholar]
  13. F. Pierron, M. Grédiac, Towards material testing 2.0. a review of test design for identification of constitutive parameters from full-field measurements, Strain 57, e12370 (2021) [Google Scholar]
  14. J. Lee, J.Y. Lee, F. Barlat, R.H. Wagoner, K. Chung, M.G. Lee, Extension of quasi-plastic–elastic approach to incorporate complex plastic flow behavior—application to springback of advanced high-strength steels, Int. J. Plast. 45, 140–159 (2013) [Google Scholar]
  15. W. Liegard, L. Tabourot, P. Balland, Characterization of elasto-plastic transition of sheet metal by using large-scale four-point bending test, IOP Conf. Ser. Mater. Sci. Eng. 1238, 012057 (2022) [Google Scholar]
  16. L. Topilla, S. Toros, Mechanical behaviour of dual phase steels under different strain rates, Kemija u industriji, 72, 151–159 (2023) [Google Scholar]
  17. S. Vitzthum, J.R. Kornmeier, M. Hofmann, M. Gruber, E. Maawad, A.C. Batista, C. Hartmann, W. Volk, In-situ analysis of the thermoelastic effect and its relation to the onset of yielding of low carbon steel, Mater. Des. 219, 110753 (2022) [Google Scholar]
  18. S. Vitzthum, J.R. Kornmeier, M. Hofmann, M. Gruber, R. Norz, E. Maawad, J. Mondegreen, W. Volk, In-situ analysis of the elastic-plastic characteristics of high strength dual-phase steel, Mater. Sci. Eng. A 857, 144097 (2022) [Google Scholar]
  19. E. Gdoutos, M. Konsta-Gdoutos, Mechanical Testing of Materials, Springer, Cham, 1–34, 2024 [Google Scholar]
  20. E. Roux, P. Balland, C. Elmo, L. Charleux, Physics-informed Gaussian processes model for heat source identification, Mater. Today Commun. 47, 112892 (2025) [Google Scholar]
  21. C. Kinkelin, Etude expérimentale d'un amortisseur thermique composite MCP-NTC, PhD thesis, Université de Lyon, 2016 [Google Scholar]
  22. K.N. Pandey, S. Chand, Deformation based temperature rise: a review, Int. J. Press. Vess. Pip. 80, 673–687 (2003) [Google Scholar]
  23. L. Charleux, L. Tabourot, E. Roux, M.I. Farah, L. Bizet, Dependency of the Young's modulus to plastic strain in DP steels: a consequence of heterogeneity? Mater. Today Commun. 24, 100972 (2020) [Google Scholar]

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