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Citation: S-92. D.Y. Shi, L. Ying, P. Hu, J.D. Lu, X. Zhao, and W.Q. Liu, “Experimental and Numerical Determination of Thermal Forming Limit Diagrams (TFLD) of High Strength Steel 22MnB5,” AIP Conference Proceedings: The 11th International Conference on Numerical...
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Citation: S-91. H.S. Son, H.G. Kim, and Y.R. Cho, “Formability Evaluation for Hot Press Formed Part Using Coupled Thermo-Mechanical Analysis,” Chapter 8 – Hot Forming, Proceedings of NUMISHEET 2008, Switzerland.
I-20
Citation: I-20. IT Engineering, Georgia Institute of Technology (Georgia Tech), and Korea Aerospace University, “Proposal for Full Scale R&D Project under the International Collaborative R&D Program: Ultralight-but-Robust Automotive Vehicle with Strong,...
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Citation: H-58. J. Hagstrom, D. Croizet, M. Biasutti, A. Butz, M. Kampczyk, N. Stenberg, M. Zapara, A. Erhart, A. Haufe, and M. Schneider, “Introducing high strength and ductility twinning induced plasticity (TWIP) steels for European automotive applications through...
R-21
Citation: R-21. Renault Press Release, “EOLAB Concept Showcases Renault's Pursuit of Ultra-Low Fuel Consumption”, 2014.
D-31
Citation: D-31. F. D’Aiuto, “Innovative materials and solutions for automotive components,” Presented at ANFIA - Associazione Nazionale Fra Industrie Automobilistiche (National Association of the Automobile Industry; Torino, Italy), 28 April 2016.
N-24
Citation: N-24. Jae-Bok Nam, “Development of New Auto Steels and Application Technology,” worldsteel / CISA China Automotive Steel Conference, Nov. 21, 2013
C-30
Citation: C-30. P. Cugy, A. Hildenbrand, M. Bouzekri, D. Cornette, S. Göklü, and H. Hofmann, “A Super-High Strength Fe-Mn-C Austenitic Steel with Excellent Formability for Automobile Applications,” 2005;
D-30
Citation: D-30. B.C. De Cooman, O. Kwon, and K.-G. Chin, “State-of-the-knowledge on TWIP steel,” Materials Science and Technology, Volume 28, Number 5, 2012, pages 513-527, doi.org/10.1179/1743284711Y.0000000095.