K-9
Citations:
K-9. J.H Kim, J.H. Sung, K. Piao, and R.H. Wagoner, “The shear fracture of dual-phase steel,” International Journal of Plasticity 27 (2011) 1658–1676, dx.doi.org/10.1016/j.ijplas.2011.02.009.
K-9. J.H Kim, J.H. Sung, K. Piao, and R.H. Wagoner, “The shear fracture of dual-phase steel,” International Journal of Plasticity 27 (2011) 1658–1676, dx.doi.org/10.1016/j.ijplas.2011.02.009.
H-5. N. Habibi, T. Beier, H. Richter, M. Könemann, and S. Münstermann, “The effects of shear affected zone on edge crack sensitivity in dual-phase steels,” IDDRG 2019, 2019 IOP Conf. Ser.: Mater. Sci. Eng. 651 012073, doi:10.1088/1757-899X/651/1/012073.
F-18. R. Funada, “Maximizing Lightweighting In Steel Automotive Bodies And Frames With The Steel Tube Air Forming (STAF) Process,” Presented at Global Automotive Lightweight Materials, Detroit, 2019.
G-2. S. Göklü, “Innovative Fügetechnologien beim Einsatz Neuartiger Stahlwerkstoffe für den Schienenfahrzeugbau,“ Fügen und Konstruieren im Schienenfahrzeugbau,
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L-59. “Advanced dual beam laser welding of zinc-coated steel sheets in lap joint configuration with zero gap at the interface“, International Congress on Applications of Lasers & Electro-Optics 2004, P508 (2004) doi.org/10.2351/1.5060360
L-3. R. Laurenz, “Bauteilangepasste Fügetechnologien,“ Fügetechnologien im Automobilbau, Ulm (February 11, 2004).