PSI - Issue 7
Gianni Nicoletto et al. / Procedia Structural Integrity 7 (2017) 133–140 Gianni Nicoletto/ Structural Integrity Procedia 00 (2017) 000–000
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Bandyopadhyay, A., Bose, A. Additive manufacturing: Additive manufacturing technologies of metals using powder-based technology. Taylor & Francis Group: Boca Raton (2016). 377 p. Edwards P., Ramulu M. “Fatigue performance evaluation of selective laser melted Ti–6Al–4V” Mater. Sci. Eng. A, (2014), A598, 327–337 Konečná R. , G. Ni coletto, S. Fintová, M. Frkáň, “As-built surface layer characterization and fatigue behavior of DMLS Ti6Al4V”, Proceedings FMDM3, Lecco (2017), in press Leuders L., M. Thöne, A. Riemer, T. Niendorf, T. Tröster, H. A. Richard, H. J. Maier, “On the mechanical behaviour of titanium alloy TiAl6V4 manufactured by selective laser melting: Fatigue resistance and crack growth performance”, Inter. Jou. Fatigue, 48, 300-307 (2013). Lütjering G., Williams J.C., A. Gysler A., Microstructure and mechanical properties of titanium alloys. Titanium: Springer Science and Business Media, (2007) . Morri A. “Trattamenti termici delle leghe di Titanio α + β , correlazioni fra microstruttura e comportamento meccanico” La metallurgia italiana,p.1 9 (2008) Mower T. M., M. J. Long, “Mechanical behavior of additive manufactured, powder-bed laser-fused materials”. Materials Science and Engineering, A651 198-213 (2016). Nicoletto G., “Anisotropic high cycle fatigue behavior of Ti-6Al-4V obtained by powder bed laser fusion”. International Journal of Fatigue, (2016), vol. 94, pp. 255-262. Rafi H. K., N. V. Karthik, H. Gong, T. L. Starr, B. E. Stucker, “Microstructures and mechanical properties of Ti6Al4V parts fabricated by selective laser melting and electron beam melting”, Jou of Materials Engineering and Performance, 22, 3872-3883 (2013). Srivatsan, T.S., Sudarshan, T.S. Additive manufacturing: Innovations, Advances and Applications. Taylor & Francis, Boca Raton, (2016). 444 p. Vrancken B., Thijs L., Kruth J.P.,Van Humbeeck J., “Heat treatment of Ti6Al4V produced by Selective Laser Melting: Microstructure and Mechanical properties”, Journal of Alloys and Compounds, (2012). 541(0): p. 177-185.
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