Volume 2, 2015
|Number of page(s)||5|
|Published online||18 March 2015|
- F. Vollertsen, D. Biermann, H.N. Hansen, et al., Size effects in manufacturing of metallic components, CIRP Annals-Manuf. Technol. 58 (2009) 566–587. [CrossRef]
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- Q. Zheng, T. Shimizu, T. Shiratori, M. Yang, Tensile properties and constitutive model of ultrathin pure titanium foils at elevated temperatures in microforming assisted by resistance heating method, J. Mater. Des. 63 (2014) 389–397. [CrossRef]
- W.F. Smith, J. Hashemi, Foundations of materials science and engineering, Published by McGraw-Hill, Fifth Edition, 2011, pp. 254–267.
- W. Huang, X. Zan, X. Nie, et al., Experimental study on the dynamic tensile behavior of a poly-crystal pure titanium at elevated temperatures, Mater. Sci. Eng. A 443 (2007) 33–41. [CrossRef]
- U. Engel, R. Eckstein, Microforming-from basic research to its realization, J. Mater. Process. Technol. 125–126 (2002) 35–44. [CrossRef]
- S. Geißdörfer, U. Engel, M. Geiger, FE-simulation of microforming processes applying a mesoscopic model, Int. J. Mach. Tools Manuf. 46 (2006) 1222–1226. [CrossRef]
- J.M. Liu, S.S. Chou, Study on the microstructure and formability of commercially pure titanium in two-temperature deep drawing, J. Mater. Process. Technol. 95 (1999) 65–70. [CrossRef]
- S. Nemat-Nasser, W.G. Guo, J.Y. Cheng, Mechanical properties and deformation mechanisms of a commercially pure titanium, Acta mater. 47 (1999) 3705–3720. [CrossRef]
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