[1]
D. Banerjee and J. C. Williams: Acta Materialia Vol. 61 (2013), pp.844-879.
Google Scholar
[2]
Y. Li, C. Yang, H. Zhao, S. Qu, X. Li and Y. Li: Materials Vol. 7 (2014), pp.1709-1800.
Google Scholar
[3]
G. Lütjering and J. C. Williams: Titanium (Spinger, Berlim 2007).
Google Scholar
[4]
C. Leyens and M. Peters: Titanium and Titanium Alloys: Fundamentals and Applications (Wiley-VCH, New York 2005).
Google Scholar
[5]
J. Martins, José, R. Araújo, T. Donato, V. Arana-Chavez, M. Buzalaf and C. Grandini: Materials Vol. 7 (2014), pp.232-243.
Google Scholar
[6]
D. R. N. Correa, F. B. Vicente, T. A. G. Donato, V. E. Arana-Chavez, M. A. R. Buzalaf and C. R. Grandini: Materials Science and Engineering: C Vol. 34 (2014), pp.354-359.
DOI: 10.1016/j.msec.2013.09.032
Google Scholar
[7]
M. Geetha, A. K. Singh, A. K. Gogia and R. Asokamani: Journal of Alloys and Compounds Vol. 384 (2004), pp.131-144.
Google Scholar
[8]
M. Abdel-Hady, K. Hinoshita, H. Fuwa, Y. Murata and M. Morinaga: Materials Science and Engineering: A Vol. 480 (2008), pp.167-174.
DOI: 10.1016/j.msea.2007.06.083
Google Scholar
[9]
M. Abdel-Hady, K. Hinoshita and M. Morinaga: Scripta Materialia Vol. 55 (2006), pp.477-480.
DOI: 10.1016/j.scriptamat.2006.04.022
Google Scholar
[10]
M. Morinaga and H. Yukawa: Bulletin of Materials Science Vol. 20 (1997), pp.805-815.
Google Scholar
[11]
R. Boyer, G. Welsch and E. W. Collings: Materials Properties Handbook: Titanium Alloys (ASM International, Materials Park 1994).
Google Scholar
[12]
W. -F. Ho, W. -K. Chen, S. -C. Wu and H. -C. Hsu: J Mater Sci: Mater Med Vol. 19 (2008), pp.3179-3186.
Google Scholar
[13]
N. T. C. Oliveira, G. Aleixo, R. Caram and A. C. Guastaldi: Materials Science and Engineering: A Vol. 452-453 (2007), pp.727-731.
DOI: 10.1016/j.msea.2006.11.061
Google Scholar
[14]
W. -F. Ho, S. -C. Wu, S. -K. Hsu, Y. -C. Li and H. -C. Hsu: Materials Science and Engineering: C Vol. 32 (2012), pp.517-522.
Google Scholar
[15]
D. R. N. Correa, P. A. B. Kuroda and C. R. Grandini: Advanced Materials Research Vol. 922 (2014), pp.75-80.
Google Scholar
[16]
W. F. Ho, C. P. Ju and J. H. Chern Lin: Biomaterials Vol. 20 (1999), pp.2115-2122.
Google Scholar
[17]
F. Vicente, D. Correa, T. Donato, V. Arana-Chavez, M. Buzalaf and C. Grandini: Materials Vol. 7 (2014), pp.542-553.
DOI: 10.3390/ma7010542
Google Scholar
[18]
Y. -L. Zhou and D. -M. Luo: Materials Characterization Vol. 62 (2011), pp.931-937.
Google Scholar
[19]
I. Weiss and S. L. Semiatin: Materials Science and Engineering: A Vol. 243 (1998), pp.46-65.
Google Scholar
[20]
I. Weiss and S. L. Semiatin: Materials Science and Engineering: A Vol. 263 (1999), pp.243-256.
Google Scholar
[21]
D. G. Leo Prakash, P. Honniball, D. Rugg, P. J. Withers, J. Quinta da Fonseca and M. Preuss: Acta Materialia Vol. 61 (2013), pp.3200-3213.
DOI: 10.1016/j.actamat.2013.02.008
Google Scholar
[22]
G. Lütjering: Materials Science and Engineering: A Vol. 243 (1998), pp.32-45.
Google Scholar
[23]
X. Zhao, M. Niinomi, M. Nakai, G. Miyamoto and T. Furuhara: Acta Biomaterialia Vol. 7 (2011), pp.3230-3236.
DOI: 10.1016/j.actbio.2011.04.019
Google Scholar
[24]
X. Zhao, M. Niinomi, M. Nakai and J. Hieda: Acta Biomaterialia Vol. 8 (2012), p.1990-(1997).
Google Scholar