[1]
C. C. Chen, Recent Advancement in Titanium Near-Net-Shape Technology, Advanced Processing Methods for Titanium, ed. D. F. Hasson and C. H. Hamilton, (Proceeding of the Symposium at TMS Fall Meeting, 1981), 3-21.
Google Scholar
[2]
F. H. Froes, D. Eylon and C. Suryanarayana, Thermochemical Processing of Titanium Alloys, JOM, 42 (3) (1990), 26-29.
DOI: 10.1007/bf03220890
Google Scholar
[3]
O. N. Senkov, J. J. Jonas and F. H. Froes, Recent Advances in the Thermohydrogen Processing of Titanium Alloys, JOM, 48 (7) (1996), 42-47.
DOI: 10.1007/bf03222997
Google Scholar
[4]
Y. Mahajan, S. Nadiv, and W. R. Kerr, Studies of Hydrogenation in Ti-6Al-4V Alloy, Scripta Metallurgica, 13 (1979), 695-699.
DOI: 10.1016/0036-9748(79)90139-x
Google Scholar
[5]
San-Martin and F. D. Manchester, "The H-Ti (Hydrogen-Titanium) System, Bulletin of Alloy Phase Diagrams, 8 (1) (1987), 30-42.
DOI: 10.1007/bf02868888
Google Scholar
[6]
E. S. Payne, et. al., "Evaluation of a New Hydride-Dehydride (HDH) Titanium Powder", Advanced Particulate Materials and Processes, ed. F. H. Froes and J. C. Hebeisen, (Proceeding of the 5 th International Conference on Advanced Particulate Materials and Processes, 1997), 357-362.
Google Scholar
[7]
Materials Properties Handbook: Titanium Alloys, ed. R. Boyer and S. Lampman, ASM International (1994), 166.
Google Scholar
[8]
Materials Properties Handbook: Titanium Alloys, ed. R. Boyer and S. Lampman, ASM International (1994), 486.
Google Scholar