[1]
Zwikker Ulrich, Titan und Titanlegirungen, Springer-Verlag, (1974).
Google Scholar
[2]
M.J. Hamedy, M.J. Torkamany, J. Sabbaghzadeh, Effect of pulsed laser parameters on in-situ TiC synthesis in laser surface treatment, Optics and lasers in engeneering. 49 (2011) 557-563.
DOI: 10.1016/j.optlaseng.2010.12.002
Google Scholar
[3]
Zhang Ke-min, Zou Jian-xin, Li Jun, Yu Zhi-shui, Wang Hui-ping, Surface modification of TC4 alloy by laser cladding with TiC+Ti powders, Trans. Nonferrous Met. Soc. China. 20 (2010) 2192-2197.
DOI: 10.1016/s1003-6326(09)60441-6
Google Scholar
[4]
I.A. Bataev, A.A. Bataev, M.G. Golkovski, D.S. Krivizhenko, Structure of surface layers obtained by atmospheric electron beam cladding of graphite-titanium powder mixture on to titanium surface, Applied Surface Sciense. 284 (2013) 472-481.
DOI: 10.1016/j.apsusc.2013.07.121
Google Scholar
[5]
Weiping Liu, J.N. DuPont. Fabrication of functionally graded TiC/Ti composites by Laser Engeneering Net Shaping, Scripta Materialia. 48 (2003) 1337-1342.
DOI: 10.1016/s1359-6462(03)00020-4
Google Scholar
[6]
V.E. Panin, S.I. Belyuk, V.G. Durakov, G.A. Pribytkov, N.G. Rempe, Electron beam surfacing in vacuum: equipment, technology, coatings' properties, Welding production. 2 (2000) 34-38.
DOI: 10.1080/09507110009549234
Google Scholar
[7]
E.N. Korosteleva, G.A. Pribytkov, M.G. Krinitcyn, Structure and properties of powder cathode materials of titanium - titanium carbide system, Innovative technology and economics in mechanical engineering. (2014) 273-276.
Google Scholar
[8]
G.A. Pribytkov, M.N. Khramogin, V.G. Durakov, V.V. Korzhova, Coatings produced by electron beam surfacing of composite materials consisting of titanium carbide and a binder of high-speed R6M5 tool steel, Welding international. 22 (2008) 465-467.
DOI: 10.1080/02664760802358517
Google Scholar