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СПИСОК ВИКОРИСТАНИХ ДЖЕРЕЛ
1. T.H.G. Megson, Aircraft structures for engineering students. 5th ed. UK:
Butterworth-Heinemann, 2012.
2. V.N. Moiseyev, Titanium alloys: Russian aircraft and aerospace applications.
New York: Taylor and Francis Group, 2006.
3. R.R. Boyer, "New titanium applications on the Boeing 777 airplane", JOM., vol.
44, pp. 23-25, 1992.
4. S.A.Vigdortchik and A.N.Tupolev, "The technological aspects of titanium
application in the TU-144 aircraft structure", in Titanium and titanium alloys,
J.C. Williams and A.F. Belov Eds., Boston: Springer, 1982, pp. 2181-2193.
5. E. Ezugwu and Wang Z.M "Titanium alloys and their machinability review", J.
Mater. Process. Technol., Vol. 6, pp. 262-272, 1997.
6. O. Leder, "Vertical integration: Titanium products for the aircraft industry", in
Supply chain integration challenges in commercial aerospace, K. Richter and
J. Walther Eds., Cham: Springer; 2017, pp. 177-190.
7. Cotton J.D., Briggs R.D., Boyer R.R. et al. State of the art in beta titanium alloys
for airframe applications. JOM., vol. 67, pp. 1281-1303, 2015.
8. R.R. Boyer, "An overview on the use of titanium in the aerospace industry",
Mater. Sci. Eng. A., vol. 213, pp. 103-114, 1996.
9. Masaaki Nakai, Mitsuo Niinomi and al., "Reduction in anisotropy of mechanical
properties of coilable (α+β)-type titanium alloy thin sheet through simple heat
treatment for use in next-generation aircraft applications", Mater. Sci. Eng. A.,
vol. 594, pp. 103-110, 2014.
10. R. Jones, R.K. Singh Raman and al., "Additively manufactured Ti-6Al-4V
replacement parts for military aircraft", Int J Fatigue., vol. 124, p. 227-235,
2019
11. A.Vinicius and R. Henriques, "Titanium production for aerospace
applications", J. Aerosp. Technol. Manag., vol. 1, pp. 7-17 , 2009.