Study of the composition and properties of the intermetallic layer of Al–Ti and Ni–Ti obtained on a titanium alloy for laser processing

Author:

Gerashchenkov D. A.1,Gerashchenkova E. Yu.1,Mozhayko A. A.2,Makarov A. M.1,Belyakov A. N.1,Bystrov R. Yu.1

Affiliation:

1. NRC Kurchatov Institute – CRISM Prometey

2. NRC Kurchatov Institute – CRISM Prometey; Peter the Great St Petersburg Polytechnic University

Abstract

The results of a study of intermetallic coatings of the Al–Ti and Ni–Ti systems obtained using the method of cold gas-dynamic spraying on a titanium alloy substrate and laser processing are presented. The precursor coating was obtained by cold spray deposition of aluminum and nickel and then it was processed by a laser. The change in the composition and properties of the coating under different laser processing modes is shown. The structure and microhardness of the coating are investigated, and the results of X-ray phase analysis are presented.

Publisher

FSUE CRISM Prometey

Subject

General Earth and Planetary Sciences,General Environmental Science

Reference14 articles.

1. Inozemtsev, A.A., Bashkatov, I.G., Koryakovtsev, A.S., Titanovye splavy v izdeliyakh razrabotki OAO Aviadvigatel [Titanium alloys in products developed by Aviadvigatel OJSC], Sovremennye titanovye splavy i problemy ikh razvitiya, Moscow: VIAM, 2010, pp. 43–46.

2. Nochovnaya, N.A., Bazyleva, O.A., Kablov, D.E., Panin, P.V., Intermetallicheskie splavy na osnove titana i nikelya [Intermetallic alloys based on titanium and nickel], Kablov, E.N., (Ed.), Moscow: VIAM, 2018.

3. Titanium’2003: Science and Technology, Proc. 10th World Conf. on Titanium, Hamburg, Germany, 2003, No 1–5, pp. 3425.

4. Grinberg, B.A., Ivanov, M.A., Intermetallidy Ni3Al i TiAl: mikrostruktura, deformatsionnoe povedenie [Intermetallides Ni3Al and TiAl: microstructure, deformation behavior], Ekaterinburg: Ural Branch of the Russian Academy of Sciences, 2002.

5. Shipway, P.H., Hussain, T., Preston, S.P., Davis C., Process parameter optimisation of laser clad iron based alloy: Predictive models of deposition efficiency, porosity and dilution, Surface and Coatings Technology, 2018, May, pp. 198–207

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