The influence of copper on the heat resistance of thin foils of high-entropy alloys of the Cr–Fe–Co–Ni–Cu system obtained by the electron beam deposition method

Author:

Ustinov A.I., ,Demchenkov S.O.,Melnychenko T.V.,Klepko O.Yu., , ,

Publisher

International Association Welding

Subject

General Engineering

Reference16 articles.

1. 1. Ivanov, I.I., Yasinsky, K.K. (1996) Efficiency of application of heat-resistant alloys based on Ti3Al and TiAl intermetallics for operation at 600-800 °C temperatures in aerospace engineering. Tekhnologiya Lyogkikh Splavov, 3, 7-12 [in Russian].

2. 2. Frolov, G.A., Sontsev, V.P., Tikhij, V.G., Gusarova, I.A. (2011) Advanced materials for multilayer thermal protection structures of reusable space vehicles. Space engineering. Rocket arming. Dnepropetrovsk, 133-145 [in Russian].

3. 3. Murty, B.S., Yeh, J.W., Ranganathan, S. (2014) Chapter 2. High-entropy alloys: Basic concepts. High entropy alloys. Butterworth-Heinemann, 13-35. DOI: https://doi. org/10.1016/B978-0-12-800251-3.00002-X

4. 4. Tong, C.J., Chen, M.R., Chen, S.K. et al. (2005) Mechanical performance of the AlxCoCrCuFeNi high-entropy alloy system with multiprincipal elements. Metallurgical and Materials. Transact. A, 36, 1263-1271. DOI: https://doi. org/10.1007/s11661-005-0218-9

5. 5. Chuang, M.H., Tsai, M.H., Wang, W.R. et al. (2011) Microstructure and wear behavior of AlxCo1.5CrFeNi1.5y high-entropy alloys. Acta Materialia, 59, 6308-6317. DOI: https:// doi.org/10.1016/j.actamat.2011.06.041.

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