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On structure and phase composition of NiAl-Ni3Al-based intermetallic alloys obtained by high-gradient directional crystallization

https://doi.org/10.22349/1994-6716-2018-94-2-52-60

Abstract

The paper studies structure and phase composition of NiAl-Ni3Al-based intermetallic alloys. It has been established that at high-gradient directional crystallization axis-oriented dendritic structure with high heat resistance, strength and ductility is being formed in NiAl and Ni3Al intermetallic samples.

About the Authors

Yu. A. Bondarenko
Federal State Unitary Enterprise “All-Russian Scientific Research Institute of Aviation Materials”
Russian Federation

Dr Sc (Eng)

17, Radio St, 105005, Moscow



N. A. Kuzmina
Federal State Unitary Enterprise “All-Russian Scientific Research Institute of Aviation Materials”
Russian Federation

Cand Sc (Geol-Miner)

17, Radio St, 105005, Moscow



O. A. Bazyleva
Federal State Unitary Enterprise “All-Russian Scientific Research Institute of Aviation Materials”
Russian Federation
17, Radio St, 105005, Moscow


A. N. Raevskikh
Federal State Unitary Enterprise “All-Russian Scientific Research Institute of Aviation Materials”
Russian Federation
17, Radio St, 105005, Moscow


References

1. Kablov, E. N., Innovatsionnye razrabotki FGUP VIAM GNTS RF po realizatsii “Strategicheskikh napravleniy razvitiya materialov i tekhnologiy ikh pererabotki na period do 2030 goda” [Innovative development of FSUE VIAM NRC of RF on the implementation of “Strategic directions for the development of materials and technologies for their processing until 2030”], Aviatsionnye materialy i tekhnologii, 2015, No 1 (34), pp. 3–33. DOI: 10.18577/2071-9140-2015-0-1-3-33.

2. Litye lopatki gazoturbinnykh dvigateley: splavy, tekhnologii, pokrytiya [Molded blades of gas turbine engines: alloys, technologies, coatings], Kablov, E.N., (Ed.). Moscow: Nauka, 2006.

3. Kablov, E. N., Petrushin, N. V., Svetlov, I. L., Demonis, I. M., Liteynye zharoprochnye nikelevye splavy dlya perspektivnykh aviatsionnykh GTD [Foundry heat-resistant nickel alloys for advanced aviation gas turbine engines], Tekhnologiya legkikh splavov, 2007, No 2, pp. 6–16.

4. Walston, S., Cetel, A., MacKay, R., O’Hara, K., Duhl, D., Dreshfield, R., Joint development of a fourth generation single crystal superalloys, Superalloys 2004, Seven Springs Mountain Resort, Champion (Pennsylvania): Minerals, Metals & Materials Society, 2004, pp. 15–24.

5. Koizumi, Y., Kobayashi, T., Yokokawa, T., Zhang, J., Osawa, M., Hara-da, H., Aoki, Y., Arai, M., Development of next-generation Ni-based single crystal superalloys, Superalloys 2004, Seven Springs Mountain Resort, Champion (Pennsylvania): Minerals, Metals & Materials Society, 2004, pp. 35–43.

6. Echin, A. B., Bondarenko, Yu. A., Osobennosti vysokogradientnoy napravlennoy kristallizatsii i sovremennoe oborudovanie, ispolzuemoe pri proizvodstve lopatok gazoturbinnykh dvigateley [Features of high-gradient directional crystallization and modern equipment used in the manufacture of gas turbine engine blades], VIAM Proceedings, 2014, No 12, Art. 03. URL: http: //www.viam-works.ru (reference date: 12.02.2018). DOI: 10.18577/2307-6046-2014-0-12-3-3.

7. Echin, A. B., Bondarenko, Yu. A., Osobennosti struktury i svoystva nikelevogo monokristallicheskogo zharoprochnogo splava, poluchennogo v usloviyakh peremennogo temperaturnogo gradiyenta na fronte rosta [Features of the structure and properties of a nickel single-crystal high-temperature alloy obtained under conditions of a variable temperature gradient on the growth front], VIAM Proceedings, 2015, No 8, Art. 01. URL: http: //www.viam-works.ru (reference date: 12/02/2018). DOI: 10.18577/2307-6046-2015-0-8-1-1.

8. Kablov, E. N., Buntushkin, V. A., Bazyleva, O. A., Malolegirovannye legkie zharoprochnye liteynye splavy na osnove intermetallide [Low-alloy lightweight high-temperature cast alloys based on Ni3Al intermetallide], Metals, 1999, No 1, pp. 56–65.

9. Bazyleva, O. A., Ospennikova, O. G., Arginbaeva E. G., Letnikova, E. Yu., Shestakov, A. V., Tendentsii razvitiya intermetallidnykh splavov na osnove nikelya [Trends in the development of intermetallic alloys based on nickel], Aviatsionnye materialy i tekhnologii, 2017, No. S, pp. 104–115. DOI: 10.18577/2071-9140-2017-0-S-104-115.

10. Bondarenko, Yu. A., Bazyleva, O. A., Echin, A. B., Surova, V. A., Narsky, A. R., High-gradient directional crystallization of details from VKNA-1V alloy, Liteynoe proizvodstvo, 2012, No 6, pp.12–16.

11. Bazyleva, O. A., Bondarenko, Yu. A., Timofeeva, O. B., Khvatsky, K. K., Vliyanie kristallograficheskoy orientatsii na strukturu i svoistva splava VKNA-1V [Influence of the crystallographic orientation on the structure and properties of the VKNA-1B alloy], Metallurgiya mashinostroeniya, 2012, No 4, pp. 8–12.

12. Hubert-Protopopescu, M ., Hubert, H., Aluminium – Cobalt – Nickel, Ternary alloys: A Comprehensive Compendium of the Results of the Constitutional Data and Phase Diagrams, Petzow, G., Effenberg G., (Eds.); Weinheim; New York: VCH Cop., 1991, pp. 234–244.

13. Kornilov, I. I., Fiziko-khimicheskie osnovy zharoprochnosti splavov [Physicochemical basis of heat resistance of alloys], Moscow: Publishing House of the USSR Academy of Sciences, 1961.

14. Kornilov, I. I., Mints , R .S ., Issledovanie sistemy Ni-Cr-NiAl [Investigation of the Ni-CrNiAl system], Neorganicheskaya khimiya, 1958, V. 3. Issue 5, pp. 699–707.

15. Bondarenko, Yu. A., Kablov, E. N., Napravlennaya kristallizatsiya zharoprochnykh splavov s povyshennym temperaturnym gradiyentom [Directional crystallization of high-temperature alloys with an elevated temperature gradient], MITOM, 2002, No 7, pp. 20–23.


Review

For citations:


Bondarenko Yu.A., Kuzmina N.A., Bazyleva O.A., Raevskikh A.N. On structure and phase composition of NiAl-Ni3Al-based intermetallic alloys obtained by high-gradient directional crystallization. Voprosy Materialovedeniya. 2018;(2(94)):52-60. (In Russ.) https://doi.org/10.22349/1994-6716-2018-94-2-52-60

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ISSN 1994-6716 (Print)