Preview

Voprosy Materialovedeniya

Advanced search
Open Access Open Access  Restricted Access Subscription Access

Improving technological properties of alloys of the Ni–Cr system

https://doi.org/10.22349/1994-6716-2025-123-3-38-48

Abstract

A heat treatment regime has been justified and developed that reduces the hardness of the Cr–33Ni– W–V–Ti alloy and improves its machinability by cutting. The influence of the composition of the Cr–50Ni–W– Mo–Ti–Nb–Al alloy on cold plasticity are established. It has been shown that an increase in ductility is achieved with a lower content of elements forming the α-phase with a bcc lattice and the strengthening phases Ni3Ti and Ni3Al.

About the Authors

A. M. Adaskin
Moscow State Technological University STANKIN

Cand Sc.

3A Vadkovsky Lane, Bld 1, 127055 Moscow



V. N. Butrim
JSC COMPOSIT
Russian Federation

Dr Sc.  

4 Pionerskaya St, 141070 Korolev, Moscow Region 



V. V. Kashirtsev
JSC COMPOSIT
Russian Federation

Cand Sc.

4 Pionerskaya St, 141070 Korolev, Moscow Region 



A. S. Trushnikova
JSC COMPOSIT
Russian Federation

Cand Sc.

4 Pionerskaya St, 141070 Korolev, Moscow Region 



I. M. Grebenyuk
JSC COMPOSIT
Russian Federation

4 Pionerskaya St, 141070 Korolev, Moscow Region 



References

1. Maslenkov, S.B., Zharoprochnye stali i splavy [Heat-resistant Steels and Alloys]: Handbook, Moscow: Metallurgiya, 1988.

2. . Khimushin , F.F., Zharoprochnye stali i splavy [Heat-Resistant Steels and Alloys], 2nd Ed., Moscow: Metallurgiya, 1969.

3. Adaskin, A.M., Butrim, V.N., Sapronov, I.Yu., Fazovye prevrashcheniya, struktura i svoistva splava Kh65NVFT na osnove khroma [Phase transformations, structure, and properties of the chromium-based alloy Kh65NVFT], Metallofizika i noveishie tekhnologii, 2013, V. 35, No 11, pp. 1001–1012.

4. Butrim, V.N., Sovershenstvovanie khromonikelevykh splavov dlya kosmicheskoi tekhniki [Improvement of chromium-nickel alloys for space technology], Konstruktsii iz kompozitsionnykh materialov, 2017, No 2, pp. 26–38.

5. Adaskin, A.M., Butrim, V.N. Vereshchaka, A.S., Kashirtsev, V.V., Kirillov, A.K., Obrabatyvaemost rezaniem zharoprochnogo splava Kh65NVFT na osnove khroma [Machinability of the chromium-based heat-resistant alloy Kh65NVFT], STIN, 2013, No 7, pp. 36−40.

6. Armarego, I.Dzh.A., Braun, R.H., Obrabotka metallov rezaniem [Metal cutting], Moscow: Mashinostroenie, 1977.

7. Mc Linn, D., Mekhanicheskie svoistva metallov [Mechanical properties of metals], Moscow: Me­ tallurgiya, 1965.

8. Diagrammy sostoyaniya dvoinykh metallicheskikh sistem [State diagrams of double metal systems], N.P. Lyakisheva (Ed.), Moscow: Mashinostroenie, 1996. V. 2.

9. Hall, E.O., Variation of hardness of metals with grain size, Nature, 1954, V. 173, No 11.

10. Khrushchov, M.M.. Trenie, iznos i mikrotverdost materialov [Friction, wear, and microhardness of materials]: Selected works, Moscow: Krassand, 2012.

11. Adaskin, A.M., Butrim, V.N., Kubatkin, V.S., Sapronov, I.Yu., Vliyanie rezhima termicheskoi obrabotki na zharostoikost splava na osnove khroma pri vysokotemperaturnom okislenii na vozdukhe [Effect of heat treatment mode on the heat resistance of a chromium-based alloy during high-temperature oxidation in air], Voprosy materialovedeniya, 2016, No 4 (88), pp. 18–28.

12. Adaskin, A.M., Butrim, V.N., Kubatkin, V.S., Sapronov, I.Yu., Krivye deformatsionnogo uprochneniya i mekhanicheskie svoistva zharoprochnogo splava na osnove khroma v zavisimosti ot termi­ cheskoi obrabotki i temperatury ispytaniy [Deformation hardening curves and mechanical properties of a chromium-based heat-resistant alloy, depending on heat treatment and test temperature], MiTOM, 2015, No 10, pp. 50–56.

13. Arzamasov, B.N., Makarova, V.I., Mukhin, G.G., et al., Materialovedenie [Materials Science], Moscow: MGTU im. Baumana, 2011.

14. Spravochnik po mashinostroitelnym materialam [Handbook of Engineering Materials], V.G. Vorobiev, Yu.M. Lakhtin, A.G. Rakhshtadt (Eds.), Moscow: Izd-vo mashinostroitelnoi literatury, 1959.

15. Maslenkov, S.B., Zharoprochnye stali i splavy [Heat-resistant steels and alloys]: Handbook, Moscow: Metallurgiya, 1988.

16. Novikov, I.I., Teoriya termicheskoi obrabotki metallov [Theory of heat treatment of metals], Moscow: Metallurgiya, 1974.


Review

For citations:


Adaskin A.M., Butrim V.N., Kashirtsev V.V., Trushnikova A.S., Grebenyuk I.M. Improving technological properties of alloys of the Ni–Cr system. Voprosy Materialovedeniya. 2025;(3(123)):38-48. (In Russ.) https://doi.org/10.22349/1994-6716-2025-123-3-38-48

Views: 5


ISSN 1994-6716 (Print)