Preview

RUSSIAN RAILWAY SCIENCE JOURNAL

Advanced search

Development of rails of a new category for use in particularly harsh operating conditions

https://doi.org/10.21780/2223-9731-2022-81-4-339-346

Abstract

Introduction. In the conditions of an annual increase in load stress on the roads of the Eastern Polygon, an effective technical solution to the problem of an increased number of rolling stock derailments due to rail breakage is the creation of rails for cold climate conditions with increased hardness to increase wear resistance and contact endurance with simultaneously high values of impact strength. Such a set of properties can be achieved by using separate heating for quenching and cooling with a quenching medium with a high cooling capacity. Rails manufactured using this technology will belong to a new category. In this regard, the purpose of this work was to create a new category of rails for their use in particularly harsh operating conditions.

Materials and methods. In this paper the effect of separate induction heating before differentiated quenching with compressed air of controlled humidity on the microstructure and mechanical properties (hardness, mechanical properties during tensile and impact tests, endurance limit, cyclic crack resistance) of rails of type R65 was investigated.

The results of the study. A comparative analysis of the results obtained with similar indicators for rails of the DT350, DT350NN and DT370IK categories according to GOST R 51685-2013 was carried out. Studies of the chemical composition, mechanical properties, hardness on the rolling surface of the rail head and cross-section, as well as the microstructure of the rails of the experimental batch showed compliance with the requirements of GOST R 51685-2013 for rails of categories DT350, DT370IK, DT350NN.

Discussion and conclusion. It is shown that as a result of the application of differentiated thermal hardening of the rail using compressed air of controlled humidity as a quenching medium, a new category of DTO350NN rails was obtained, characterized by a favorable combination of strength properties, plasticity characteristics and brittle fracture resistance indicators. Rails of the new category can be recommended for use in particularly severe operating conditions (in curved sections of the track of a small radius at low temperatures), including on the roads of the Eastern Polygon.

About the Authors

E. N. Tokmakova
Railway Research Institute
Russian Federation

Ekaterina N. TOKMAKOVA, 2nd category Engineer

129626, Moscow, 10, 3rd Mytishchinskaya St.



Ivan Perkov
Railway Research Institute
Russian Federation

Ivan E. PERKOV, Technical Exper

129626, Moscow, 10, 3rd Mytishchinskaya St.



Pavel Ivanov
Railway Research Institute
Russian Federation

Pavel V. IVANOV, 2nd category Engineer

129626, Moscow, 10, 3rd Mytishchinskaya St.



Konstantin Zagranichek
Railway Research Institute
Russian Federation

Konstantin L. ZAGRANICHEK, Head of Laboratory

129626, Moscow, 10, 3rd Mytishchinskaya St.



References

1. Shur E. A., Borts A. I., Abdurashitov A. Yu. Uvelichit' resurs rel'sov, limitiruemyy ikh bokovym iznosom [Increasing the resource of rails, limited by their lateral wear]. Put' i putevoe khozyaystvo = Railway Track and Facilities. 2017;(5):2-8. (In Russ.).

2. Zolotarskiy A. F., Rauzin Ya. R., Shur E. A. et al. Termicheski uprochnennye rel'sy [Thermally hardened rails]. Moscow: Transport Publ.; 1976. 264 p. (In Russ.).

3. Shur E., Borts A., Zakharov S. Rails for Low Operating Temperature and High Speed. Transportation Soil Engineering in Cold Regions (TRANSOILCOLD 2019). Proceedings of the conference (St. Petersburg, April 15–22, 2019). Singapore: Springer Publ.; 2020. P. 221–232.

4. Khlyst S. V., Kuz'michenko V. M., Rezanov V. A. et al. Perspektivnaya tekhnologiya proizvodstva rel'sov dlya vysokoskorostnogo i tyazhelovesnogo dvizheniya [Perspective technology for the production of rails for high-speed and heavy traffic]. Vestnik Nauchno-issledovatel'skogo instituta zheleznodorozhnogo transporta (Vestnik VNIIZhT) = Russian Railway Scientific Journal. 2013;(6):14-20. (In Russ.).

5. Lempitskiy V. V., Kazarnovskiy D. S., Gubert S. V. et al. Proizvodstvo i termicheskaya obrabotka zheleznodorozhnykh rel'sov [Production and heat treatment of rails]. Moscow: Metallurgiya Publ.; 1972. 272 p. (In Russ.).

6. Shur E. A. Vliyanie struktury na ekspluatatsionnuyu stoykost' rel'sov [Influence of the structure on the service life of rails]. Vliyanie svoystv metallicheskoy matritsy na ekspluatatsionnuyu stoykost' rel'sov [Influence of the properties of the metal matrix on the service life of rails]. Procs. of 2nd All-Russian sci.-tech. seminar (Ekaterinburg, May 16–17, 2006). Ekaterinburg: UIM Publ.; 2006. P. 37–63. (In Russ.).

7. Paryshev Yu. M., Rauzin Ya. R. Svoystva rel'sov, zakalennykh razlichnymi sposobami [Properties of rails hardened in various ways]. Vestnik Vsesoyuznogo nauchno-issledovatel'skogo instituta zheleznodorozhnogo transporta (Vestnik VNIIZhT) = Russian Railway Scientific Journal. 1964;(5):31-33. (In Russ.).

8. Shur E. A. Termicheskoe uprochnenie zheleznodorozhnykh rel'sov [Thermal hardening of rails]. Bernshteynovskie chteniya po termomekhanicheskoy obrabotke metallicheskikh materialov [Bernshtein readings on thermomechanical processing of metallic materials]. Procs. of scientific and technical seminar (Moscow, October 22–25, 2019). Moscow: NITU MISiS Publ.; 2019:23-24. (In Russ.).

9. Shur E. A. Izuchenie protsessa strukturoobrazovaniya pri termicheskoy obrabotke rel'sov [Study of the process of structure formation during heat treatment of rails]. Trudy TsNII MPS = Proceedings of the Central Research Institute of MPS. 1966;(314):103-114. (In Russ.).

10. Khlyst S. V., Kuz'michenko V. M., Khlyst I. S., Gontar' A. I. Opyt provedeniya differentsirovannoy termoobrabotki vozdushnym sposobom po tekhnologii TEK-DT na promyshlennoy ustanovke TEK-DTO-20-13,6 [Experience in conducting differentiated air heat treatment using the TEK-DT technology on an industrial plant TEK-DTO-20-13,6]. Inzhenernye resheniya. Chernaya metallurgiya = Engineering Solutions. Ferrous Metallurgy. 2013;(1):20-22. (In Russ.).

11. Kushnarev A. V., Kirichkov A. A., Belokurova E. V. et al. Development of an Innovative Digital Cooling Technology (Differential Heat Treatment) for EVRAZ NTMK Rails. Steel in Translation. 2020;50(6):415-419.

12. Borts A. I., Shur E. A., Reykhart V. A. et al. Perspektivy razvitiya rel'sovogo proizvodstva v Rossii [Prospects for the development of rail production in Russia]. Promyshlennyy transport XXI vek = Industrial transport XXI century. 2017;(3-4):11-16. (In Russ.).

13. Pan A. V. Razrabotka i osvoenie novykh tekhnologiy dlya tekushchego i perspektivnogo proizvodstva rel'sov [Development and development of new technologies for the current and prospective production of rails]. Dr. of Sci. (Engineering) thesis: 05.16.01. Moscow; 1999. 123 p. (In Russ.).

14. Fedin V. M., Devyatkin V. P., Shur E. A. et al. Patent No. 2003705 Russian Federation, MPK C21D 9/04. Sposob termicheskoy obrabotki rel'sov i ustanovka dlya ego osushchestvleniya [A method of heat treatment of rails and installation for its implementation]: No. 05036339: appl. 01.03.1992: publ. 30.11.1993. 10 p. (In Russ.).


Supplementary files

Review

For citations:


Tokmakova E.N., Perkov I., Ivanov P., Zagranichek K. Development of rails of a new category for use in particularly harsh operating conditions. RUSSIAN RAILWAY SCIENCE JOURNAL. 2022;81(4):339-346. (In Russ.) https://doi.org/10.21780/2223-9731-2022-81-4-339-346

Views: 493


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 2223-9731 (Print)
ISSN 2713-2560 (Online)