Preview

Improving the wear resistance of steel products by using non-standard heat treatment modes. Foundryproductionandmetallurgy

https://doi.org/10.21122/1683-6065-2021-2-100-104

Abstract

The use of non-standard modes of heat treatment increases the density of dislocations in the crystal structure of the α-phase and increases the wear resistance of carbon, low-alloy steels under various friction conditions, which is comparable to the results when heated to a standard temperature (Ac3 + 30–50 °C). The preliminary extreme heating temperature is determined. After requenching at standard temperature and low tempering, the wear resistance of steels under various types of friction increases by up to 40 % compared to standard quenching.

About the Authors

D. M. Berdiev
Tashkent State Technical University named after I. Karimov
Uzbekistan
Tashkent, Uzbekistan, 2, Universitetskaya str.


A. A. Yusupov
Tashkent State Technical University named after I. Karimov
Uzbekistan
Tashkent, Uzbekistan, 2, Universitetskaya str.


References

1. Grebenkov S. K., Shatsev A.A., Ryaposov I. V. Deformatsionnoe uprochnenie nizkouglerodistnyx martensitnynyx staley s vnyrajennoy strukturnoy nasledstvennostyu [Strain hardening of low‑carbon martensite steels with pronounced structural heredity]. Metallovedenie i termicheskaya obrabotka metallov =Meteorology and heat treatment of metals, 2013, no 11, рр. 34–36.

2. Sadovski V. D. Correction of the Course – Grained Structure During Thermal Treatment of Steel. Heat Treatment and technology of surface coatings. Proceedings of the 7th International Congress on Heat treatment of Materials, 1990, Vol. 1, December 11–14, рр. 10–14.

3. Dyuchenko S. S. Heredity in phase transformation: mechanism of the phenomenon and effect on the properties. Metall Science and heat treatment, 2000, vol. 4, no. 3–4, рр. 122–126.

4. Sagaradze V. V., Zuev Yu. N., Bondarchuk S. V. Structural heredity in the U – 6 Nb Alloy and Conditions for its Elimination. The Phusics of Materials and Metallography, 2013, vol. 114, no. 4, рр. 299–307.

5. Yugai S. S., Kleiner L. M., Shatsov A.A. and N. N. Mitrokhovich. Structural heredity in low‑carbon martensitic steels. Metall Sciens and teat treatment, 2004, vol. 46, no. 11–12, рр. 539–542.

6. Berdiev D. M., Toshmatov R. K. Osobennosti fazovyx i strukturnnyx prevrasheniy konstruksionnnyx staley pri netraditsionnnyx rejimax termicheskoy obrabotki [Features of phase and structural transformations of structural steels under unconventional modes of heat treatment]. Vestnik mashinostroeniya = Bulletin of Mechanical Engineering, 2020, no. 10, рр. 63–65.

7. Berdiev D. M., Toshmatov R. K. Phase and Structural Transformations of Structural Steels in Nontraditional Heat Treatment. Russian Engineering Research, 2021, vol. 41, no. 1, pp. 46–48.

8. Shishkov M. M. Marochnik staley i splavov [Grade list of steels and alloys]. Spravochnk [Guide]. Izd. 3‑e dopolnennoe. Donetsk, Yugo‑Vostok Publ., 2002. 456 р.

9. Bataev V.A., Bataev A.A., Alximov A. P. Metodny strukturnogo analiza materialov i kontrolya kachestva detaley [Methods of structural analysis of materials and quality control of parts]. Moscow, Nauka Publ., 2007. 224 р.

10. Gorelik S. S., Skakov Yu.A., Rastorguev L. N. Rentgenograficheskiy i elektronno-opticheskiy analiz [X‑ray and electronoptical analysis]. Moscow, MISIS Publ., 1994. 328 р.

11. Mashina X4‑B ispnytatelnaya ustanovka dlya issledovaniya iznashivaniya materialov zakreplennnym abrazivom [Machine X4‑B test unit for testing the wear of materials with fixed abrasive]. Slovar‑spravochnik po treniyu, iznosu i smazke detaley mashin [Dictionary‑reference on friction, wear and lubrication of machine parts]. Kiev, Naukova dumka Publ., 1979. 185 р.

12. Tenenbaum M. M. Zakonomernosti abrazivnogo iznashivaniya detaley rabochix organov selskoxozyaystvennnyx mashin [Patterns of abrasive wear of parts of working bodies of agricultural machines]. Treniya i iznos = Friction and wear], 1980, vol. 1, no 2, рр. 357–364.

13. Garkunov D. N. Tribotexnika [Tribotechnika]. Moscow, Izd‑vo MSXA Publ., 2005. 356 р.


Review

For citations:


Berdiev D.M., Yusupov A.A. Improving the wear resistance of steel products by using non-standard heat treatment modes. Foundryproductionandmetallurgy. Litiyo i Metallurgiya (FOUNDRY PRODUCTION AND METALLURGY). 2021;(2):100-104. (In Russ.) https://doi.org/10.21122/1683-6065-2021-2-100-104

Views: 492


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


ISSN 1683-6065 (Print)
ISSN 2414-0406 (Online)