Preview

Litiyo i Metallurgiya (FOUNDRY PRODUCTION AND METALLURGY)

Advanced search

Analysis of the applicability of steel 20MnCrS5 for gears of the domestic mobile machines

https://doi.org/10.21122/1683-6065-2020-1-44-49

Abstract

Evaluation of applicability of 20MnCrS5 steel for gears of transmissions of mobile machines, manufactured according to European standard EN 10084 was carried out. Experimental and virtual simulation of hardenability of the steel according to the updated method was realized. The assessment of the applicability of 20MnCrS5 case-hardening steel for gears of the domestic mobile machines was made by the criterion of obtaining the cross section of the tooth structures with a hardness 32 HRC for core, 50 HRC for semi-conversion zone, 61–63 HRC for the diffusion layer excluding other physical and mechanical properties of steel.

It is established that at the content of alloying elements close to the maximum limit, the use of this steel is possible for gears with a module up to 10 mm.

About the Authors

S. P. Rudenko
Joint Institute of Mechanical Engineering of National Academy of Sciences of Belarus
Belarus
Minsk, Belarus, 12, Akademicheskaja str.


A. I. Valko
Joint Institute of Mechanical Engineering of National Academy of Sciences of Belarus
Belarus
Minsk, Belarus, 12, Akademicheskaja str.


S. G. Sandomirskii
Joint Institute of Mechanical Engineering of National Academy of Sciences of Belarus
Belarus
Minsk, Belarus, 12, Akademicheskaja str.


References

1. Gol’dshtejn Ja. E. Nizkolegirovannye stali v mashinostroenii [Low alloy steels in mechanical engineering]. Moscоw–Sverdlovsk, Mashgiz Publ., 1963, 240 p.

2. Grossmann M. Elemants of Hardenability, 98, ASM, Cleveland, 1952.

3. Entin R. I. Prevrashcheniya austenita v stali [Transformation of austenite into steel]. Moscow, Metallurgizdat Publ., 1960. 252 p.

4. Braun M. P. Fraktografiya prokalivaemosti i svojstva splavov [Fractography of hardenability and properties of alloys]. Kiev, Naukova dumka Publ., 1966. 312 p.

5. Rudenko S. P., Val’ko A. L., Sandomirskij S. G. Primenenie standarta ASTM A255–07 dlya raschet prokalivaemosti stalej, izgotavlivaemyh po GOST 4543-2016 [Application of ASTM standard A255–07 for the calculation of hardenability of steels produced according to GOST 4543-2016]. Mehanika mashin, mekhanizmov i materialov = Mechanics of machines mechanisms and materials, 2019, no. 3, pp. 51–57.

6. Rudenko S. P., Val’ko A. L., Shipko A. A. Komp’juternaja programma «Raschet prokalivaemosti konstrukcionnyh stalej (H-Steel)» [The computer (H-Steel)]. Sv. RB, no 846. 55 p.

7. Rudenko S. P., Val’ko A. L. Kontaktnaya ustalost’ zubchatyh koles transmissij energonasyshchennyh mashin [Contact fatigue of gears of transmission of high-power machines]. Minsk, Belaruskaya navuka Publ., 2014. 126 p.

8. Rudenko S. P., Val’ko A. L. Razrabotka rezhimov himiko-termicheskoj obrabotki zubchatyh koles iz jekonomno legirovannoj stali [Working of regimes of chemical heat treatment of tooth gears from economical the steel alloy]. Mehanika mashin, mehanizmov i materialov = Mechanics of machines mechanisms and materials, 2017, no. 2, pp. 34–38.

9. Bernst R., Bemer Z. i dr. Tekhnologiya termicheskoj obrabotki stali [Steel heat treatment technology]. Moscow, Metallurgiya Publ., 1981. 608 p.

10. Braun M. P. Vliyanie legiruyushchih elementov na svojstva stali [Effect of alloying elements on steel properties]. Kiev, GITL USSR Publ., 1962. 192 p.

11. Popov A. A., Popova L. E. Izotermicheskie i termokineticheskie diagrammy raspada pereohlazhdennogo austenita [Isothermal and thermokinetic diagrams of supercooled austenite decay]: Spravochnik termista. 2-e izd., isprav. i dop. Moscow, Metallurgija Publ., 495 p.

12. Kontrol’ kachestva termicheskoj obrabotki stal’nyh polufabrikatov i detalej [Quality control of heat treatment of steel semi-finished products and parts]: cprav. pod obshch. red. V. D. Kal’nera. Moscow, Mashinostroenie Publ., 1984. 384 p.

13. Susin, A. A., Rudenko S. P. Izgibnaya ustalost’, struktura i submikrostruktura konstrukcion-nyh himiko-termicheski uprochnennyh stalej [Flexural fatigue, structure and the structural submicrostructure of the chemical-thermally toughened steels]. Doklady NAN Belarusi = Proceedings of National Academy of Sciences of Belarus, 2002, vol. 46, no. 2. pp. 111–114.

14. Rudenko S. P., Val’ko A. L., Mosunov E. I. Tekhnicheskie trebovaniya k kachestvu cementovannyh sloev zubchatyh koles transmissij energonasyshchennyh mashin [Technical requirements for the quality of cemented layers of gears in transmissions of highpower machines]. Avtomobil’naya promyshlennost’= Automotive Industry, 2011, no. 9, pp. 33–36.

15. Rudenko S. P., Val’ko A. L., Parfenchik V. N. Vliyanie soderzhaniya sery na anizo-tropiyu plasticheskih svojstv konstrukcionnyh stalej [Influence of sulfur content on anisotropy of plastic properties of structural steels]. Stal’ = Steel, 2018, no 2, pp. 46–49.

16. Kovaleva I. A., Ovchinnikova I. A., Stefanovich S. V. Razrabotka meropriyatij po optimizacii himicheskogo sostava v cementuemoj marke stali 16MnCrS5 dlya ustraneniya prichin vozniknoveniya rosta krupnyh austenitnyh zeren [Development of action on optimization of chemical composition of carburized steel grade 16MnCrS5 to eliminate the causes of growth of large austenite grains]. Lit’e i metallurgiya = Foudry production and metallurgy, 2018, no. 1, pp. 49–56.


Review

For citations:


Rudenko S.P., Valko A.I., Sandomirskii S.G. Analysis of the applicability of steel 20MnCrS5 for gears of the domestic mobile machines. Litiyo i Metallurgiya (FOUNDRY PRODUCTION AND METALLURGY). 2020;(1):44-49. (In Russ.) https://doi.org/10.21122/1683-6065-2020-1-44-49

Views: 740


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


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