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USE OF HIGH-STRENGTH BAINITIC CAST IRON FOR PRODUCING GEAR WHEELS

Abstract

The advantages and drawbacks of high-strength cast irons with bainitic structure are reviewed basing on the authors’ own experience in the production of critical partsfrom this material and on the analysis of world trends. A possibility of the replacement of alloy steels by bainitic cast iron in manufacturing critical machine parts is discussed.

About the Authors

A. I. Pokrovskiy
Physical-Engineering Institute of the NAS of Belarus
Belarus

Pokrovskiy Artur.

10, Kuprevicha Str., Minsk, Belarus. tel.: +375 (17) 263-58-38



L. R. Dudetskaya
Physical-Engineering Institute of the NAS of Belarus
Belarus

Dudetskaya Larisa.

10, Kuprevicha Str., Minsk, Belarus. tel.: +375 (17) 263-58-38



References

1. VChShG – vysokoprochnyi chugun s sharovidnym grafitom (VChShG–high-strength cast iron with globular graphite). Available at: http:// www. modificator. ru/terms/ductile_nci. html (accessed 2 March 2015).

2. Keith D. Millis: the father of ductile iron. Online Library. Available at: http:// www. thefreelibrary. com (accessed 2 March 2015).

3. Ductile Iron Data. Ductile Iron Society. Promoting the production and application of ductile iron castings. Available at: http:// www. ductile. org (accessed 2 March 2015).

4. Millis K. D. et al. Cast ferrous alloy. Patent US2485760, 1949.

5. State Standard 7293–85. Spheroidal graphite iron for casting. Grades. Moscow, Standartinform Publ., 1987. 3 p. (In Russian).

6. Hummel U., Piwowarsky E. Uber die Zwischenstufenvergütung von Gusseisen. Giesserei, Technisch-wissenschaft, 1951, no. 5, pp. 378–381.

7. Pivovarov V. M., Tananko I. A., Levchenko A. A. O beinitnom prevraschenii vysokouglerodistogo austenita, legirovannogo kremniem [Bainite transformation in high-C austenite alloyed with Si]. Fizika metallov i metallovedenie – Physics of Metals and Metallography, 1972, vol. 33, no. 2, pp. 346–352.

8. Dodd J. Zwischenstufenvergutung von Guseisen mit Kugelgraphit. Giesserei, 1978, vol. 65, no. 4, pp. 73–80.

9. Johanson M. Austenitisch-beinitisches Guseisen mit Kugelgraphit. Giesserei-Praxis, 1979, no. 6, pp. 92–98.

10. Stenfors S. E. The effect of alloying elements on the bainite transformation in dictile iron. Materials of Research Scienty Symposium, 1985, рp. 423–432.

11. V o i g t R. Gefuegeuntersuchung mit Rem­rasterelektronenmikroskop von Zwischenstufevergutetem guseisen mit kugelgraphit. ­ Giesserei-Praxis, 1985, no. 7, pp. 95–104.

12. Кuoichi Nagai, Katsuhiko Kishitake. Tensile and impact properties of forged speroidal graphite cast iron. The 57-th World Foundry Congress. Osaka, 1990, p. 31.

13. Rohrig K. ADI – ein Leichtbauwerkstoff mit hohem Potential. Giesserei Rundschau, 2002, vol. 49, no. 11/12, pp. 192–201.

14. Dudetskaya L. R., Pokrovskiy A. I., Gauhshtein I. S., Demin M. I., Gurchenko P. S. Beinitnyj chugun: opyt polucheniya i primeneniya [Bainitic cast iron: practice of production and application]. Avtomobilnaya promyshlennost – Automotive Industry. 2001, no. 11, pp. 33–35.

15. Kornienko E. N., Panov A. G., Hal’fin D. F. Perspektivy proizvodstva otlivok iz ChShG austenitno-beinitnogo klassa [Prospects for producing castings from cast iron with globular graphite of the austenite-bainite class]. Liteischik Rossii – Russian Foundryman, 2004, no. 6, pp. 11–16.

16. Patent 60 106946 Japan. Bainitic high-strength cast iron, 1985. 1

17. Patent 61 33361 Japan. Bainitic high-strength cast iron, 1986. 18. Patent 2590508 France. Bainitic high-strength cast iron, 1987.

18. Patent 53–20448 2 Japan. High-strength cast iron with globular graphite, 1978.

19. Mann R., LieberaR. Einsatz von Gusseisen mit Kugelgraphit fur Zahnrader. Giessereitechnik, 1981, vol. 27, no. 7, pp. 206–210.

20. Mann R., Wolf K., Mirr E. Zwischenstufen verguten von Zahnrader aus unlegiertem Guseisen mit Kgelgrafit. Giesseraitechnik, 1983, no. 5, pp. 135–140.

21. Retting H., Hornung K., Mannes W. Zahnrader aus beinitischem Guseisen mit Kugelgraphit. BDJ-Berichte, 1983, pp. 14–33.

22. Roedter H. ADI – Austeperirovannyi chugun [ADI – Austempered Ductile Iron]. Liteischik Rossii – Russian Foundryman, 2004, no. 3, pp. 12–21.

23. Nedelko L. A., Shestakov A. V., S hmidt V. I. Primenenie beinitnogo chuguna dlya avtomobil’nyh otlivok [Use of bainitic cast iron for automobile castings]. Obzornaya informatsia – Review Information. Tolyatti, 1990. 34 p.

24. Beh N. I. Perspektivy primeneniya beinitnogo vysokoprochnogo chuguna v avtomobilestroenii [Prospects of the use of bainitic high-strength cast iron in automotive industry]. Liteinoe proizvodstvo – Foundry Engineering, 1993, no. 8. pp. 2–3.

25. Beh N. I. Izgotovlenie tyazhelonagruzhennyh avtomobil’nyh detalei iz vysokoprochnogo chuguna [Production of heavy-duty automobile parts form high-strength cast iron]. Liteinoe proizvodstvo – Foundry Engineering, 1994, no. 10–11, pp. 11–14.

26. Kosnikov G. A., Morozova L. M., Beh N. I. Vliyanie usloviy izotermicheskoi zakalki na strukturu i svoistva ChShG [The effect of conditions of isothermal quenching on structure and properties of cast iron with globular graphite]. Liteinoe proizvodstvo – Foundry Engineering, 1998, no. 12, pp. 27–29.

27. Artemenko T. V. Issledovanie i razrabotka tehnologii proizvodstva massivnyh otlivok iz beinitnogo chuguna s sharovidnym grafitom. Avtoref. kand. tehn. nauk [Study and development of the technology for producing large castings from bainitic cast iron with globular graphite. PhD thesis]. Moscow, 2001. 26 p.

28. Kosnikov G. A., Morozova L. M. Austemerirovannie chuguny s sharovidnym grafitom [Austempered cast irons with globular graphite]. Liteinoe proizvodstvo – Foundry Engineering, 2013, no. 12, pp. 8–12.

29. Dudetskaya L. R., P okrovskiy A. I., Gauhshtein I. S., Demin M. I., Gurchenko P. S. Deformirovanie kak sredstvo uprochneniya chugunnyh otlivok [Plastic deforming as a means for strengthening foundry goods]. Avtomobilnaya promyshlennost – Automotive Industry, 2001, no. 7, pp. 30–33.

30. Dudetskaya L. R., Pokrovskiy A. I. Promyshlennoe oprobovanie tehnologii polucheniya otvetstvennyh avtomobilnyh detalei iz deformirovannogo chuguna [Industrial testing of technology for producing critical automobile parts from deformed cast]. Vesci Natsiyanalnai akademii navuk Belarusi, seriya fizika-tehnichnyh navuk – Proceedings of the National Academy of Sciences of Belarus, ser. Physical and Technical Sciences, 2003, no. 2, pp. 47–53.

31. Pokrovskiy A. I. Razrabotka i vnedrenie tehnologii izgotovleniya vysokokachestvennyh izdelij iz deformirovannogo chuguna [Development and application of the technology for producing high-quality parts from deformed cast iron]. Nauka i innovatsii – Science and Innovations, 2005, no. 4 (26), pp. 54–65.

32. Pokrovskiy A. I. Goryachaya plasticheskaya deformatsia chuguna: struktura, svoistva, tehnologicheskie osnovy [Hot plastic deformation of cast iron: structure, properties, technological basics]. Minsk, Belaruskaya Navuka Publ., 2010. 256 p. 3

33. Dudetskaya L. R., Tkacheva V. A., Pokrovskiy A. I. Osobennosti beinitnogo prevrascheniya v kovkom chugune [Specific features of bainite transformation in a ductile cast iron]. Materialy, tehnologii, instrumenty. – Materials, Technologies, Tools, 1998, vol. 3, no. 2, p. 41.

34. Pokrovskiy A. I., Chaus A. S., Kunovskiy E. B. Vliyanie formy grafitovykh vklyucheniy na akusticheskie kharakteristiki izdelii iz litogo i deformirovannogo chuguna [Effect of the shape of graphite inclusions on acoustic characteristics of articles from cast and deformed iron]. Metallovedenie i termicheskaya obrabotka metallov – Metal Science and Heat Treatment, 2011, vol. 53, no. 7–8, pp. 311–317.


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For citations:


Pokrovskiy A.I., Dudetskaya L.R. USE OF HIGH-STRENGTH BAINITIC CAST IRON FOR PRODUCING GEAR WHEELS. Litiyo i Metallurgiya (FOUNDRY PRODUCTION AND METALLURGY). 2015;(2):126-134.

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