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55th anniversary of “Materials science and metallurgical processes” department of Chuvash State University
Название BORAT metal-working coolant for machining metals
Автор I. E. Illarionov, Sh. V. Sadetdinov, E. N. Zhirkov
Информация об авторе

I. N. Ulyanov Chuvash State University (Cheboksary, Russia):

I. E. Illarionov, Dr. Eng., Prof, Head of the Chair “Materials science and metallurgical processes”, e-mail: tmilp@rambler.ru
Sh. V. Sadetdinov, Dr. Chem., Prof., Chair “Materials science and metallurgical processes”
A. V. Korolev, Cand. Eng., Associate Prof.

Zelenodolsk Designing and Engineering Office (Zelenodolsk, Russia):
E. N. Zhirkov, General Director

Реферат

A new product has been developed: BORAT metal-working coo lant is a 60% aqueous solution with the following composition,% (wt.): monoethanolamine borate — 24, alkyl polyoxyethylene phosphate — 4, gly ceroborate — 12, 1,1′–ethylene–2,2′-dioleyl-bisimidazoline — 20, water — the balance. Concentrate appearance: light yellow; emulsion appearance: translucent color; pH: 8.6–9.2; density at 20 °C (kg/m3): 1012–1108; storage temperature: –20 to +40 ° C. To assess the effectiveness of the coolant, comparative studies of a 3, 4, 5, 6, 7% aqueous solution of this coolant and the NGL-205 5% coolant emulsion with respect to tool life and surface quality during drilling, turning, grinding steels: St. 20, St. 45, 40Kh, 30KhGS, 50KhN. It was established that the most effective coolant compositions of BORAT are its 4, 5 and 6% aqueous solutions, which have superior tool durability and surface finish than the NGL-205 coolant. Industrial tests carried out at the Cheboksary Industrial Tractors Plant (currently the Tractor Plants Concern, Cheboksary) showed that BORAT coolant has a large working resource, high cleaning property and protects the treated parts from corrosion during storage and transportation. The data obtained make it possible to consider BORAT coolant as an effective lubricating and cooling technological means for the mechanical processing of metals and is recommended for the use in operations of edge cutting machining, grinding and possible replacement of traditionally used coolants.

Ключевые слова BORAT metal-working coolant, NGL-205 metal-working coolant, drilling, turning, grinding, tool life, roughness
Библиографический список

1. Illarionov I. E., Gilmanshina T. R., Kovaleva A. A. et al. Destruction mechanism of casting graphite in mechanical activation. CIS Iron and Steel Review. 2018. Vol. 15. pp. 15–17.
2. Illarionov I. E. Application of fabrication technology for metal phosphate binders, core sands and moulding mixtures on their base. Chernye Metally. 2018. No. 4. pp. 13–19.
3. Illarionov I. E., Gilmanshina Т. R. Kovaleva А. А., Borisyuk V. А. Study of the depth of penetration of self-heating non-stick coatings in cold-hardening mixtures. Chernye Metally. 2019. No. 1. pp. 21–25.
4. Illarionov I. E., Kaftannikov A. S., Nuraliev F. A., Gilmanshina Т. R. Evaluation of burn value on the surface of iron castings. Chernye Metally. 2018. No. 8. pp. 23–28.
5. Sadetdinov Sh. V., Nikitin A. I., Fedorov V. E. Liquid coolant lubricant. Patent RF No. 23996052. Applied: 06.03.2008. Published: 20.09.2010. Bulletin No. 24.
6. Basov D. V., Nikitin A. I., Sadetdinov Sh. V. Lubricant coolant. Patent RF No. 2415177. Applied: 26.03.09. Published: 27.03.2011. Bulletin No. 9.
7. Dementyeva N. А., Evgrafov Yu. V., Dorokhov А. А. et. al. IVNETIX metal-working coolant for mechanical processing metals and alloys. Reliability and service life of machines and mechanisms: Collection of works of Ivanovo State Chemical and Technological University. Ivanovsky institute GPS MChS RF. Ivanovo, 2014. pp. 52–54.
8. Yakubov Ch. F. Strengthening action of lubricant-cooling agent when metal cutting. Simferopol: Simferopolskaya gorodskaya tipografiya. 2008. 156 p.
9. Tlekhusezh М. А., Sorotskaya L. N., Solonenko L. А. Ecologically clean liquid coolant for metal cutting. Fundamentals. 2015. No. 7-4. pp. 727–730.
10. Bergmann M., Krimpelstātter K., Pröll C. Advanced roll-gap lubrication solutions in hot and cold rolling. European Steel Technology and Application Days (ESTAD) Conference. 2017. pp. 81–90.
11. Reihardt Т., Schmidt B., Deli H., Falck А., Lademacher Т. Oil free lubrication in long product rolling. Chernye Metally. 2009. No. 3. pp. 37–42.
12. Fadeev I. V., Sadetdinov Sh. V., Illarionov I. E. Development of synthetic borate-based washing agents for cleaning metal surface. Cheboksary: Chevashsky gosudarstvenny universitet imeni I. N. Ulyanova, 2016. 185 p.
13. Shvarts Е. М. Interaction of boric acid with spirits and oxyacids. Riga: Zinatne, 1990. 414 p.
14. Kuznetsov S. А., Vasilyeva Е. V, Koltsov N. I. Obtainment and proper ties of multifunctional imidazole additives. Vestnik Chuvashskogo universiteta. 2008. No. 2. pp. 37–41.
15. Cherepakhin А. А., Volkov R. B., Golobokov А. V. Selection of criterion of material machinability. Vestnik mashinostroeniya. 2014. No. 11. pp. 68–69.
16. Guzeev V. I., Batuev V. А., Surkov I. V. Cutting modes for turning and drilling-milling-boring machines. Moscow: Mashinostroenie, 2007. 366 p.
17. Cherepakhin А. А., Soldatov V. F. Cutting tool durable testing. Moscow: RUSAINS, 2016. 122 p.
18. Bösler R.-P., Kahle K.-P., Lamp H.-W. et al. Operational results of roll gap lubrication at ECO Stahl’s hot strip mill. La Revue de Métallurgie. 2003. Vol. 100. No. 7-8. pp. 707–712.
19. Edyanov V. D. Advanced grinding modes. Review. Series Х. Bearing industry. Moscow: TsNIIinform i TsNIITEIavtoprom, 1990. 66 p.
20. Cherepakhin А. А., Kuznetsov V. V. Technology of structure materials. Material cutting: tutorial. Moscow: Akademiya, 2011. 287 p.
21. Volkov R. B., Cherepakhin А. А. Features of turning of 75 KhGFS experimental steel. Problemy chernoy metallurgii i materialovedeniya. 2013. No. 1. pp. 79–82.
22. Fadeev I. V., Novoselov А. М., Sadetdinov Sh. V. Effect of an amidoborate complex on St. 10 steel corrosion and corrosion fatigue. Privolzhsky nauchny zhurnal. 2014. No. 3 (31). pp. 31–35.
23. Illarionov I. E., Sadetdinov Sh. V., Strelnikov I. А., Gartfelder V. А. Influence of phosphate borate compounds on anti-corrosion stability of carbon steel in neutral water environment. Chernye Metally. 2018. No. 5. pp. 47–53.
24. Fadeev I. V., Rementsov A. N., Sadetdinov Sh. V. Improvement of anticorrosion properties of washing agents using amidoborate compounds in automobile industry. Gruzovik. 2015. No. 4. pp. 13–16.
25. Fadeev I. V., Sadetdinov Sh. V. Increasing of St. 10 steel anticorrosion resistance. Vestnik MADI. 2015. No. 2. pp. 107–114.

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