Study of ferromagnetic nanoparticles effect on tribotechnical lubricating characteristics
https://doi.org/10.12737/10391
Abstract
About the Authors
Elena Gennadyevna ZadoshenkoRussian Federation
Victoria Eduardovna Burlakova
Russian Federation
References
1. Lu, A.-H., Salabas, E.-L., Schuth, F. Magnetic nanoparticles: synthesis, protection, functionalization and application. Angewandte Chemie International Edition, 2007, vol. 46, iss. 8, pp. 1222–1244.
2. Couto, G.-G., et al. Nickel nanoparticles obtained by a modified polyol process: synthesis, characterization, and magnetic properties. Journal of Colloid and Interface Science, 2007, vol. 311, iss. 2, pp. 461–468.
3. Gherca, D. Synthesis, characterization and magnetic properties of MFe2O4 (M = Co, Mg, Mn, Ni) nanoparticles using ricin oil as capping agent. Journal of Magnetism and Magnetic Materials, 2012, vol. 324, iss. 24, pp. 3906–3911.
4. Baranov, D. A., Gubin, S. P. Magnitnye nanochastitsy: dostizheniya i problemy khimicheskogo sinteza. [Magnetic nanoparticles: achievements and problems of chemical synthesis.] Radioelektronika. Nanosistemy. Informatsionnye tekhnologii. 2009, vol. 1, no. ½, pp. 129–147 (in Russian).
5. Pileni, M.-P. Magnetic fluids: fabrication, magnetic properties and organization of nanocrystals. Advanced Functional Materials, 2001, vol. 11, no. 5, pp. 323–336.
6. Podgorkov, V. V. Povyshenie dolgovechnosti, nadezhnosti i tribologicheskoy bezopasnosti tekhnicheskikh ustroystv putem primeneniya magnitnykh zhidkostey. [Increasing the durability, reliability, and tribological safety of technological devices by applying magnetic fluids.] Vestnik of Ivanovo State Power Engineering University, 2005, iss. 3, pp. 70–74 (in Russian).
7. Orlov, D. V., Podgorkov, V. V., eds. Magnitnye zhidkosti v mashinostroenii. [Magnetic fluids in industry.] Moscow: Mashinostroenie, 1993, 272 p. (in Russian).
8. Lapochkin, А. I. Ispol'zovanie magnitnykh zhidkostey v kachestve smazki v melkomodul'nykh zubchatykh peredachakh. [Application of ferrofluid lubricants in the finegrained gear drives.] Vestnik mashinostroeniya, 2002, no. 6, pp. 34–36 (in Russian).
9. Luty, M., et al. Metodologiya sozdaniya smazochnykh materialov s nanomodifikatorami. [Methods of creating lubricating materials with nanomodifiers.] Friction and Wear, 2002, vol. 23, no. 4, pp. 411–424 (in Russian).
10. Perekrestov, А. P., Nepomnyashchiy, V. A. Mekhanizm deystviya protivoiznosnoy prisadki na magnitnoy osnove. [Mechanism of antiwear magnetic additive.] Vestnik of Astrakhan State Technical University, 2008, no. 2 (43), pp. 46– 50 (in Russian).
11. Materialy smazochnye zhidkie i plastichnye. Metod opredeleniya tribologicheskikh kharakteristik na chetyrekhsharikovoy mashine: GOST 9490-75. [GOST 9490-75. Liquid lubricating and plastic materials. Method of test for lubricating properties on four ball machine.] Ministry of Oil Refining and Petrochemical Industry of the USSR; State Committee for Standards of Council of Ministers of the USSR. Moscow: Izdatel'stvo standartov, 1987, 8 p. (in Russian).
12. Elmore, W.-C. Ferromagnetic Colloid for Studying Magnetic Structures. Physical Review, 1938, vol. 54, no. 5, pp. 309–310.
13. Martinez-Mera, I., et al. Synthesis of magnetite (Fe3O4) nanoparticles without surfactants at room temperature. Materials Letters, 2007, vol. 61, iss. 23–24, pp. 4447–4451.
14. Gubin, S. P. Chto takoe nanochastitsa? Tendentsii razvitiya nanokhimii i nanotekhnologii. [What is a nanoparticle? Trends in the development of nanochemistry and nanotechnology.] Rossiyskiy khimicheskiy zhurnal (Journal of Mendeleev Russian Chemical Society), 2000, vol. 44, no. 6, pp. 23–31 (in Russian).
15. Berger, P., et al. Preparation and properties of an Aqueous Ferrofluid. Journal of Chemical Education, 1999, vol. 76, no. 7, pp. 943–948.
16. Komlev, А. А., Ilhan, S. Formirovanie nanochastits zhelezo-magnievoy shpineli pri degidratsii soosazhdennykh gidroksidov magniya i zheleza [Formation of iron- magnesium spinel nanoparticles under dehydration of coprecipitated hydroxides of magnesium and iron.] Nanosystems: physics, chemistry, mathematics, 2012, vol. 3, no. 4, pp. 114–121 (in Russian).
17. Vernigorov, Y. М., Frolova, N. N. Razrushenie chastits ferromagnitnogo materiala v magnitovibriruyushchem sloe s vysokoy poroznost'yu. [Destruction of ferromagnetic material particles in magnetovibrating layer with high porosity.] Vestnik of DSTU, 2011, vol. 11, no. 7 (58), pp. 1127–1131 (in Russian).
18. Kuzharov, A. S., et al. Kvantovokhimicheskoe issledovanie vzaimodeystviya spirtov s yuvenil'noy poverkhnost'yu medi. [Quantum-chemical study on the interaction of alcohols with juvenile copper surface.] Vestnik of DSTU, 2004, vol. 4, no. 4 (22), pp. 485–488 (in Russian).
19. Melnikov, А. F. Эффективность применения присадок на основе частиц твердых материалов при приработке деталей двигателей внутреннего сгорания [Efficiency of using additives based on solid material particles during break-in period of the ICE parts.] Izvestiya Samarskogo nauch. tsentra Ros. akademii nauk, 2011, vol. 13, № 4 (3), pp. 1116–1118 (in Russian).
Review
For citations:
Zadoshenko E.G., Burlakova V.E. Study of ferromagnetic nanoparticles effect on tribotechnical lubricating characteristics. Vestnik of Don State Technical University. 2015;15(1):85-92. (In Russ.) https://doi.org/10.12737/10391