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Tytuł artykułu

Biodegradable lubricant for railway transport

Treść / Zawartość
Identyfikatory
Warianty tytułu
RU
Биоразлагаемый смазочный материал для железнодорожного транспорта
Języki publikacji
EN
Abstrakty
EN
Boron-containing lubricant for rail-curve lubrication is developed. Its effectiveness was proved by series of experiments carried out on different types of friction machines. The mechanism of antiscoring effect of boron-containing additives was analyzed in terms of physical adsorption.
RU
Разработан смазочный материал для контакта колесо-рельс, содержащий борную присадку. Его эффективность была подтверждена серией опытов на различных типах машин трения. Механизм противозадирного действия борной присадки был проанализирован с позиции физической адсорбции.
Czasopismo
Rocznik
Strony
99--105
Opis fizyczny
Bibliogr. 14 poz., tab., wykr.
Twórcy
autor
  • Rostov State Transport University 2, sq. Rostovskogo Strelkovogo Polka Narodnogo Opolchenya, 344038, Rostov-on-Don, Russia
  • Rostov State Transport University 2, sq. Rostovskogo Strelkovogo Polka Narodnogo Opolchenya, 344038, Rostov-on-Don, Russia
Bibliografia
  • 1. Hardwick, C. & Lewis, R. & Eadie D.T. Wheel and rail wear - Understanding the effects of water and grease. Wear. 2014. Vol. 314. P. 198-204.
  • 2. Renewable Lubricants, Inc. Understanding Biobased/Biodegradable and the Industry’s Standardized Tests and Definitions. Available at: http://www.renewablelube.com/pdf/standardized.pdf
  • 3. Nagendramma, P. & Kaul, S. Development of ecofriendly/biodegradable lubricants: An overview. Renewable and Sustainable Energy Reviews. 2012. Vol. 16. P. 764-774.
  • 4. Mang, T. & Dresel, W. Lubricants and lubrication. Second completely revised and extended edition Wiley-VCH. 2007.
  • 5. Theodori, D. & Saft, R.J. & Krop, H. & et. al. Concept background document. Development of criteria for the award of the European eco-label to lubricants. IVAM Research and Consultancy on Sustainability. 2003. Available at: www.ivam.uva.nl.
  • 6. Yan, J. & Ren, T. & Zeng, X. & Van Der Heide, E. The tribological performance and tribochemical analysis of novel borate esters as lubricant additives in rapeseed oil. Tribology International. 2014. Vol. 71. P. 149-157.
  • 7. Shah, F.U. & Glavatskih, S. & Antzutkin, O.N. Boron in tribology: from borates to ionic liquids. Tribology Letters. 2013. Vol. 51. No. 3. P. 281-301.
  • 8. Wang, Y.G. & Li, J.S. & Ren, T.H. Tribological study of a novel borate ester containing dialkylthiophosphate group as multifunctional additive. Industrial Lubrication and Tribology. 2009. Vol. 61. No. 1. P. 33-39.
  • 9. Hao, L.-F. & Li, J.-S. & Xu, X.-H. & et. al. Preparation, characterization, and tribological evaluation of triethanolaminemonooleate - modified lanthanum borate nanoparticles. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology. 2010. Vol. 224. No. 11. P. 1163-1171.
  • 10. Extreme pressure properties: friction and wear tests for lubricants, four-ball machine. 45th Annual Education Manual for Analysis and Testing. Standard IP-239. 1986. Vol. 1. Part 1. P. 239.1- 239.16.
  • 11. Masel, R. Principles of Adsorption and Reaction on Solid Surfaces. Wiley Interscience. 1996.
  • 12. Laidler, K. The World of Physical Chemistry. Oxford: Oxford University Press. 1993.
  • 13. Luna, F.M.T. & Cavalcante, J.B. & Silva, F.O.N. & et. al. Studies on biodegradability of biobased lubricants. Tribology International. 2015. Vol. 92. P. 301-306.
  • 14. Battersby, N.S. The biodegradability and microbial toxicity testing of lubricants – some recommendations. Chemosphere. 2000. Vol. 41. No. 7. P. 1011-1027.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-33a58330-ab91-4943-8238-c390e484cf17
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