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Antiseizure properties of cadmium, cobalt and lead 8-hydroxyquinolinates in lithium grease

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Konferencja
Second International Tribology Conference
Języki publikacji
EN
Abstrakty
EN
The influence of organometallic complexes on friction was investigated. 8-hydroxyquinoline and cadmium, cobalt and lead complexes were applied as additives to lithium grease. The influence of these additives on antiseizure properties of lithium grease was compared. Dependence of friction torque on time for linearly increasing load was tested on a four-ball machine. The results show that the highest seizure load was obtained for the cadmium complex of 8-hydroxyquinoline. The observed changes of anti-seizure properties can be interpreted as the result of steel surface modification and creation of thin metal plates.
Rocznik
Strony
177--182
Opis fizyczny
Bibliogr. 31 poz., rys., tab., wykr.
Twórcy
autor
  • Technical University of Radom, ul. Chrobrego 27, 26-600 Radom, POLAND
  • Technical University of Radom, ul. Chrobrego 27, 26-600 Radom, POLAND
Bibliografia
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  • [5] Czichos H. (1980): Tribology a System Approch to the Science and Technology of Friction. - Lubrication and wear tribology, Series 1, Elsevier Scientific Publishing Company, Amsterdam.
  • [6] Fischer T.E. and Luton M.I. (1983): Effect of simple lubricants on deformation and wear in concetrated sliding contact. - ASLE Trans., vol.26, pp.31-36.
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  • [8] Hownung E. and Winkler L. (1983): Nutzung von Oberflachenvorgangen zur Reibungs-und Vcrschleifiminderung. - Schmirungsttechnik 14, pp.31-36.
  • [9] Kasrai M., Cutler J.N., Gore K., Canning G. and Bancroft G.M. (1998): The chemistry of anti-wear films generated by the combination of ZDDP and MoDTC examined by X-ray absorption spectroscopy. - Tribology Transactions, vol.41, pp.69-77.
  • [10] Lian Y., Yu L. and Xue Q. (1996a): The anti-wear and extreme pressure properties of some oil-water soluble rare earth complexes. Part 1: their tribological behaviour in water. - Wear, vol.196, pp,188-192.
  • [11] Lian Y., Yu L. and Xue Q. (1996b): The anti-wear and extreme pressure properties of some oil-water Voluble rare earth complexes. Part 2: their tribological behaviour in liquid paraffin. - Wear, Vol.196, pp.193-196.
  • [12] Liu W., Zhang Z. and Xue Q. (1999): Tribological properties of rare earth compounds/complexes as anti-wear additives in lubricating oils or grease. -Tribologia, vol.165, pp.257-271.
  • [13] Martin J. M. (1999): Anti-wear mechanisms of zinc ditiophosphate: a chemical hardness approach.- Tribology Letters, vol.6, pp.1-8.
  • [14] Martin J.M., Grossiord C., Le Mogne T. and Igarashi J. (2000): Transfer films and friction under houiulary lubrication. - Wear, vol.245, pp.107-115.
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  • [16] Mielnik Z.P., Wasilenko I.W., Iszczuk K.P. and Popowa I.B. (1989): Influence of copper compounds Ił additives on graese properties. - Chim. i Technol. Top. I Masel, vol.10, pp.16-18.
  • [17] Ozimina D. (1995): Tribological aspects of a bounder layer forming in an organometallic compound interaction process. - Zagadnienia Eksploatacji Maszyn, vol.104, pp.521-536.
  • [18] Pikoszewski M., Szczerek M. and Tuszyński W. (2001): The action of lubricants under extreme pressure conditions in modified four-ball tester. - Wear, vol.249, pp.188-193.
  • [19] Sheasby J.S., Jennings M.C. and Cassells K.D. (1999): The effect of sample spin on boundary m bulion by several oil blends based upon zinc dialkylditiophosphates — Wear, vol.231, pp.256-264.
  • [20] Sułek M.W. (1996): Tribologische Eigenschaften mettalorganischer Verbindungen in Glycerin. - und Schmirungstechnik, vol.4, pp.248-254.
  • [21] Sułek M. W„ Fąfara Z., Karbownik M„ Wendt U. and Urbański A. (1995): Metabolism of organometallic compounds in a friction zone. - Tribologia, vol.4, pp.383-390.
  • [22] Sułek M. W. Mild Kajdas Cz. (1987): Influence of organometallic additives on tribological properties. – III Symposium Intertribo’87, Czech Republic.
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  • [24] Yang D., Zhou J. and Xue Q. (1996) Tribochemical behaviour of Ni ion implanted pure iron lubricated with ZDDP as an additive. - Wear, vol.199, pp.60-65.
  • [25] Yu L., Nie M. and Lian Y.(1996): The tribological behaviour and application of rare earth lubricants. -Wear, vol.197, pp.206-210.
  • [26] Yu L., Lian Y. and Xue Q. (1998a): The tribological behaviours of some rare earth complexes as lubricating additives. Part 1. An investigation of the friction-reducing behaviours and an XPS study of the tribochemical characteristics. - Wear, vol.214, pp.47-53.
  • [27] Yu L., Lian Y. and Xue Q. (1998b): The tribological behaviour of some rare earth complexes as lubricating additives. Part 2. The anti-wear and extreme pressure properties in lithium grease. Wear, vol.214, pp. 151-155.
  • [28] Zhang Z., Liu W. and Xue Q. (1996a): Tribological properties and lubricating mechanisms of the ran earth complex as a grease additive. - Wear, vol.194, pp.80-85.
  • [29] Zhang Z., Su C., Liu W., Xue Q. and Tan M. (1996b): Study on tribological properties of the complex of rare earth dialkylditiocarbamate and phenantroline in lubricating grease. - Wear, vol.192, pp.6-10.
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Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPZ2-0002-0025
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