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The article presents the results of investigations into the wear of slide bearings with a non-typical bearing journal. Pairs made up of elements of different hardness operating together and journals of different design were studied. The possibility of reducing the wear due to contaminant hard particles in the oil by a change in the journal design was pointed out. The reduced material loss in this situation is probably due to contaminants being effectively removed from the abrasive contact area owing to the belts of soft material and the grooves on the surface of the journal. It was also found that the modified journal reduces wear in concentrated linear contact. This is probably due to effective, wear reducing boundary layers which form during friction owing to the presence of a modifying material.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
168--174
Opis fizyczny
Bibliogr. 17 poz., rys., tab., wykr.
Twórcy
autor
- Faculty of Mechanical Engineering and Aeronautics, Rzeszow University of Technology, 12 Powstancow Warszawy Street, 35-959 Rzeszow, Poland
Bibliografia
- [1] J. Sikora: Study of methodology of journal bearings fatigue strength investigations. Scientific Bulletins of Gdansk University of Technology, no 534, Mechanics, 74, Gdansk, 1996 (in Polish).
- [2] M. Szczerek, M. Wiśniewski, Tribology and Tribotechnic, Institute for Sustainable Technologies, Radom, 2000.
- [3] C.Q. Yuan, Z. Peng, X.C. Zhou, X.P. Pan, Effects of temperature on sliding wear process under contaminated lubricant test conditions, Wear 257 (2004) 812–822.
- [4] D. Lingzhong, X. Binshi, D. Shiyun, Y. Hua, T. Weiyi, Study of tribological characteristics and wear mechanism of nano-particle strengthened nickiel-based composite coatings under abrasive contaminant lubrication, Wear 257 (2004) 1058–1063.
- [5] B.K. Prascad, S. Rathod, O.P. Modi, M.S. Yadav, Influence of talc concentration on the wear response of a bronze journal bearing, Wear 269 (2010) 498–505.
- [6] J.K. Duchowski, R. Zitt, B. Omlor, Effects of contaminants on performance and wear of journal bearings operating under hydrodynamic regime: theoretical, experimental and applied considerations. In: Proceedings of the 10th EDF/Prime workshop: Condition Monitoring, Performance and Safe Operation of Bearings, Futuroscope, 6–7.10.2011.
- [7] A. Ronen, S. Malkin, Wear mechanism of statically loaded hydrodynamic bearings by contaminant abrasive particles, Wear 68 (1981) 371–389.
- [8] R.S. Dwyer-Joyce, R.S. Sayles, E. Ionnides, An investigations into the mechanism of three-body abrasive wear, Wear 175 (1994) 133–142.
- [9] J.A. Williams, A.M. Hyncica, Mechanisms of abrasive wear in lubricated contacts, Wear 152 (1992) 57–74.
- [10] J.J. Broeder, J.W. Heijnekamp, Abrasive wear of journal bearings by particles in the oil, Proceedings of the Institution of Mechanical Engineers 180 (3K) (1965/1966) 21–31.
- [11] J. Sęp, Wear characteristics of sliding bearings with two-component surface layer of the pin, Zagadnienia Eksploatacji Maszyn 49 (1998) 571–582 (in Polish).
- [12] J. Sep, A. Kucaba-Piętal, Experimental testing of journal bearings with two-component surface layer in the presence of an oil abrasive contaminant, Wear 249 (2001) 1090–1095.
- [13] J. Sep, Analysis of tribological properties of steel sliding elements with two-component surface layer in lubricated contact, Wear 271 (2011) 616–620.
- [14] J. Sep, The Oil Film Properties in Journal Bearings With Non-Typical Geometry, Rzeszow University of Technology, Rzeszow, 2006 (in Polish).
- [15] J. Sep, The influence of modifying material and forming parameters on tribological properties of two-component surface layer, Tribologia 163 (1999) 71–86 (in Polish).
- [16] S. Krawiec, The synergistic of copper powder with PTFE in a grease lubricant under mixed friction conditions, Archives of Civil and Mechanical Engineering 11 (2011) 379–390.
- [17] J. Padgurskas, V. Snitka, V. Jankauskas, A. Andriusis, Selective transfer phenomenon in lubricated sliding surfaces with copper and its alloy coatings made by electro-pulse spraying, Wear 260 (2006) 652–661.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-76bebd65-4da2-4a27-bb5b-3e9ac2bca952