EVALUATING THE INFLUENCE OF BENDING STRESS ON A 1H18N9 STEEL SHAFT WEAR PROCESS IN A WATER LUBRICATED SLIDING BEARING WITH A RUBBER BUSHING - Publication - Bridge of Knowledge

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EVALUATING THE INFLUENCE OF BENDING STRESS ON A 1H18N9 STEEL SHAFT WEAR PROCESS IN A WATER LUBRICATED SLIDING BEARING WITH A RUBBER BUSHING

Abstract

The issue of excessive wear of shaft journals co-working with a rubber bearing has been unexplained so far. Premature and sometimes very intensive wear of ship sliding bearings in water conditions is the reason for carry out very expensive and more frequent than expected repairs. The authors (E. Piątkowska, W. Litwin) made an attempt to find a case that influences the value of this wear described in the paper “Attempt at Evaluating the Influence of Bending Stress on Shaft Wear Process in Water Lubricated Sliding Bearing with Rubber Bush” (TRIBOLOGY 1/2017). These studies, however, did not explain the dependency of the wear process but showed how to progress further to find the answer to the question about the effect of bending stress on shaft wear. The research is continued on a modified test stand, and their results are presented in this paper. The profilographometer was used to evaluate the wear of the journal shaft. To compare wear intensity, roughness profiles have been 'removed' from the journals both before and after co-operation. They were compared in terms of bending stresses and bending moments.

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Category:
Articles
Type:
artykuły w czasopismach recenzowanych i innych wydawnictwach ciągłych
Published in:
TRIBOLOGIA pages 79 - 85,
ISSN: 0208-7774
Language:
English
Publication year:
2017
Bibliographic description:
Piątkowska E.: EVALUATING THE INFLUENCE OF BENDING STRESS ON A 1H18N9 STEEL SHAFT WEAR PROCESS IN A WATER LUBRICATED SLIDING BEARING WITH A RUBBER BUSHING// TRIBOLOGIA. -., nr. 6 (2017), s.79-85
DOI:
Digital Object Identifier (open in new tab) 10.5604/01.3001.0010.8064
Bibliography: test
  1. Orndorff R., Water lubricated rubber bearings, history and new developments, Nav Eng J, pp. 39-52, 1985. open in new tab
  2. Orndorff R., Foster L., and Sheppert R., From Lab to Field: New High Performance Water Lubricated Bearings, World Tribol. Congr. II, pp. 1-2, 2005. open in new tab
  3. Litwin W., Piątkowska E., Attempt at evaluating the influence of bending stress on shaft wear processes in water lubricated sliding bearing with a rubber bushing, Tribologia, 1/2017, p. 81-86.
  4. Zmitrowicz A. Wear patterns and laws od wear, Journal of theoretical and applied mechanics, vol. 44, no. 2, pp. 219-253, Warszawa 2006. open in new tab
  5. Wang Y., Shi X., and Zhang L., Experimental and numerical study on water-lubricated rubber bearings, Ind. Lubr. Tribol. Exp., vol. 2, no. 51175275, pp. 282-288, 2014. open in new tab
  6. Miszczak A., Wierzcholski K., A method of the wear prognosis of sliding bearing, Archive of mechanical Engineering, vol. LXI, no. 4, 2014. open in new tab
  7. Sun J., Changlin G., Hydrodynamic lubrication analysis of journal bearing considering misalignment caused by shaft deformation, Tribol. Int., vol. 37, pp. 841-848, 2004. open in new tab
  8. Hirani H., Verma M., Tribological study of elastomeric bearings for marine propeller shaft system, Tibol. Int., vol. 42, pp. 378-390, 2009. open in new tab
  9. Šverko D., Šestan A., Experimental Determination of Stern Tube Journal Bearing Behaviour, Brodo Gradnja, vol. 61, pp. 130-141, 2010.
  10. Gao G., Yin Z., Jiang D., Zhang X., Numerical analysis of plain journal bearing under hydrodynamic lubrication by water, Tribol. Int.,vol. 75, pp. 31-38, 2014. open in new tab
  11. Litwin W., Influence of local bush wear on water lubricated sliding bearing load carrying capacity, Tribol. Int., vol. 61, pp. 130-141,2010. open in new tab
  12. Polak A., Przenoszenie materiału w łożysku ślizgowym stal-tworzywo sztuczne, Politechnika Krakowska im. Tadeusza Kościuszki, pp. 21-34, 109-135, 1998.
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Gdańsk University of Technology

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