432
Views
23
CrossRef citations to date
0
Altmetric
Original Articles

Investigations on the Influence of Surface Texturing on a Couple Stress Fluid–Based Journal Bearing by Using JFO Boundary Conditions

, , , &
Pages 579-584 | Received 07 May 2015, Accepted 10 Sep 2015, Published online: 09 May 2016

References

  • Stokes, V. K. (1966), “Couple-Stresses in Fluids,” Physics of Fluids, 9(9), pp 1709–1715.
  • Lin, J. R. (1996), “Effect of Couple Stress Fluids on the Lubrication of Finite Journal Bearing,” Wear, 206(1/2), pp 171–178.
  • Lin, J. R. (1998), “Squeeze Film Characteristics of Finite Journal Bearings: Couple Stress Fluid Model,” Tribology International, 31, pp 201–207.
  • Naduvinamani, N. B., Hiremath, P. S., and Fatima, S. T. (2002), “Lubrication of a Narrow Porous Journal Bearing with a Couple Stress Fluid,” Lubrication Science, 14(4), pp 393–413.
  • Wang, X. L., Zhu, K. Q., and Wen, S. Z. (2002), “Thermohydrodynamic Analysis of Journal Bearings Lubricated with Couple Stress Fluids,” Tribology International, 34, pp 335–343.
  • Crosby, W. A. and Chetti, B. (2009), “The Static and Dynamic Characteristics of a Two-Lobe Journal Bearing Lubricated with Couple-Stress Fluid,” Tribology Transactions, 52(2).
  • Chiang, H. L., Hsu, C. H., and Lin, J. R. (2004), “Lubrication Performance of Finite Journal Bearings Considering Effects of Couple Stresses and Surface Roughness,” Tribology International, 37, pp 297–307.
  • Bujurke, N. M., Naduvinamani, N. B., Fathima, S. T., and Benchalli, S. S. (2006), “Effect of Surface Roughness on Couple Stress Squeeze Film Lubrication of Long Porous Partial Journal Bearings,” Industrial Lubrication and Tribology, 58, pp 176–186.
  • Kango, S. and Sharma, R. K. (2010), “Studies on the Influence of Surface Texture on the Performance of Hydrodynamic Journal Bearing Using Power Law Model,” International Journal of Surface Science and Engineering, 4(4–6), pp 505–524.
  • Ryk, G., Kligerman, Y., and Etsion, I. (2008), “Experimental Investigation of Laser Surface Texturing for Reciprocating Automotive Components,” Tribology Transactions, 52(2), pp 444–449.
  • Li, J. and Wang, X. (2013), “Numerical Simulation of the Influence of the Bulges around Laser Surface Textures on the Tribological Performance,” Tribology Transactions, 56(6), pp 1011–1018.
  • Sharma, N., Kango, S., Sharma, R., and Sunil. (2014), “Investigations on the Effects of Surface Texture on the Performance of a Porous Journal Bearing Operating with Couple Stress Fluids,” International Journal of Surface Science and Engineering, 8(4), pp 392–407.
  • Etsion, I. (2005), “State of the Art in Laser Surface Texturing,” Journal of Tribology, 127(1), pp 248–253.
  • Lu, X. and Khonsari, M. M. (2007), “An Experimental Investigation of Dimple Effect on the Stribeck Curve of Journal Bearings,” Tribology Letters, 27(2), pp 169–176.
  • Cupillard, S., Glavatskih, S., and Cervantes, M. J. (2008), “CFD Analysis of Journal Bearing with Surface Texturing,” Proceedings of the Institution of Mechanical Engineers - Part J: J. Engineering Tribology, 222, pp 97–107.
  • Kango, S., Singh, D., and Sharma, R. K. “Numerical Investigation on the Influence of Surface Texture on the Performance of Hydrodynamic Journal Bearing,” Meccanica, 47(2), pp 469–482.
  • Qiu, Y. and Khonsari, M. M. (2011), “Performance Analysis of Full-Film Textured Surfaces with Consideration of Roughness Effects,” ASME Journal, 133(2), pp 1–10.
  • Tala-Ighil, N., Fillon, M., and Maspeyrot, P. (2011), “Effect of Textured Area on the Performances of a Hydrodynamic Journal Bearing,” Tribology International, 44, pp 211–219.
  • Ausas, R., Ragot, P., Leiva, J., Jai, M., Bayada, G., and Buscaglia, G. C. (2007), “The Impact of the Cavitation Model in the Analysis of Micro Textured Lubricated Journal Bearings,” Journal of Tribology, 129, pp 868–875.
  • Zhang, J. and Meng, Y. (2012), “Direct Observation of Cavitation Phenomenon and Hydrodynamic Lubrication Analysis of Textured Surfaces,” Tribology Letters, 46, pp 147–158.
  • Qiu, Y. and Khonsari, M. M. (2009), “On the Prediction of Cavitation in Dimples Using a Mass Conservative Algorithm,” Journal of Tribology, 131, pp 1–11.
  • Kango, S., Sharma, R. K., and Pandey, R. K. (2014), “Thermal Analysis of Microtextured Journal Bearing Using Non-Newtonian Rheology of Lubricant and JFO Boundary Conditions,” Tribology International, 69, pp 19–29.
  • Kango, S., Sharma, R. K., and Pandey, R. K. (2013), “Comparative Analysis of Textured and Grooved Hydrodynamic Journal Bearing,” Proceedings of the Institution of Mechanical Engineers - Part J: Journal of Engineering Tribology, 228(1), pp 82–95.
  • Brizmer, V. and Kligerman, Y. (2012), “A Laser Surface Textured Journal Bearing,” Journal of Tribology, 134(3), pp 1–9.
  • Elrod, H. G. (1981), “A Cavitation Algorithm,” Journal of Lubrication Technology, 103, pp 350–354.
  • Vijayaraghavan, D. and Keith, T. G. (1990), “An Efficient, Robust and Time Accurate Numerical Scheme Applied to Cavitation Algorithm,” Journal of Tribology, 112, pp 44–51.
  • Fesanghary, M. and Khonsari, M. M. (2011), “A Modification of the Switch Function in the Elrod Cavitation Algorithm,” Journal of Tribology, 133.
  • Papadopoulos, C. I., Efstathiou, E. E., Nikolakopoulos, P. G., and Kaiktsis, L. (2011), “Geometry Optimization of Textured Three-Dimensional Micro-Thrust Bearings,” Journal of Tribology, 133.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.