1,091
Views
30
CrossRef citations to date
0
Altmetric
Original Articles

The Progression of Surface Rolling Contact Fatigue Damage of Rolling Bearings with Artificial Dents

&
Pages 418-431 | Received 22 Mar 2014, Accepted 28 Oct 2014, Published online: 04 Feb 2015

REFERENCES

  • Lundberg, G. Palmgren, A. (1947), “Dynamic Capacity of Rolling Bearings,” Acta Polytechnica, 1(3), pp 1–52.
  • Lundberg, G. Palmgren, A. (1952), “Dynamic Capacity of Roller Bearings,” Acta Polytechnica, 2(4), pp 96–127.
  • Morales-Espejel, G.E. Gabelli, A. (2011), “The Behavior of Indentation Marks in Rolling Sliding Elastohydrodynamically Lubricated Contacts,” Tribology Transactions, 54, pp 589–606.
  • Lubrecht, A.A., Venner, C.H., Lane, S., Jacobson, B.O., and Ioannides, E. (1990), “Surface Damage—Comparison of Theoretical and Experimental Endurance Lives of Rolling Bearings,” Proceedings of the International Tribology Conference, Nagoya, Japan, pp 185–190.
  • Venner, C.H. (1991), Multilevel Solutions of the Line and Point Contact Problems, Ph.D. Dissertation, University of Twente, Enschede, The Netherlands.
  • Ai, A. Cheng, H.S. (1994), “Influence of Moving Dent on Point EHL Contact Problems,” Tribology Transactions, 37(2), pp 323–333.
  • Ai, A. Lee, S.C. (1996), “Effect of Slide-To-Roll Ratio on Interior Stresses Around a Dent in EHL Contacts,” Tribology Transactions, 39(4), pp 881–889.
  • Xu, G., Sadeghi, F., Hoeprich, M.R. (1997), “Debris Denting Effects on Elastohydrodynamic Lubricated Contacts,” Tribology Transactions, 40, pp 579–587.
  • Xu, G., Sadeghi, F., Hoeprich, M.R. (1997), “Residual Stress Due to Debries Effects in EHL Contacts,” Tribology Transactions, 40, pp 613–620.
  • Xu, G., Sadeghi, F., Hoeprich, M.R. (1998), “Dent Initiated Spall Formation in EHL Rolling/Sliding Contact,” Journal of Tribology, 120, pp 453–462.
  • Morales-Espejel, G.E. Brizmer, V. (2011), “Micropitting Modelling in Rolling–Sliding Contacts: Application to Rolling Bearings,” Tribology Transactions, 54, pp 625–643.
  • Arakere, N.K., Branch, N., Levesque, G., Svendsen, V., Forster, N.H. (2010), “Rolling Contact Fatigue Life and Spall Propagation of AISI M50, M50NiL, and AISI 52100, Part II: Stress Modeling,” Trib. Trans., 53(1), pp 42–51.
  • Bolander, N., Qiu, H., Eklund, N., Hindle, E., Rosenfeld, T. (2009), “Physics-Based Remaining Useful Life Prediction for Aircraft Engine Bearing Prognosis,” Annual Conference of the Prognostics and Health Management Society, pp 1–10.
  • Cheng, W., Cheng, H.S., Keer, L.M. (1994), “Experimental Investigation on Rolling/Sliding Contact Fatigue Crack Initiation with Artifitial Defects,” Tribology Transactions, 37, pp 1–12.
  • Holzhauer, W. (1991), “Surface Changes around Large Raceways Indentations during Run-In of Taper Roller Bearings,” Tribology Transactions, 34(3), pp 361–368.
  • Nélias, D., Dumont, M.-L., Couhier, F., Dudragne, G., Flamand, L. (1998), “Experimental and Theoretical Investigation on Rolling Contact Fatigue of 52100 and M50 Steels under EHL or Micro-EHL Conditions,” Journal of Tribology, 120, pp 184–190.
  • Nélias, D. Ville, F. (2000), “Detrimental Effects of Debris Dents on Rolling Contact Fatigue,” Journal of Tribology, 122, pp 55–64.
  • Ville, F. Nélias, D. (1999), “Early Fatigue Failures in EHL Contacts Due to Dents in EHL Contacts,” Tribology Transactions, 42, pp 795–800.
  • Ville, F., Coulon, S., Lubrecht, A.A. (2006), “Influence of Solid Contaminants on the Fatigue Life of Lubricated Machine Elements,” Proceeding of the Institution of Mechanical Engineers - Part J. Journal of Engineering Tribology, 220, pp 441–445.
  • Biboulet, N., Houpert, L., Lubrecht, A.A. (2012), “Contact Stresses and Rolling Contact Fatigue of Indented Contacts: Part I, Numerical Analysis,” Proceeding of the Institution of Mechanical Engineers - Part J. Journal of Engineering Tribology, 227(4), pp 310–318.
  • Biboulet, N., Houpert, L., Lubrecht, A.A., Hager, C. (2012), “Contact Stresses and Rolling Contact Fatigue of Indented Contacts: Part II, Rolling Element Bearing Life Calculation and Experimental Data of Indent Geometries,” Proceeding of the Institution of Mechanical Engineers - Part J. Journal of Engineering Tribology, 227(4), pp 319–327.
  • Littmann, W.E. Widner, R.L. (1966), “Propagation of Contact Fatigue from Surface and Subsurface Origins,” Journal of Basic Engineering, 88(3), pp 624–635.
  • Hoepricht, M.R. (1992), “Rolling Element Bearing Fatigue Damage Propagation,” Journal of Tribology, 114(2), pp 328–333.
  • Snare, B. (1970), “How Reliable Are Bearings? The Ball Bearing Journal, 162, pp 3–7.
  • Dalal, H. Senholzi, P. (1977), “Characteristic of Wear Particles Generated during Failure Progression of Rolling Bearings,” ASLE Transactions, 20(3), pp 233–243.
  • Rosado, L., Forster, N.H., Thompson, K.L., Cooke, J.W. (2010), “Rolling Contact Fatigue Life and Spall Propagation of AISI M50, M50NiL, and AISI 52100, Part I: Experimental Results,” Tribology Transactions, 53(1), pp 29–41.
  • Miner, M.A. (1945), “Cumulative Damage in Fatigue,” Journal of Applied Mechanics Series A, 67, pp 159–164.
  • Gabelli, A., Morales-Espejel, G.E., Ioannides, E. (2008), “Particle Damage in Hertzian Contacts and Life Ratings of Rolling Bearings,” Tribology Transactions, 51, pp 428–445.
  • Tripp, J.H., van Kuilenburg, J., Morales-Espejel, G.E., Lugt, P.M. (2003), “Frequency Response Functions and Rough Surface Stress Analysis,” Tribology Transactions, 46, pp 376–382.
  • Morales-Espejel, G.E., Wemekamp, A.W., Félix-Quiñonez, A. (2010), “Micro-Geometry Effects on the Sliding Friction Transition in Elastohydrodynamic Lubrication,” Proceeding of the Institution of Mechanical Engineers - Part J. Journal of Engineering Tribology, 224, pp 621–637.
  • Qiao, H., Evans, H.P., Snidle, R.W. (2008), “Comparison of Fatigue Model Results for Rough Surface Elastohydrodynamic Lubrication,” Proceeding of the Institution of Mechanical Engineers - Part J. Journal of Engineering Tribology, 222, pp 381–293.
  • Bhadeshia, H. K. D. H. (2012), “Steels for Bearings,” Progress in Material Science, 57, pp 268–435.
  • Palmgren, A.G. (1924), “Die Lebensdauer von Kugellagern” [“The Service Life of Ball Bearings,”] Zeitschrift des Vereines Deutscher Ingenieure, 68(14), pp 339–341.

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.