7,203
Views
45
CrossRef citations to date
0
Altmetric
Original Articles

A Model for Rolling Bearing Life with Surface and Subsurface Survival—Tribological Effects

, &
Pages 894-906 | Received 31 Oct 2014, Accepted 02 Mar 2015, Published online: 20 Jul 2015

REFERENCES

  • Lundberg, G. and Palmgren, A. (1947), “Dynamic Capacity of Rolling Bearings,” Acta Polytechnica, Mechanical Engineering Series, 1(3), pp 1–52.
  • Lundberg, G. and Palmgren, A. (1952), “Dynamic Capacity of Roller Bearings,” Acta Polytechnica, Mechanical Engineering Series, 2(4), pp 96–127.
  • Tallian, T. E. (1967), “On Competing Failure Modes in Rolling Contacts,” ASLE Transactions, 10(4), pp 418–439.
  • Olver, A. V. (2005), “The Mechanisms of Rolling Contact Fatigue: An Update,” Proceedings of the Institution of Mechanical Engineers: Part J - Journal of Engineering Tribology, 219, pp 313–330.
  • Chiu, Y. P., Tallian, T. E., McCool, J. I. and Martin, J. A. (1969), “A Mathematical Model of Spalling Fatigue Failure in Rolling Contact,” Transactions of the ASLE, 12, pp 4106–4116.
  • Chiu, Y. P., Tallian, T. E. and McCool, J. I. (1971), “An Engineering Model of Spalling Fatigue Failure in Rolling Contact—The Subsurface Model,” Wear, 17, pp 433–446.
  • Tallian, T. E. and McCool, J. I. (1971), “An Engineering Model of Spalling Fatigue Failure in Rolling Contact—The Surface Model,” Wear, 17, pp 447–461.
  • Tallian, T. E. (1971), “An Engineering Model of Spalling Fatigue Failure in Rolling Contact Engineering Discussion and Illustrative Examples,” Wear, 17, pp 463–480.
  • Zaretsky, A. (1999), STLE Life Factors for Rolling Bearings, 2nd ed., Society of Tribologists and Lubrication Engineers, Park Ridge, IL.
  • Sadeghi, F., Jalalahmadi, B., Slack, T. S., Raje, N., and Arakere, N. K. (2009), “A Review of Rolling Contact Fatigue,” Journal of Tribology, 131, pp 041403-1-15.
  • Ioannides, E. and Harris, T.A. (1985), “A New Life Model for Rolling Bearings,” Journal of Tribology, 107, pp 367–378.
  • Ioannides, E., Bergling, G., and Gabelli, A. (1999), “An Analytical Formulation for the Life of Rolling Bearings,” Acta Polytechnica Scandinavica, Mechanical Engineering Series, 137, pp 1–80.
  • Gabelli, A., Lai, J., Lund, T., Rydén, K., Strandell, I., and Morales-Espejel, G.E. (2012), “The Fatigue Limit of Bearing Steels. Part II: Characterization for Life Rating Standards,” International Journal of Fatigue, 37, pp 155–168.
  • Gabelli, A., Morales-Espejel, G. E., and Ioannides, E. (2008), “Particle Damage in Hertzian Contacts and Life Ratings of Rolling Bearings,” Tribology Transactions, 51, pp 428–445.
  • ISO 281 (2007), “International Standard, Rolling Bearings—Dynamic Load Ratings and Rating Life,” Geneva, Switzerland.
  • Epstein, D., Yu, T., Wang, Q. J., Keer, L. M., Cheng, H. S., Liu, S., Harris, S. J., and Gangopadhyay, A. (2003), “An Efficient Method of Analyzing the Effect of Roughness on Fatigue Life in Mixed-EHL Contact,” Tribology Transactions, 46(2), pp 273–281.
  • Epstein, D., Keer, L. M., Wang, Q.J., Cheng, H. S., and Zhu, D. (2003), “Effect of Surface Topography on Contact Fatigue in Mixed Lubrication,” Tribology Transactions, 46(4), pp 506–513.
  • Morales-Espejel, G. E. and Brizmer, V. (2011), “Micropitting Modelling in Rolling–Sliding Contacts: Application to Rolling Bearings,” Tribology Transactions, 54, pp 625–643.
  • Morales-Espejel, G. E. and Gabelli, A. (2011), “The Behavior of Indentation Marks in Rolling–Sliding Elastohydrodynamically Lubricated Contacts,” Tribology Transactions, 54, pp 589–606.
  • Brizmer, V., Pasaribu, H. R. and Morales-Espejel, G. E. (2013), “Micropitting Performance of Oil Additives in Lubricated Rolling Contacts,” Tribology Transactions, 56(5), pp 739–748.
  • Warhadpande, A. and Sadeghi (2013), “Effects of Surface Defects on Rolling Contact Fatigue of Heavily Loaded Lubricated Contacts,” Sadeghi, F. (Ed.), Proceedings of the Institution of Mechanical Engineers: Part J - Journal of Engineering Tribology, 224, pp 1061–1077.
  • Lamagnere, P., Fougeres, R., Lormand, G., Vincent, A., Girodin, D., Dudragne, G. and Vergne, F. (1998), “A Physically Based Model for Endurance Limit of Bearing Steels,” Journal of Tribology, 120, pp 421–426.
  • Lai, J., Lund, T., Rydén, K., Gabelli, A. and Strandell, I. (2012), “The Fatigue Limit of Bearing Steels Part I: A Pragmatic Approach to Predict Very High Cycle Fatigue Strength,” International Journal of Fatigue, 37, pp 155–168.
  • Weibull, W. (1939), “A Statistical Theory of Strength of Materials,” Proceedings of the Royal Swedish Academy of Engineering Sciences, 151, pp 1–45.
  • Weibull, W. (1951), “A Statistical Distribution Function of Wide Applicability,” Journal of Applied Mechanics, 18(3), pp 293–297.
  • Blachère, S. and Gabelli, A. (2012), “Monte Carlo Comparison of Weibull Two and Three Parameters in the Context of the Statistical Analysis of Rolling Bearings Fatigue Testing,” Beswick, J. (Ed.), Bearing Steel Technologies, 9th Volume: Advances in Rolling Contact Fatigue, Strength Testing and Related Substitute Technologies, 1548, pp 382–407.
  • Morales-Espejel, G. E., Gabelli, A. and Ioannides (2010), “Micro-Geometry Lubrication and Life Ratings of Rolling Bearings,” Proceedings of the Institution of Mechanical Engineers: Part C - Journal of Mechanical Engineering Science, 224, pp 1965–1981, London, UK.
  • Basquin, O.H. (1910), “The Exponential Law of Endurance Tests,” Proceedings of American Society of Testing Materials, 10, pp 625–630.
  • Kun, F., Carmona, H. A., Andrade, J. S. and Hermann, H. J. (2008), “Universality behind Basquin’s Law of Fatigue,” Physical Review Letters, 100(9), p 094301.
  • Ioannides, E. (1985), “Component Reliability Analysis—A Fatigue Life Model Common to Rolling Bearings and Structural Components,” SEECO 85 Conference Transactions.
  • Miner, M. A. (1945), “Cumulative Damage in Fatigue,” Journal of Applied Mechanics, 12, pp A159–A164.
  • McCool, J.I. (1978), “Competing Risk and Multiple Comparison Analysis for Bearing Fatigue Tests,” Tribology Transactions, 21, pp 271–284.
  • Lubrecht, A. A., Jacobson, B. O. and Ioannides, E. (1990), “Lundberg Palmgren Revisited,” Proceedings of the Japan International Tribology Conference, Nagoya, Japan.
  • Andersson, T. (1985), “Endurance Testing in Theory,” Ball Bearing Journal, 217, pp 14–23.
  • Goss, R. and Ioannides, E. (1989), “Performance Testing: Facilities and Opportunities,” Ball Bearing Journal, pp 12–21.
  • Leenders, P. (1985), “Endurance Testing in Practice,” Ball Bearing Journal, 217, pp 24–31.