Application of a Rolling Bearing Life Model with Surface and Subsurface Survival to Hybrid Bearings in High-Load and High-Speed Applications
Author:
Affiliation:
1. SKF Research and Technology Development
Publisher
Japanese Society of Tribologists
Subject
Surfaces, Coatings and Films
Link
https://www.jstage.jst.go.jp/article/trol/16/4/16_216/_pdf
Reference14 articles.
1. [1] Wan, G. T. Y., Gabelli, A. and Ioannides, E., “Increased Performance of Hybrid Bearings with Silicon Nitride Balls,” Tribol. Trans., 40, 4, 1997, 701–707.
2. [2] Vieillard, C., Kadin, Y., Morales-Espejel, G. E. and Gabelli, A., “An Experimental and Theoretical Study of Surface Rolling Contact Fatigue Damage Progression in Hybrid Bearings with Artificial Dents,” Wear, 364–365, 2016, 211–223.
3. [3] Gabelli, A. and Morales-Espejel, G. E., “A Model for Hybrid Bearing Life with Surface and Subsurface Survival,” Wear, 422–423, 2019, 223–234.
4. [4] Morales-Espejel, G. E. and Gabelli, A., “Application of a Rolling Bearing Life Model with Surface and Subsurface Survival to Hybrid Bearing Cases,” Proc. IMechE. Part C: J. Mech. Eng. Sci., 233, 15, 2019, 5491–5498.
5. [5] Morales-Espejel, G. E., Gabelli, A. and De Vries, A. J. C., “A Model for Rolling Bearing Life with Surface and Subsurface Survival— Tribological Effects,” Tribol. Trans., 58, 5, 2015, 894–906.
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