Issue Section:
Technical Briefs
1.
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2.
Boresi, A. P., and Sidebottom, O. M., 1985, Advanced Mechanics of Materials, Wiley, New York, p. 615.
3.
Chung, Y., and Cheng, H. S., eds., 1991, Advances in Engineering Tribology, Society of Tribologists and Lubrication Engineers, STP-31.
4.
Fessler
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Ollerton
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, “Contact Stresses in Toroids Under Radial Loads
,” British Journ. of Applied Physics
, Vol. 8
, pp. 387
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.5.
Hills
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Sackfield
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1984
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,” The Journal of Strain Analysis for Engineering Design
, Vol. 17
, pp. 9
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.6.
Johnson, K. L., 1985, Contact Mechanics, Cambridge, Cambridge University Press, p. 67.
7.
Johnson
K. L.
1989
, “The Strength of Surfaces in Rolling Contact
,” Proceedings of the Institution of Mechanical Engineers, Part C, Journal of Mechanical Engineering Science
, Vol. 203
, pp. 151
–163
.8.
Lundberg, G., and Palmgren, A., 1947, “A Dynamic Capacity of Rolling Bearings,” Acta Polytechnica, Vol. 7, Mech. Eng. Series 1, 3, Royal Swedish Academy of Engineering Sciences, Stockholm.
9.
Lundberg, G., and Palmgren, A., 1949, “A Dynamic Capacity of Rolling Bearings,” ASME JOURNAL OF APPLIED MECHANICS, pp. 165–172.
10.
Moyar, G. J., and Steele, R. K., 1994, “A Practical Method for Predicting the Effect of Material Properties and Residual Stresses on Rail Subsurface Fatigue,” Proceedings of the International Symposium on Rail Steels for the 21st Century, B. L. Bramfitt, R. K. Steele and J. H. Martens, eds., Iron and Steel Society, Baltimore, MD, pp. 121–129 (ISBN: 0-932897-95-9).
11.
Moyar
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1995
, “A Critique of Rolling Contact Fatigue Criteria for Bearing Rings with Hoop Stresses
,” STLE Tribology Transactions
, Vol. 38
, No. 2
, pp. 431
–437
.12.
V. K. Sharma, Walter, G. H., and Breen, D. H., 1977, “An Analytical Approach for Establishing Case Depth Requirements in Carburized Gears,” ASME Paper No. 77-DET-152.
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