Chapter 17 | Super-Precision Aerospace Bearing Steel Technologies

Author:

Beswick John M.1

Affiliation:

1. CEng FIMMM, Th Elsenstraat 59, Montfoort, 3417WX, NL

Publisher

ASTM International

Reference105 articles.

1. E. N. Bamberger, “Status of Understanding for Bearing Materials,” in Tribology in the 80s, Vol. 2, NASA CR 2300 (National Aeronautics and Space Administration, Washington, D.C., 1980), 773–794.

2. Review of Aircraft Bearing Rejection Criteria and Causes;Cunningham;Journal of the American Society of Lubrication Engineers,1979

3. A. Kvryan, E. Faulkner, D. Lysne, N. Carter, S. Acharya, V. Rafla, H. K. Trivedi, and M. F. Hurley, “Electrochemical Corrosion Test Methods for Rapid Assessment of Aerospace Bearing Steel Performance,” in Bearing Steel Technologies: 11th Volume, Advances in Steel Technologies for Rolling Bearings, ed. J. M. Beswick (West Conshohocken, PA: ASTM International, 2017), 466–486, https://doi.org/10.1520/STP160020160150

4. J. R. Nygaard, “Understanding the Behaviour of Aircraft Bearing Steels under Rolling Contact Loading” (PhD thesis, SKF University Technology Centre for Steel, University of Cambridge, UK, August 2015).

5. B. L. Averbach, “Fracture and Fatigue Crack Properties in Bearing Steels,” in Advances in Fracture Research (Fracture 81), Vol. 2 (London: Pergamon Press, 1982), 623–630.

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