Effect of Hardness and Other Mechanical Properties on Rolling contact Fatigue Life of Four High temperature Bearing Steels

Effect of Hardness and Other Mechanical Properties on Rolling contact Fatigue Life of Four High temperature Bearing Steels
Author: Thomas L. Carter,Erwin V. Zaretsky,William J. Anderson
Publsiher: Unknown
Total Pages: 58
Release: 1960
Genre: Ball-bearings
ISBN: UIUC:30112106589556

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Rolling Contact Fatigue Testing of Bearings Steels

Rolling Contact Fatigue Testing of Bearings Steels
Author: J. J. C. Hoo
Publsiher: ASTM International
Total Pages: 420
Release: 1982
Genre: Electronic Book
ISBN: 9182736450XXX

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NASA Technical Note

NASA Technical Note
Author: Anonim
Publsiher: Unknown
Total Pages: 880
Release: 1976
Genre: Aeronautics
ISBN: UOM:39015006086279

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Effect of Steel Manufacturing Processes on the Quality of Bearing Steels

Effect of Steel Manufacturing Processes on the Quality of Bearing Steels
Author: J. J. C. Hoo
Publsiher: ASTM International
Total Pages: 411
Release: 1988
Genre: Rolling contact
ISBN: 9780803109995

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Effect of Nine Lubricants on Rolling contact Fatigue Life

Effect of Nine Lubricants on Rolling contact Fatigue Life
Author: Erwin V. Zaretsky,William J. Anderson,Richard J. Parker
Publsiher: Unknown
Total Pages: 48
Release: 1962
Genre: Fatigue testing machines
ISBN: UIUC:30112106873240

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NASA Reference Publication

NASA Reference Publication
Author: Anonim
Publsiher: Unknown
Total Pages: 504
Release: 1977
Genre: Astronautics
ISBN: MINN:31951D00023646G

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Effect of Component Differential Hardnesses on Residual Stress and Rolling contact Fatigue

Effect of Component Differential Hardnesses on Residual Stress and Rolling contact Fatigue
Author: Erwin V. Zaretsky
Publsiher: Unknown
Total Pages: 18
Release: 1965
Genre: Ball-bearings
ISBN: UIUC:30112106868596

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Residual stress measurements were made in the zone of resolved shearing stress on five SAE 52100 upper test ball specimens with an average Rockwell C hardness of 63.2. These upper test ball specimens were run against lower test balls of nominal Rockwell C hardnesses of 60, 62, 63, 65, and 66 until either ft conditions included an or both components failed because of fatigue. Test conditions included an average race temperature of 150 F, a maximum (Hertz) compressive stress of 800,000 psi, and a highly purified naphthenic mineral oil lubricant. Fatigue lives of the upper test balls were compared with measured residual stresses in the subsurface zone of resolved shearing stress. The compressive residual stress induced in the upper test ball during running is a function of delta H, the hardness of the lower test balls minus the upper test ball hardness An interrelation is indicated among differences in com- ponent hardness, induced compressive residual stress, and fatigue life. Measured values of compressive residual stress within the zone of resolved maximum shearing stress ranged from 178,000 and 294,000 psi. The apparent maximum residual stress occurs above where delta H = 0.

Interdisciplinary Approach to the Lubrication of Concentrated Contacts

Interdisciplinary Approach to the Lubrication of Concentrated Contacts
Author: P. M.. Ku
Publsiher: Unknown
Total Pages: 616
Release: 1970
Genre: Electronic Book
ISBN: MINN:31951D035111146

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