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Original Articles

Improvement of Rolling Bearing Fatigue Life Under Debris-Contaminated Lubrication by Decreasing the Crack Sensitivity of the Material

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Pages 213-220 | Published online: 25 Mar 2008

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (2)

J.C. Hamer, R.S. Sayles & E. Ioannides. (1989) Particle Deformation and Counterface Damage When Relatively Soft Particles are Squashed Between Hard Anvils. Tribology Transactions 32:3, pages 281-288.
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K. Maeda, H. Kashimura & N. Tsushima. (1986) Investigation on the Fatigue Fracture of Core in Carburized Rollers of Bearings. A S L E Transactions 29:1, pages 85-90.
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Articles from other publishers (11)

Christine SidoroffMichel PerezPierre DierickxDaniel Girodin. 2014. Bearing Steel Technologies: 10th Volume, Advances in Steel Technologies for Rolling Bearings. Bearing Steel Technologies: 10th Volume, Advances in Steel Technologies for Rolling Bearings 1 37 .
Harvey P. Nixon & J. David Cogdell. Debris Signature Analysis: A Method for Assessing the Detrimental Effect of Specific Debris Contaminated Lubrication Environments. Debris Signature Analysis: A Method for Assessing the Detrimental Effect of Specific Debris Contaminated Lubrication Environments.
Harvey P. Nixon. Assessing the Detrimental Impact of Lubricant Formulations and Debris Contamination on Tapered Roller Bearing Performance Characteristics. Assessing the Detrimental Impact of Lubricant Formulations and Debris Contamination on Tapered Roller Bearing Performance Characteristics.
Harvey P. Nixon, Harry Zantopulos & J. David Cogdell. A Standardized Method for Evaluating Debris Resistance of Rolling Element Bearings. A Standardized Method for Evaluating Debris Resistance of Rolling Element Bearings.
. 1991. Rheology and Elastohydrodynamic Lubrication. Rheology and Elastohydrodynamic Lubrication 341 356 .
Krzysztof Druet, Olgierd Olszewski & Paweł Romanowski. (1991) Viscosity and influence on pitting of laboratory-aged gear oil. Wear 141:2, pages 321-333.
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C. A. Moyer. The Influence of Debris on Rolling Bearing Performance: Identifying the Relevant Factors. The Influence of Debris on Rolling Bearing Performance: Identifying the Relevant Factors.
Yasuo FUJIOKAHiroshi MURO. (1986) Continuous Heat Treatment from Hot Forging on the Machining of Bearing Steel in Supercooled Austenitic State. Tetsu-to-Hagane 72:14, pages 1881-1888.
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Toshio Sakurai. (1984) Recent research on tribology in Japan. Wear 100:1-3, pages 543-560.
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N. Tsushima & H. Kashimura. Improvement of Rolling Contact Fatigue Life of Bearing Steels. Improvement of Rolling Contact Fatigue Life of Bearing Steels.
N. Tsushima, I. Sugiura & H. Muro. Influence of Various Material Factors of One Percent Chromium Carburizing Steel Upon Rolling Contact Fatigue Life. Influence of Various Material Factors of One Percent Chromium Carburizing Steel Upon Rolling Contact Fatigue Life.

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