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Original Articles

Modern State of Experimentation and Modeling in Contact Fatigue Phenomenon: Part II—Analysis of the Existing Statistical Mathematical Models of Bearing and Gear Fatigue Life. New Statistical Model of Contact Fatigue

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Pages 293-301 | 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 (3)

Xiaomeng Zheng, Yongzhen Zhang & Sanming Du. (2020) The state-of-art of microstructural evolution of bearing materials under Rolling Contact Fatigue. Materials Science and Technology 36:2, pages 131-149.
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IlyaI. Kudish. (2002) Lubricant-Crack Interaction, Origin of Pitting, and Fatigue of Drivers and Followers. Tribology Transactions 45:4, pages 583-594.
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IlyaI. Kudish. (2000) A New Statistical Model of Contact Fatigue. Tribology Transactions 43:4, pages 711-721.
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Articles from other publishers (20)

Nozomu Adachi, Yoshikazu Todaka, Tashika Masaki, Yoshinori Shiihara, Takuya SuzukiMasahiro TsukaharaOsamu Idohara. (2022) Effect of Surface Nano-crystalline Layer Formed by Heavy Plastic Deformation Process on Rolling Contact Fatigue. ISIJ International 62:10, pages 2147-2157.
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Mao Ueda, Benjamin Wainwright, Hugh Spikes & Amir Kadiric. (2022) The effect of friction on micropitting. Wear 488-489, pages 204130.
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Oleksandra Datsyshyn & Volodymyr PanasyukOleksandra Datsyshyn & Volodymyr Panasyuk. 2020. Structural Integrity Assessment of Engineering Components Under Cyclic Contact. Structural Integrity Assessment of Engineering Components Under Cyclic Contact 25 64 .
Chongjie Gu, Renze Wang & Tian Tian. (2019) Modeling the Fatigue Wear of the Cylinder Liner in Internal Combustion Engines during the Break-In Period and Its Impact on Piston Ring Lubrication. Lubricants 7:10, pages 89.
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Mir Ali Ghaffari, Yanjue Gong, Siamak Attarian & Shaoping Xiao. (2019) Peridynamics with Corrected Boundary Conditions and Its Implementation in Multiscale Modeling of Rolling Contact Fatigue. Journal of Multiscale Modelling 10:01.
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Peiyu He, Rongjing Hong, Hua Wang & Cheng Lu. (2018) Fatigue life analysis of slewing bearings in wind turbines. International Journal of Fatigue 111, pages 233-242.
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Mir Ali Ghaffari, Yan Zhang & Shaoping Xiao. (2018) Multiscale modeling and simulation of rolling contact fatigue. International Journal of Fatigue 108, pages 9-17.
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Mir Ali Ghaffari & Shaoping Xiao. 2018. Advanced Wind Turbine Technology. Advanced Wind Turbine Technology 119 142 .
Nagaraj K. Arakere. (2016) Gigacycle rolling contact fatigue of bearing steels: A review. International Journal of Fatigue 93, pages 238-249.
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Wei Pu, Dong Zhu, Jiaxu Wang & Q. Jane Wang. (2016) Rolling–sliding contact fatigue of surfaces with sinusoidal roughness. International Journal of Fatigue 90, pages 57-68.
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Sarabjeet Singh, Carl Q. Howard & Colin H. Hansen. (2015) An extensive review of vibration modelling of rolling element bearings with localised and extended defects. Journal of Sound and Vibration 357, pages 300-330.
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Z. Jiang, Y. Xing, Y. Guo, T. Moan & Z. Gao. (2015) Long-term contact fatigue analysis of a planetary bearing in a land-based wind turbine drivetrain. Wind Energy 18:4, pages 591-611.
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O. ONAL, D. CANADINC, H. SEHITOGLU, K. VERZAL & Y. JIANG. (2012) Investigation of rolling contact crack initiation in bainitic and pearlitic rail steels. Fatigue & Fracture of Engineering Materials & Structures 35:11, pages 985-997.
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Sachin G. Ghalme. (2012) Probabilistic Life Models in Rolling Contact Fatigue. Advanced Materials Research 433-440, pages 58-62.
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Farshid Sadeghi, Behrooz Jalalahmadi, Trevor S. Slack, Nihar Raje & Nagaraj K. Arakere. (2009) A Review of Rolling Contact Fatigue. Journal of Tribology 131:4.
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N Raje & F Sadeghi. (2009) Statistical numerical modelling of sub-surface initiated spalling in bearing contacts. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 223:6, pages 849-858.
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Gwidon P. Stachowiak, Gwidon W. Stachowiak & Pawel Podsiadlo. (2008) Automated classification of wear particles based on their surface texture and shape features. Tribology International 41:1, pages 34-43.
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Ilya I. Kudish. (2007) Fatigue Modeling for Elastic Materials With Statistically Distributed Defects. Journal of Applied Mechanics 74:6, pages 1125-1133.
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D. Y. Hua, K. Farhang & L. E. Seitzman. (2007) A Multi-Scale System Analysis and Verification for Improved Contact Fatigue Life Cycle of a Cam-Roller System. Journal of Tribology 129:2, pages 321-325.
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Hong Lin, Robert R. Binoniemi, Gregory A. Fett & Mick Deis. Contact Fatigue Tests and Contact Fatigue Life Analysis. Contact Fatigue Tests and Contact Fatigue Life Analysis.

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