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Original Articles

The Performance of a Hybrid Ceramic Ball Bearing Under High Speed Conditions with the Under-Race Lubrication Method

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Pages 676-684 | Published online: 25 Mar 2008

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Read on this site (7)

R. Toppo & Manish Roy. (2023) Influence of various counter-bodies on the sliding friction and wear response of M50 steel. Ironmaking & Steelmaking 50:5, pages 470-484.
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Piet M. Lugt, Marco T. van Zoelen, Charlotte Vieillard, Frank Berens, Robert Gruell, Gerwin Preisinger & Paul Meaney. (2022) Grease Performance in Ball and Roller Bearings for All-Steel and Hybrid Bearings. Tribology Transactions 65:1, pages 1-13.
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V. Strubel, N. Fillot, F. Ville, J. Cavoret, P. Vergne, A. Mondelin & Y. Maheo. (2016) Particle Entrapment in Hybrid Lubricated Point Contacts. Tribology Transactions 59:4, pages 768-779.
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V. Brizmer, A. Gabelli, C. Vieillard & G. E. Morales-Espejel. (2015) An Experimental and Theoretical Study of Hybrid Bearing Micropitting Performance under Reduced Lubrication. Tribology Transactions 58:5, pages 829-835.
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NelsonH. Forster, VaughnR. Svendsen, GarryD. Givan, KevinL. Thompson, NgocH. Dao & BrianD. Nicholson. (2011) Parametric Testing and Heat Generation Modeling of 133-mm Bore Ball Bearings: Part I—Results with Metal Rolling Elements. Tribology Transactions 54:2, pages 315-324.
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NelsonH. Forster, VaughnR. Svendsen, GarryD. Givan, KevinL. Thompson, NgocH. Dao & BrianD. Nicholson. (2011) Parametric Testing and Heat Generation Modeling of 133-mm Bore Ball Bearings: Part II—Results with Silicon Nitride Rolling Elements. Tribology Transactions 54:2, pages 325-331.
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Articles from other publishers (21)

Yanhua Gao, Ye Dai, Gang Wang, Zhaolong Li & Xueshi Tao. (2023) Review on Lubrication and Sealing Technology of High-Speed Motorized Spindle. Recent Patents on Engineering 17:6.
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Jian Sun, Xin Fang, Jinmei Yao, Zhe Zhang, Renyun Guan & Guangxiang Zhang. (2023) Thermal characteristics and distribution rule of lubrication film of full ceramic ball bearing under different service condition. Industrial Lubrication and Tribology 75:8, pages 919-932.
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Donghyun Kim, Myungho Kim, Gyongwon Ryu & Jisu Park. (2023) On heat, temperature, and cavity oil volume fraction of an under-race lubricated angular contact ball bearing. Tribology International 187, pages 108715.
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Rami Kerrouche, Azzedine Dadouche & Salah Boukraa. (2023) Thermal characteristics of a 90-mm bore cylindrical roller bearings for aerospace applications: All-steel versus hybrid bearings. Tribology International 185, pages 108495.
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Charlotte Fossier, Thomas Touret, Guillaume Lefort & Christophe Changenet. (2022) Thermal behavior in rolling bearing applications: Comparison of steel and ceramic materials applied to tapered rollers. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 237:5, pages 1085-1097.
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Yu L Lavrentyev, N I Petrov & Yu A Nozhnitsky. (2021) Empirical correlation of heat generation in hybrid ball bearings, depending on the operational conditions in the aero-engine rotor supports. Journal of Physics: Conference Series 1777:1, pages 012046.
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Bryan Allison. 2021. Failure Analysis and Prevention. Failure Analysis and Prevention 716 729 .
Guillermo E Morales-Espejel & Antonio Gabelli. (2019) Application of a rolling bearing life model with surface and subsurface survival to hybrid bearing cases. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 233:15, pages 5491-5498.
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Antonio Gabelli & Guillermo E. Morales-Espejel. (2019) A model for hybrid bearing life with surface and subsurface survival. Wear 422-423, pages 223-234.
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Wataru Kanematsu. (2018) A review of rolling contact fatigue behavior of silicon nitride focusing on testing practices and crack propagation analysis. Wear 400-401, pages 10-20.
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Alias Mohd Nor, Muhammad Rabiu Abbas, Srithar Rajoo, Muhammad Hanafi Md Sah & Norhayati Ahmad. (2014) Review on Ceramic Application in Automotive Turbocharged Engines. Applied Mechanics and Materials 660, pages 219-228.
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Qun-feng ZENG, Xi-meng ZHAO, Guang-neng DONG & Hong-xing WU. (2012) Lubrication properties of Nitinol 60 alloy used as high-speed rolling bearing and numerical simulation of flow pattern of oil-air lubrication. Transactions of Nonferrous Metals Society of China 22:10, pages 2431-2438.
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C.H. HagerJr.Jr., G.L. Doll, R.D. Evans & P.J. Shiller. (2011) Minimum quantity lubrication of M50/M50 and M50/Si3N4 tribological interfaces. Wear 271:9-10, pages 1761-1771.
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V.I. Gorokovsky, C. Bowman, P.E. Gannon, D. VanVorous, A.A. Voevodin, C. Muratore, Y.S. Kang & J.J. Hu. (2008) Deposition and characterization of hybrid filtered arc/magnetron multilayer nanocomposite cermet coatings for advanced tribological applications. Wear 265:5-6, pages 741-755.
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Wataru Kanematsu, P. Ward, W. Mandler, Jr.S. W. Dean. (2008) Relative Comparison Method of Rolling Contact Fatigue Performance of Silicon Nitrides by Stepwise Loading Balls-on-Flat Test—A Candidate for Standard Practice for Comparison of RCF Performance. Journal of ASTM International 5:6, pages 101214.
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V. Paleu, I. Bercea, S. Cretu & M. Bercea. (2006) Lubricant oils additivated with polymers in EHD contacts: Part 2. Tests using a four‐ball machine. Lubrication Science 17:2, pages 173-184.
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L Wang, R.J.K Wood, T.J Harvey, S Morris, H.E.G Powrie & I Care. (2003) Wear performance of oil lubricated silicon nitride sliding against various bearing steels. Wear 255:1-6, pages 657-668.
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L. Wang, R.J.K. Wood, T.J. Harvey, S. Morris, H.E.G. Powrie & I. Care. 2003. Tribological Research and Design for Engineering Systems, Proceedings of the 29th Leeds-Lyon Symposium on Tribology. Tribological Research and Design for Engineering Systems, Proceedings of the 29th Leeds-Lyon Symposium on Tribology 625 635 .
L. Wang, R.J.K. Wood, I. Care & H.E.G. Powrie. 2003. Transient Processes in Tribology, Proceedings of the 30th Leeds-Lyon Symposium on Tribology. Transient Processes in Tribology, Proceedings of the 30th Leeds-Lyon Symposium on Tribology 711 720 .
L Wang, R.W Snidle & L Gu. (2000) Rolling contact silicon nitride bearing technology: a review of recent research. Wear 246:1-2, pages 159-173.
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Bernd Bossmanns & Jay F. Tu. (1999) A thermal model for high speed motorized spindles. International Journal of Machine Tools and Manufacture 39:9, pages 1345-1366.
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