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Original Articles

Investigations into the Degradation of the Structure of Lubricating Greases

Pages 247-250 | 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)

Robert Jan Meijer & Piet M. Lugt. (2022) The Grease Worker and Its Applicability to Study Mechanical Aging of Lubricating Greases for Rolling Bearings. Tribology Transactions 65:1, pages 32-45.
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Articles from other publishers (18)

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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Piet M. Lugt, Mikael Holgerson & Fredrik Reinholdsson. (2023) Impact of oxidation on grease life in rolling bearings. Tribology International 188, pages 108785.
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Markus Grebe & Michael Ruland. (2022) Influence of Mechanical, Thermal, Oxidative and Catalytic Processes on Thickener Structure and Thus on the Service Life of Rolling Bearings. Lubricants 10:5, pages 77.
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Sathwik Chatra K R & Piet M. Lugt. (2021) The process of churning in a grease lubricated rolling bearing: Channeling and clearing. Tribology International 153, pages 106661.
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Erik Kuhn. (2020) Aspects of Self-Organization of Tribological Stressed Lubricating Greases. Lubricants 8:3, pages 28.
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Gurt & Khonsari. (2019) The Use of Entropy in Modeling the Mechanical Degradation of Grease. Lubricants 7:10, pages 82.
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Jude A. Osara & Michael D. Bryant. (2019) Thermodynamics of grease degradation. Tribology International 137, pages 433-445.
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Jayant Singh, Deepak Kumar & Naresh Tandon. (2017) Development of Nanocomposite Grease: Microstructure, Flow, and Tribological Studies. Journal of Tribology 139:5.
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Asghar Rezasoltani & M. Khonsari. (2016) On Monitoring Physical and Chemical Degradation and Life Estimation Models for Lubricating Greases. Lubricants 4:3, pages 34.
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Jiabao Pan, Yanhai Cheng & Jinyong Yang. (2016) Structural Degradation of a Lithium Lubricating Grease after Thermal Ageing. Journal of Chemical Engineering of Japan JOURNAL OF CHEMICAL ENGINEERING OF JAPAN 49:7, pages 579-587.
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Maciej Paszkowski & Sylwia Olsztyńska-Janus. (2014) Grease thixotropy: evaluation of grease microstructure change due to shear and relaxation. Industrial Lubrication and Tribology 66:2, pages 223-237.
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Maciej Paszkowski. (2012) Assessment of the effect of temperature, shear rate and thickener content on the thixotropy of lithium lubricating greases. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 227:3, pages 209-219.
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Piet M. Lugt. 2012. Grease Lubrication in Rolling Bearings. Grease Lubrication in Rolling Bearings 415 437 .
G. Moreno, J. M. Franco, C. Valencia & C. Gallegos. (2010) Rheology of lubricating greases modified with reactive NCO‐terminated polymeric additives. Journal of Applied Polymer Science 118:2, pages 693-704.
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M. A. Delgado, J. M. Franco, C. Valencia, E. Kuhn & C. Gallegos. (2008) Transient shear flow of model lithium lubricating greases. Mechanics of Time-Dependent Materials 13:1, pages 63-80.
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M.A. Delgado, J.M. Franco & E. Kuhn. (2008) Effect of rheological behaviour of lithium greases on the friction process. Industrial Lubrication and Tribology 60:1, pages 37-45.
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Uwe J. Möller & Jamil NassarUwe J. Möller & Jamil Nassar. 2002. Schmierstoffe im Betrieb. Schmierstoffe im Betrieb 117 265 .
Jose´ M. Madiedo, Jose´ M. Franco, Concepcio´n Valencia & Crı´spulo Gallegos. (2000) Modeling of the Non-Linear Rheological Behavior of a Lubricating Grease at Low-Shear Rates. Journal of Tribology 122:3, pages 590-596.
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