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Original Articles

Infrared Spectroscopic Methods for the Study of Lubricant Oxidation Products

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Pages 394-401 | 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 (5)

Chih-Ling Lin & Paul A. Meehan. (2019) Microstructure Characterization of Degraded Grease in Axle Roller Bearings. Tribology Transactions 62:4, pages 667-687.
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Andrew J. Gomes, Kamol K. Das, Sadia A. Jame & David L. Cocke. (2016) Treatment of truck wash water using electrocoagulation. Desalination and Water Treatment 57:54, pages 25991-26002.
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V. Macián, B. Tormos, Y.A. Gómez & J.M. Salavert. (2012) Proposal of an FTIR Methodology to Monitor Oxidation Level in Used Engine Oils: Effects of Thermal Degradation and Fuel Dilution. Tribology Transactions 55:6, pages 872-882.
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David L. Wooton. (2001) APPLICATIONS OF SPECTROSCOPY IN THE FUELS AND LUBRICATION INDUSTRY. Applied Spectroscopy Reviews 36:4, pages 315-332.
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Articles from other publishers (48)

Dana Kareem Hameed. (2021) Deterioration in Physical Engine Oil Properties after Different Trip Length. Kurdistan Journal of Applied Research, pages 13-20.
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Ping Lu, Honor E. Powrie, Robert J.K. Wood, Terry J. Harvey & Nicholas R. Harris. (2021) Early wear detection and its significance for condition monitoring. Tribology International 159, pages 106946.
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H. M. Shinde & A. K. Bewoor. (2020) Evaluating petrol engine oil deterioration through oxidation and nitration parameters by low-cost IR sensor. Applied Petrochemical Research 10:2, pages 83-94.
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George E. Totten, Rajesh J. Shah & David R. ForesterSyed Q. A. Rizvi. 2019. Fuels and Lubricants Handbook: Technology, Properties, Performance, and Testing, 2nd Edition. Fuels and Lubricants Handbook: Technology, Properties, Performance, and Testing, 2nd Edition 271 332 .
S. Zzeyani, M. Mikou, J. Naja & A. Elachhab. (2017) Spectroscopic analysis of synthetic lubricating oil. Tribology International 114, pages 27-32.
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Tiago Cousseau, Juan Sebastian Ruiz Acero & Amilton Sinatora. (2016) Tribological response of fresh and used engine oils: The effect of surface texturing, roughness and fuel type. Tribology International 100, pages 60-69.
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Sylvain-Didier B. Kouame, Randy L. Vander Wal & Joseph Perez. (2016) Investigation of subsequent deposit growth on pre-existing lubricant deposits: a substitutional growth model. Lubrication Science 28:5, pages 267-280.
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David Gonçalves, Beatriz Graça, Armando V. Campos, J. Seabra, Johan Leckner & René Westbroek. (2015) Formulation, rheology and thermal ageing of polymer greases—Part I: Influence of the thickener content. Tribology International 87, pages 160-170.
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David Gonçalves, Rui Marques, Beatriz Graça, Armando V. Campos, Jorge H.O. Seabra, Johan Leckner & Renéx Westbroek. (2015) Formulation, rheology and thermal aging of polymer greases—Part II: Influence of the co-thickener content. Tribology International 87, pages 171-177.
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Sylvain-Didier B. Kouame, Randall L. Vander Wal & Joseph Perez. (2015) Deposit formation from lubricant degradation: a uniform layer deposition model. Lubrication Science 27:1, pages 1-13.
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Nadia Salih, Jumat Salimon, Emad Yousif & Bashar Mudhaffar Abdullah. (2013) Biolubricant basestocks from chemically modified plant oils: ricinoleic acid based-tetraesters. Chemistry Central Journal 7:1.
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M. Diaby, P. Singhal, M. Ousmane, M. Sablier, A. Le Négrate, M. El Fassi & V. Zymla. (2013) Impact factors for the degradation of engine oil causing carbonaceous deposits in the piston’s grooves of Diesel engines. Fuel 107, pages 90-101.
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Sandrine Amat, Zeineb Braham, Yveline Le Dréau, Jacky Kister & Nathalie Dupuy. (2013) Simulated aging of lubricant oils by chemometric treatment of infrared spectra: Potential antioxidant properties of sulfur structures. Talanta 107, pages 219-224.
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Filippo Mangolini, Antonella Rossi & Nicholas D. Spencer. (2012) Tribochemistry of Triphenyl Phosphorothionate (TPPT) by In Situ Attenuated Total Reflection (ATR/FT-IR) Tribometry. The Journal of Physical Chemistry C 116:9, pages 5614-5627.
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Filippo Mangolini, Antonella Rossi & Nicholas D. Spencer. (2011) Influence of metallic and oxidized iron/steel on the reactivity of triphenyl phosphorothionate in oil solution. Tribology International 44:6, pages 670-683.
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Filippo Mangolini, Antonella Rossi & Nicholas D. Spencer. (2010) Chemical Reactivity of Triphenyl Phosphorothionate (TPPT) with Iron: An ATR/FT-IR and XPS Investigation. The Journal of Physical Chemistry C 115:4, pages 1339-1354.
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Filippo Mangolini, Antonella Rossi & Nicholas D. Spencer. (2010) Substituent Effect on the Reactivity of Alkylated Triphenyl Phosphorothionates in Oil Solution in the Presence of Iron Particles. Tribology Letters 40:3, pages 375-394.
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Moussa Diaby, Michel Sablier, Anthony Le Negrate & Mehdi El Fassi. (2010) Kinetic Study of the Thermo-Oxidative Degradation of Squalane (C30H62) Modeling the Base Oil of Engine Lubricants. Journal of Engineering for Gas Turbines and Power 132:3.
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Filippo Mangolini, Antonella Rossi & Nicholas D. Spencer. (2009) Reactivity of Triphenyl Phosphorothionate in Lubricant Oil Solution. Tribology Letters 35:1, pages 31-43.
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F. PriériE. GresserY. Le DréauJ. ObiolsJ. Kister. (2008) New Method of Simulation to Evaluate the Sensitivity to Oxidation of Lubricating Oils: An Aging Cell Coupled with Fourier Transform Infrared Spectroscopy. Applied Spectroscopy 62:7, pages 810-816.
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B.C. Sharma & O.P. Gandhi. (2006) RUL assessment of lube oil using AHP and vector projection approach. Industrial Lubrication and Tribology 58:4, pages 187-194.
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Waleska Castro, Joseph M. Perez, Sevim Z. Erhan & Filomena Caputo. (2006) A study of the oxidation and wear properties of vegetable oils: Soybean oil without additives. Journal of the American Oil Chemists' Society 83:1, pages 47-52.
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M A Aruna & M F Fox. (2005) Differentiation of lubricant degradation in the piston ring groove and crown land by multivariate data analysis. Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering 218:12, pages 1503-1511.
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