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Original Articles

The Nature of Electrochemical Reactions Between Several Zinc Organodithiophosphate Antiwear Additives and Cast Iron Surfaces

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Pages 91-99 | Published online: 25 Mar 2008

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Read on this site (4)

Y. Zhu, S. Ogano, G. Kelsall & H.A. Spikes. (2000) The Study of Lubricant Additive Reactions Using Non-Aqueous Electrochemistry. Tribology Transactions 43:2, pages 175-186.
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FrankE. Huggins, J. Zhao, G.P. Huffman, C‐H. Kuo & A.R. Tarrer. (1996) Investigation of zinc additives in coliquefaction of waste lubricating oil and a bituminous coal. Journal of Environmental Science and Health . Part A: Environmental Science and Engineering and Toxicology 31:7, pages 1755-1766.
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SimonC. Tung & SimonS. Wang. (1991) In-Situ Electro-Charging for Friction Reduction and Wear Resistant Film Formation. Tribology Transactions 34:4, pages 479-488.
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SimonS. Wang & SimonC. Tung. (1990) Using Electrochemical and Spectroscopic Techniques as Probes for Investigating Metal-Lubricant Interactions. Tribology Transactions 33:4, pages 563-572.
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Articles from other publishers (14)

Shaowei Li, Chenxu Liu, Wang He, Jie Zhang, Xiaoxi Qiao, Jiang Li, Dong Xiang, Gao Qian, Pengpeng Bai, Yonggang Meng & Yu Tian. (2023) A Review of Electric Potential-Controlled Boundary Lubrication. Lubricants 11:11, pages 467.
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Chenxu Liu, Xiaosong Li, Xinxin Li, Weizi Li, Yu Tian & Yonggang Meng. (2022) On-Line Feedback Control of Sliding Friction of Metals Lubricated by Adsorbed Boundary SDS Films. Lubricants 10:7, pages 148.
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Chenxu Liu, Weizi Li, Chuke Ouyang, Yu Tian & Yonggang Meng. (2022) Voltage-Assisted Tribofilm Formation of Sulfur- and Phosphorus-Free Organic Molybdenum Additive on Bearing Steel Surfaces in Industrial Base Oils. Tribology Letters 70:1.
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Chenxu Liu, Yu Tian & Yonggang Meng. (2021) A Chemical Potential Equation for Modeling Triboelectrochemical Reactions on Solid–Liquid Interfaces. Frontiers in Chemistry 9.
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Hugh A. Spikes. (2020) Triboelectrochemistry: Influence of Applied Electrical Potentials on Friction and Wear of Lubricated Contacts. Tribology Letters 68:3.
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Hui Cao & Yonggang Meng. (2018) Electrochemical effect on boundary lubrication of ZDDP additive blended in propylene carbonate / diethyl succinate. Tribology International 126, pages 229-239.
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Adnan Mujahid & Franz L. Dickert. (2012) Monitoring automotive oil degradation: analytical tools and onboard sensing technologies. Analytical and Bioanalytical Chemistry 404:4, pages 1197-1209.
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M.F. Hurley, B.M. Marx, K.N. Allahar, C.P. Smith, H.A. Chin, W.P. Ogden & D.P. Butt. (2012) Corrosion Assessment and Characterization of Aerospace-Bearing Steels in Seawater and Ester-Based Lubricants. CORROSION 68:7, pages 645-661.
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Wenjie Zhai. (2007) Research progress in tribo-electrochemistry and tribo-electrochemical polishing. Frontiers of Mechanical Engineering in China 2:4, pages 463-467.
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Mark A. Nicholls, Than Do, Peter R. Norton, Masoud Kasrai & G.Michael Bancroft. (2005) Review of the lubrication of metallic surfaces by zinc dialkyl-dithiophosphates. Tribology International 38:1, pages 15-39.
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Xiaoyin Xu, Nigel Brandon & Hugh Spikes. 2002. Boundary and Mixed Lubrication - Science and Applications, Proceedings of the 28th Leeds-Lyon Symposium on Tribology. Boundary and Mixed Lubrication - Science and Applications, Proceedings of the 28th Leeds-Lyon Symposium on Tribology 175 181 .
K.L. Windahl & T.J. Cardwell. (1997) Lability of zinc dialkyldithiophosphates under reversed-phase high-performance liquid chromatography conditions. Journal of Chromatography A 765:2, pages 181-186.
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J. Garc�a-Ant�n & R. Grima. (1992) Determination of zinc in lubricating oil by polarography of emulsified samples. Fresenius' Journal of Analytical Chemistry 343:12, pages 905-906.
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