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Original Articles

In-Situ Electro-Charging for Friction Reduction and Wear Resistant Film Formation

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Pages 479-488 | Published online: 25 Mar 2008

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Read on this site (3)

Yonggang Meng, Hongjun Jiang & P.L. Wong. (2001) An Experimental Study on Voltage-Controlled Friction of Alumina/Brass Couples in Zinc Stearate/Water Suspension. Tribology Transactions 44:4, pages 567-574.
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Y.Y. Zhu, G.H. Kelsall & H.A. Spikes. (1994) The Influence of Electrochemical Potentials on the Friction and Wear of Iron and Iron Oxides in Aqueous Systems. Tribology Transactions 37:4, pages 811-819.
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SimonC. Tung & SimonS. Wang. (1992) The Roles of Molybdenum and Ion-Mixing in Producing Friction-Reducing Films. Tribology Transactions 35:2, pages 298-306.
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Articles from other publishers (26)

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, Jingbo Fang, Xiangli Wen, Yu Tian & Yonggang Meng. (2021) Active Control of Boundary Lubrication of Ceramic Tribo-Pairs in Sodium Dodecyl Sulfate Aqueous Solutions. Tribology Letters 69:4.
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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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Chenxu Liu, Yonggang Meng & Yu Tian. (2020) Potential-Controlled Boundary Lubrication Using MoS2 Additives in Diethyl Succinate. 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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Sergey F. Ermakov & Nikolai K. MyshkinSergey F. Ermakov & Nikolai K. Myshkin. 2018. Liquid-Crystal Nanomaterials. Liquid-Crystal Nanomaterials 21 99 .
Shuiquan Huang, Weiqiang Yao, Jiande Hu & Xuefeng Xu. (2015) Tribological Performance and Lubrication Mechanism of Contact-Charged Electrostatic Spray Lubrication Technique. Tribology Letters 59:2.
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Guoxin Xie, Dan Guo & Jianbin Luo. (2015) Lubrication under charged conditions. Tribology International 84, pages 22-35.
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S. F. Ermakov. (2012) Effect of lubricants and additives on the tribological performance of solids. Part 2. Active friction control. Journal of Friction and Wear 33:3, pages 217-223.
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Siqing He, Yonggang Meng, Yu Tian & Yinghong Zuo. (2010) Response Characteristics of the Potential-Controlled Friction of ZrO2/Stainless Steel Tribopairs in Sodium Dodecyl Sulfate Aqueous Solutions. Tribology Letters 38:2, pages 169-178.
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M M Mahmoud, M K Mohamed & W Y Ali. (2009) Tribological behaviour of lubricated surfaces under application of electric current. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 224:1, pages 73-79.
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Ji Le Jiang, Yu Tian & Yong Gang Meng. (2009) Active Friction Control Based on Electrorheological Effect. Advanced Materials Research 79-82, pages 171-174.
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Siqing He, Yonggang Meng & Yu Tian. 2010. Advanced Tribology. Advanced Tribology 408 412 .
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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Yonggang Meng, Bo Hu & Qiuying Chang. (2006) Control of local friction of metal/ceramic contacts in aqueous solutions with an electrochemical method. Wear 260:3, pages 305-309.
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H. Jiang, P. L. Wong, Y. Meng & S. Wen. (2006) An indirect electric field effect on the friction of boundary‐lubricated contacts. Lubrication Science 15:3, pages 275-292.
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Qiuying Chang, Yonggang Meng & Shizhu Wen. (2002) Influence of interfacial potential on the tribological behavior of brass/silicon dioxide rubbing couple. Applied Surface Science 202:1-2, pages 120-125.
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H Jiang, P. L. Wong & Y Meng. (2005) Influence of ‘off-contact’ electric potential on frictional behaviour of an agate-brass (SiO 2 -Cu) rubbing couple . Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 215:2, pages 201-206.
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Vladimir N. Kestelman, Leonid S. Pinchuk & Victor A. GoldadeVladimir N. Kestelman, Leonid S. Pinchuk & Victor A. Goldade. 2000. Electrets In Engineering. Electrets In Engineering 117 165 .
Jiang Hongjun, Meng Yonggang, Wen Shizhu & Ji Hong. (1999) Effects of external electric fields on frictional behaviors of three kinds of ceramic/metal rubbing couples. Tribology International 32:3, pages 161-166.
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Hongjun Jiang, Yonggang Meng & Shizhu Wen. (1998) Effects of external D. C. electric fields on friction and wear behavior of alumina/brass sliding pairs. Science in China Series E: Technological Sciences 41:6, pages 617-625.
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A. McNicol, D. Dowson & M. Davies. (1995) The effect of humidity and electrical fields upon the wear of high density polyethylene and polytetrafluoroethylene. Wear 181-183, pages 603-612.
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Yoshitsugu Kimura, Ken Nakano, Takashi Kato & Shin Morishita. (1994) Control of friction coefficient by applying electric fields across liquid crystal boundary films. Wear 175:1-2, pages 143-149.
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