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Original Articles

The Behavior of Colloidal Solid Particles in Elastohydrodynamic Contacts

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Pages 387-394 | Published online: 25 Mar 2008

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Ateyya A. Aboul-Enein, Enas I. Arafa, Samira M. Abdel-Azim & Ahmed E. Awadallah. (2021) Synthesis of multiwalled carbon nanotubes from polyethylene waste to enhance the rheological behavior of lubricating grease. Fullerenes, Nanotubes and Carbon Nanostructures 29:1, pages 46-57.
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Ronghua Zheng, Guojun Liu, Mark Devlin, Karen Hux & Tze-chi Jao. (2009) Friction Reduction of Lubricant Base Oil by Micelles and Crosslinked Micelles of Block Copolymers. Tribology Transactions 53:1, pages 97-107.
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Xiang Gao, Yuantai Liao, Jian Song, Lun Chen & Guizhen Zhang. (2022) Effects of Different Forms of Polytetrafluoroethylene Microparticles on Fretting Wear Resistance and Mechanical Properties of Polycarbonate/Acrylonitrile Butadiene Styrene Composites. Journal of Materials Engineering and Performance 31:7, pages 5245-5258.
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Letícia Raquel de Oliveira, Túlio Alves Rodrigues, Henara Lillian Costa & Washington Martins da Silva Jr. (2022) Scuffing resistance of polyalphaolefin (PAO)-based nanolubricants with oleic acid (OA) and iron oxide nanoparticles. Materials Today Communications 31, pages 103837.
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Pramod S. Kathamore & Bhanudas D. Bachchhav. (2021) Tribological investigations of trimethylolpropane trioleate bio-based lubricants. Industrial Lubrication and Tribology 73:7, pages 1074-1083.
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Yuefeng Gu, Jie Fei, Jianfeng Huang, Lijie Zhang, Meng Qu & Xinhui Zheng. (2020) Carbon microspheres coated with graphene oxide nanosheets as oil-based additives for tribological applications. Materials Today Communications 25, pages 101271.
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V.S. Mello, E.A. Faria, S.M. Alves & C. Scandian. (2020) Enhancing Cuo nanolubricant performance using dispersing agents. Tribology International 150, pages 106338.
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Shailendra Kumar Chaurasia, Anuj Kumar Sehgal & Nishant Kumar Singh. (2020) Improved Lubrication Mechanism of Chemically Modified Mahua (Madhuca indica) Oil with Addition of Copper Oxide Nanoparticles. Journal of Bio- and Tribo-Corrosion 6:3.
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Valdicleide Silva Mello, Marinalva Ferreira Trajano, Ana Emilia Diniz Silva Guedes & Salete Martins Alves. (2020) Comparison Between the Action of Nano-Oxides and Conventional EP Additives in Boundary Lubrication. Lubricants 8:5, pages 54.
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Yashvir Singh, Abhishek Sharma, Nishant Kumar Singh & Wei-Hsin Chen. (2020) Development of bio-based lubricant from modified desert date oil (balanites aegyptiaca) with copper nanoparticles addition and their tribological analysis. Fuel 259, pages 116259.
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Yuefeng Gu, Jie Fei, Jianfeng Huang, Lijie Zhang & Meng Qu. (2019) Synthesis and Tribological Performance of Carbon Microspheres/Poly(methyl methacrylate) Core–Shell Particles as Highly Efficient Lubricant. The Journal of Physical Chemistry C 123:47, pages 29037-29046.
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S.S. Sanukrishna, Muhammed Shafi, Maneesh Murukan & M. Jose Prakash. (2019) Effect of SiO2 nanoparticles on the heat transfer characteristics of refrigerant and tribological behaviour of lubricant. Powder Technology 356, pages 39-49.
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Wanli Song, Zhen Peng, Jintao Zhang, Jintao Li, Na Wang & Seung-Bok Choi. (2019) Effects of micron-sized iron particles on friction and wear behaviors of seals used in a magnetorheological damper: analysis and experiment. Smart Materials and Structures 28:9, pages 095019.
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Xingbao Huang, Bintang Yang & Youqiang Wang. (2019) A nano-lubrication solution for high-speed heavy-loaded spur gears and stiffness modelling. Applied Mathematical Modelling 72, pages 623-649.
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Dhorali Gnanasekaran & Venkata Prasad ChavidiDhorali Gnanasekaran & Venkata Prasad Chavidi. 2018. Vegetable Oil based Bio-lubricants and Transformer Fluids. Vegetable Oil based Bio-lubricants and Transformer Fluids 81 97 .
D. Muller, C. Matta, R. Thijssen, M.N. bin Yusof, M.C.P. van Eijk & S. Chatra. (2017) Novel polymer grease microstructure and its proposed lubrication mechanism in rolling/sliding contacts. Tribology International 110, pages 278-290.
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Ken NAKANO, Chiharu TADOKORO & Satoru MAEGAWA. (2017) Measurements of Lubricant Film Thickness by Optical Interference. Hyomen Kagaku 38:3, pages 111-116.
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Abdullah A. Alazemi, Arthur D. Dysart, Xin Li Phuah, Vilas G. Pol & Farshid Sadeghi. (2016) MoS2 nanolayer coated carbon spheres as an oil additive for enhanced tribological performance. Carbon 110, pages 367-377.
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Hugh Spikes. (2015) Friction Modifier Additives. Tribology Letters 60:1.
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G.E. Yakubov, T.E. Branfield, J.H.H. Bongaerts & J.R. Stokes. (2015) Tribology of particle suspensions in rolling-sliding soft contacts. Biotribology 3, pages 1-10.
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Mukesh Kumar Dubey, Jayashree Bijwe & S.S.V. Ramakumar. (2015) Nano-PTFE: New entrant as a very promising EP additive. Tribology International 87, pages 121-131.
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Abdullah A. Alazemi, Vinodkumar Etacheri, Arthur D. Dysart, Lars-Erik Stacke, Vilas G. Pol & Farshid Sadeghi. (2015) Ultrasmooth Submicrometer Carbon Spheres as Lubricant Additives for Friction and Wear Reduction. ACS Applied Materials & Interfaces 7:9, pages 5514-5521.
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Sreedhar Babu Kalakada, Prabhakaran Nair Nair Kumarapillai & Rajendra Kumar P K. (2015) Static characteristics of thermohydrodynamic journal bearing operating under lubricants containing nanoparticles. Industrial Lubrication and Tribology 67:1, pages 38-46.
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Marinalva Ferreira Trajano, Edja Iandeyara Freitas Moura, Kandice Suane Barros Ribeiro & Salete Martins Alves. (2014) Study of oxide nanoparticles as additives for vegetable lubricants. Materials Research 17:5, pages 1124-1128.
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Zhenyu Zhang, Dorin Simionesie & Carl Schaschke. (2014) Graphite and Hybrid Nanomaterials as Lubricant Additives. Lubricants 2:2, pages 44-65.
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Gui-Bin Tan, De-Guo Wang, Shu-Hai Liu & Si-Wei Zhang. (2014) Probing tribological properties of waxy oil in pipeline pigging with fluorescence technique. Tribology International 71, pages 26-37.
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Aili Wang, Li Chen, Fan Xu & Zongcheng Yan. (2014) In situ synthesis of copper nanoparticles within ionic liquid-in-vegetable oil microemulsions and their direct use as high efficient nanolubricants. RSC Adv. 4:85, pages 45251-45257.
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S.M. Alves, B.S. Barros, M.F. Trajano, K.S.B. Ribeiro & E. Moura. (2013) Tribological behavior of vegetable oil-based lubricants with nanoparticles of oxides in boundary lubrication conditions. Tribology International 65, pages 28-36.
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Alaa Mohamed, Aly Ahmed Khattab, Tarek Abdel Sadek Osman & Mostafa Zaki. (2013) Rheological Behavior of Carbon Nanotubes as an Additive on Lithium Grease. Journal of Nanotechnology 2013, pages 1-4.
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N.W.M. Zulkifli, M.A. Kalam, H.H. Masjuki & R. Yunus. (2013) Experimental Analysis of Tribological Properties of Biolubricant with Nanoparticle Additive. Procedia Engineering 68, pages 152-157.
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E. S. Yamaguchi, G. A. Tanaka & K. Matsumoto. 2012. Automotive Lubricants and Testing. Automotive Lubricants and Testing 191 213 .
Antonio J. F. Bombard & Juan de Vicente. (2012) Thin-Film Rheology and Tribology of Magnetorheological Fluids in Isoviscous-EHL Contacts. Tribology Letters 47:1, pages 149-162.
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Hiralal Bhowmick & S. K. Biswas. (2011) Relationship Between Physical Structure and Tribology of Single Soot Particles Generated by Burning Ethylene. Tribology Letters 44:2, pages 139-149.
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R Penchaliah, T J Harvey, R J K Wood, K Nelson & H E G Powrie. (2011) The effects of diesel contaminants on tribological performance on sliding steel on steel contacts. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 225:8, pages 779-797.
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E. Fernández Rico, I. Minondo & D. García Cuervo. (2009) Rolling contact fatigue life of AISI 52100 steel balls with mineral and synthetic polyester lubricants with PTFE nanoparticle powder as an additive. Wear 266:7-8, pages 671-677.
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Hugh Spikes. (2008) Low- and zero-sulphated ash, phosphorus and sulphur anti-wear additives for engine oils. Lubrication Science 20:2, pages 103-136.
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E. Fernández Rico, I. Minondo & D. García Cuervo. (2007) The effectiveness of PTFE nanoparticle powder as an EP additive to mineral base oils. Wear 262:11-12, pages 1399-1406.
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Zhou Xiaodong, Fu Xun, Shi Huaqiang & Hu Zhengshui. (2006) Lubricating properties of Cyanex 302‐modified MoS 2 microspheres in base oil 500SN . Lubrication Science 19:1, pages 71-79.
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A. Hernandez Battez, J.E. Fernandez Rico, A. Navas Arias, J.L. Viesca Rodriguez, R. Chou Rodriguez & J.M. Diaz Fernandez. (2006) The tribological behaviour of ZnO nanoparticles as an additive to PAO6. Wear 261:3-4, pages 256-263.
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E. S. Yamaguchi, M Untermann, S. H. Roby, P. R. Ryason & S. W. Yeh. (2006) Soot Wear in Diesel Engines. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 220:5, pages 463-469.
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H Fujita & H. A. Spikes. (2005) The formation of zinc dithiophosphate antiwear films. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 218:4, pages 265-278.
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F. Chin˜as-Castillo & H. A. Spikes. (2003) Mechanism of Action of Colloidal Solid Dispersions. Journal of Tribology 125:3, pages 552-557.
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Chia-Ken Leong & D.D.L. Chung. (2003) Carbon black dispersions as thermal pastes that surpass solder in providing high thermal contact conductance. Carbon 41:13, pages 2459-2469.
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H. A. Spikes. (2006) Film‐forming additives ‐ direct and indirect ways to reduce friction. Lubrication Science 14:2, pages 147-167.
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H. A. Spikes & P. M. Cann. (2005) The development and application of the spacer layer imaging method for measuring lubricant film thickness. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 215:3, pages 261-277.
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Leticia Oliveira, Túlio Alves Rodrigues, Henara Lillian Costa & Washington Martins da Silva Jr. (2022) Tribological Behavior of Polyalphaolefin (Pao)-Based Nanolubricants with Magnetic Nanoparticles. SSRN Electronic Journal.
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