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Original Articles

The Tribological Properties of Oils Added with Diamond Nano-Particles

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Pages 494-498 | Published online: 25 Mar 2008

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Read on this site (8)

Wenzhen Xia, Jingwei Zhao, Hui Wu, Xianming Zhao, Xiaoming Zhang, Jianzhong Xu, Ay Ching Hee & Zhengyi Jiang. (2017) Effects of Nano-TiO2 Additive in Oil-in-Water Lubricant on Contact Angle and Antiscratch Behavior. Tribology Transactions 60:2, pages 362-372.
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Yeau-Ren Jeng, Yao-Huei Huang, Ping-Chi Tsai & Gan-Lin Hwang. (2015) Tribological Performance of Oil-Based Lubricants with Carbon-Fe Nanocapsules Additive. Tribology Transactions 58:5, pages 924-929.
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O. Shenderova, A. Vargas, S. Turner, D. M. Ivanov & M. G. Ivanov. (2014) Nanodiamond-Based Nanolubricants: Investigation of Friction Surfaces. Tribology Transactions 57:6, pages 1051-1057.
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Caymen Novak, David Kingman, Kyle Stern, Qian Zou & Luan Gara. (2014) Tribological Properties of Paraffinic Oil with Nanodiamond Particles. Tribology Transactions 57:5, pages 831-837.
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M. G. Ivanov, D. M. Ivanov, S. V. Pavlyshko, I. Petrov, A. Vargas, G. McGuire & O. Shenderova. (2012) Nanodiamond-Based Nanolubricants. Fullerenes, Nanotubes and Carbon Nanostructures 20:4-7, pages 606-610.
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AlexeyP. Puzyr, AndreyE. Burov, GenadiyE. Selyutin, VladimirA. Voroshilov & VladimirS. Bondar. (2012) Modified Nanodiamonds as Antiwear Additives to Commercial Oils. Tribology Transactions 55:1, pages 149-154.
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Rouhollah Mirzaamiri, Saleh Akbarzadeh, Saeed Ziaei-Rad, Dong-Gap Shin & Dae-Eun Kim. (2021) Molecular dynamics simulation and experimental investigation of tribological behavior of nanodiamonds in aqueous suspensions. Tribology International 156, pages 106838.
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Maria Sarno, Adolfo Senatore, Davide Scarpa & Claudia Cirillo. (2020) “Green” Synthesis of Nanocarbons for Reduced Friction and Wear. Lubricants 8:2, pages 13.
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Jun Zhao, Yingru Li, Yongyong He & Jianbin Luo. (2019) In Situ Green Synthesis of the New Sandwichlike Nanostructure of Mn 3 O 4 /Graphene as Lubricant Additives . ACS Applied Materials & Interfaces 11:40, pages 36931-36938.
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N Jeyaprakash, S Sivasankaran, G Prabu, Che-Hua Yang & Abdulaziz S Alaboodi. (2019) Enhancing the tribological properties of nodular cast iron using multi wall carbon nano-tubes (MWCNTs) as lubricant additives. Materials Research Express 6:4, pages 045038.
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Priyang Udaykant Jadav, Ramin Amali & Oluwamayokun B. Adetoro. (2018) Analytical friction model for sliding bodies with coupled longitudinal and transverse vibration. Tribology International 126, pages 240-248.
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Mohamed Kamal Ahmed Ali, Hou Xianjun, F. A. Essa, Mohamed A. A. Abdelkareem, Ahmed Elagouz & S. W. Sharshir. (2018) Friction and Wear Reduction Mechanisms of the Reciprocating Contact Interfaces Using Nanolubricant Under Different Loads and Speeds. Journal of Tribology 140:5.
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Danny Wong, Jesus Resendiz, Philip Egberts & Simon S. Park. (2018) Electrospinning of composite microbeads for tribological improvements. Journal of Manufacturing Processes 34, pages 264-273.
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Shraddha Gondane, Arun K. Singh, R. P. Vijayakumar & Nitish Sinha. (2017) The Effect of Carbon Nanotubes Based Nanolubricant on Stick–Slip Behavior. Transactions of the Indian Institute of Metals 71:5, pages 1061-1065.
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Lei Liu, Wei Zhou, Yongwei Chen, Songlong Jiao & Peng Huang. (2018) Pressure-assisted synthesis of a polyaniline–graphite oxide (PANI–GO) hybrid and its friction reducing behavior in liquid paraffin (LP). New Journal of Chemistry 42:2, pages 936-942.
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Jun Zhao, Yingru Li, Junyuan Mao, Yongyong He & Jianbin Luo. (2017) Synthesis of thermally reduced graphite oxide in sulfuric acid and its application as an efficient lubrication additive. Tribology International 116, pages 303-309.
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Gyoung-Ja Lee, Jin-Ju Park, Min-Ku Lee & Chang Kyu Rhee. (2017) Stable dispersion of nanodiamonds in oil and their tribological properties as lubricant additives. Applied Surface Science 415, pages 24-27.
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Hongdong Wang, Yuhong Liu, Zhe Chen, Bibo Wu, Sailong Xu & Jianbin Luo. (2016) Layered Double Hydroxide Nanoplatelets with Excellent Tribological Properties under High Contact Pressure as Water-Based Lubricant Additives. Scientific Reports 6:1.
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