Lubricating performances of graphene oxide and onion-like carbon as water-based lubricant additives for smooth and sand-blasted steel discs
Author:
Publisher
Springer Science and Business Media LLC
Subject
Surfaces, Coatings and Films,Mechanical Engineering
Link
http://link.springer.com/content/pdf/10.1007/s40544-018-0237-3.pdf
Reference40 articles.
1. Ma H B, Li J, Chen H, Zuo G Z, Yu Y, Ren T H, Zhao Y D. XPS and XANES characteristics of tribofilms and thermal films generated by two P- and/or S-containing additives in water-based lubricant. Tribology International42(6): 940–945 (2009)
2. Wang W, Xie G X, Luo J B. Black phosphorus as a new lubricant. Friction6(1): 116–142 (2018)
3. Amann T, Gatti F, Oberle N, Kailer A, Rühe J. Galvanically induced potentials to enable minimal tribochemical wear of stainless steel lubricated with sodium chloride and ionic liquid aqueous solution. Friction6(2): 230–242 (2018)
4. Golchin A, Wikner A, Emami N. An investigation into tribological behaviour of multi-walled carbon nanotube/graphene oxide reinforced UHMWPE in water lubricated contacts. Tribology International95: 156–161 (2016)
5. Peng Y T, Hu Y Z, Wang H. Tribological behaviors of surfactant-functionalized carbon nanotubes as lubricant additive in water. Tribology Letters25(3): 247–253 (2006)
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