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A study of tribological properties of water-based ceria nanofluids
Chuanli Zhao,
Y. K. Chen
,
G. Ren
Centre for Engineering Research
Materials and Structures
Centre for Climate Change Research (C3R)
School of Physics, Engineering & Computer Science
Department of Engineering and Technology
Centre for Future Societies Research
Energy and Sustainable Design Research Group
BioEngineering
Research output
:
Contribution to specialist publication
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Article
2
Citations (Scopus)
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Keyphrases
Anti-wear Properties
14%
Ceria
100%
Cerium Oxide
42%
Contact Element
14%
Contact Surface
14%
Different Nanoparticles
14%
Dispersibility
14%
Dynamic Light Scattering
14%
Friction Coefficient
14%
Frictional Properties
14%
Loading Conditions
14%
Nanofluid
100%
Nanoparticle Concentration
14%
Nanoparticle Deposition
14%
Nanoparticle Dispersion
14%
Nanoparticles
14%
Particle Dispersion
14%
Pin-on-disc Test
14%
Scanning Electron Microscopy
14%
Sorbitan Monostearate
14%
Stable Dispersion
14%
Surfactant
14%
Tribological Properties
100%
Water Properties
100%
Water-based
100%
Water-based Nanofluid
14%
Worn Surface
14%
Zeta Potential Measurement
14%
Chemical Engineering
Cerium Compound
100%
Nanoparticle
100%
Stearic Acid
25%
Surfactant
25%
Zeta Potential
25%
Material Science
Cerium Oxide
100%
Nanoparticle
100%
Scanning Electron Microscopy
25%
Surface (Surface Science)
25%
Surface Active Agent
25%