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Critique of the friction coefficient concept for wet (lubricated) sliding
Ali Dhinojwala
,
Lenore Cai
, Steve Granick
Research output
:
Contribution to journal
›
Article
›
peer-review
52
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Scopus citations
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Keyphrases
Friction Coefficient
100%
Polymer Brushes
100%
Lubricated Sliding
100%
Polymer Chain
66%
Relaxation Time
66%
Normal Direction
66%
Stick-slip Motion
66%
Polydimethylsiloxane
33%
Equilibration
33%
Shear Resistance
33%
Mica
33%
Shear Direction
33%
Traditional Definition
33%
Undershoot
33%
Kinetic Friction
33%
Polymer Melt
33%
Shear Response
33%
Solvent Quality
33%
Stick-slip
33%
Static Friction
33%
Sliding Velocity
33%
Thin Liquid Film
33%
Surface Forces Apparatus
33%
Viscous Force
33%
Confined Fluids
33%
Interfacial Rheology
33%
Resistance to Compression
33%
Theoretical Interpretation
33%
Engineering
Coefficient of Friction
100%
Polymer
100%
Polymer Chain
66%
Stick Slip Motion
66%
Relaxation Time
66%
Engineering
33%
Rheology
33%
Polydimethylsiloxane
33%
Equilibration
33%
Shear Resistance
33%
Intrinsic Property
33%
Kinetic Friction
33%
Static Friction
33%
Sliding Velocity
33%
Viscous Force
33%
Shear Direction
33%
Stick-Slip
33%
Liquid Film
33%
Material Science
Polymer
100%
Polymer Brush
100%
Rheology
50%
Film
50%
Polymer Melt
50%
Thin Liquid Film
50%
Polydimethylsiloxane
50%