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Nanoscale Stick-Slip Behavior and Hydration of Hydrated Illite Clay
Pengchang Wei
, Shengbiao Zhou
, Yuan Yuan Zheng
,
Zhen Yu Yin
, Wangqi Xu
Department of Civil and Environmental Engineering
The Hong Kong Polytechnic University
Research output
:
Journal article publication
›
Journal article
›
Academic research
›
peer-review
30
Citations (Scopus)
Overview
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Keyphrases
Illite
100%
Stick-slip Motion
100%
Stick-slip
100%
Illite Clay
100%
Shearing Process
75%
Friction Coefficient
50%
Potential Energy Surface
50%
Crystal Layer
50%
Shear Behavior
25%
Hydrostatic Pressure
25%
Shear Stress
25%
Clay
25%
Water Content
25%
Water Type
25%
Water Layer
25%
Molecular Dynamics Simulation
25%
Bound Water
25%
Free Water
25%
Diffusion Behavior
25%
Internal Friction Angle
25%
Water Film
25%
Water Adsorption
25%
Ion Adsorption
25%
Hydration Behavior
25%
Engineering
Shear Process
100%
Interlayer
100%
Nanoscale
100%
Stick-Slip
100%
Potential Energy
66%
Energy Surface
66%
Simulation Method
33%
Simulation Result
33%
Free Water
33%
Diffusion Behavior
33%
Average Shear Stress
33%
Internal Friction Angle
33%
Bound Water
33%
Shear Property
33%
Coefficient of Friction
33%
Fluid Statics
33%
Material Science
Surface Energy
100%
Internal Friction
50%
Film
50%
Fluid Statics
50%