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Modeling Kapitza resistance of two-phase composite material
Bo He
, Bohayra Mortazavi
, Xiaoying Zhuang
, Timon Rabczuk
*
*
Corresponding author for this work
Research output
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Contribution to journal
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Article
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peer-review
72
Citations (Scopus)
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Keyphrases
Thermal Conductivity
100%
Kapitza Resistance
100%
Two-phase Composite
100%
Interface Conductance
75%
Graphene Sheets
50%
Plate-like
50%
Effective Medium Approximation
50%
Nanocomposite Materials
50%
Heat Transfer
25%
Spherical Shape
25%
Fullerene
25%
Surface-to-volume Ratio
25%
Computational Homogenization
25%
Homogenization Method
25%
Accurate Modeling
25%
Polymer-matrix Composites
25%
Modeling Approach
25%
3D Finite Element Model
25%
Plate Thickness
25%
Carbon Nanotube Sheet
25%
Diameter-to-thickness Ratio
25%
Plate Length
25%
Representative Volume Element
25%
Length-diameter Ratio
25%
Analytical Homogenization
25%
Engineering
Thermal Conductivity
100%
Composite Material
100%
Nanoscale
50%
Graphene Sheet
50%
Nanocomposite
50%
Length Scale
25%
Carbon Nanotube
25%
Volume Ratio
25%
Finite Element Modeling
25%
Microscale
25%
Diameter Ratio
25%
Polymer Matrix Composite
25%
Plate Thickness
25%
Fullerene
25%
Computational Homogenisation
25%
Representative Volume Element
25%
Reinforced Plastic
25%
Material Science
Composite Material
100%
Thermal Conductivity
100%
Graphene
50%
Homogenization
50%
Nanocomposite
50%
Carbon Nanotube
25%
Fullerene
25%
Reinforced Plastic
25%
Finite Element Modeling
25%
Surface (Surface Science)
25%