Keyphrases
Polypropylene
100%
Carbon Nanostructures
100%
Cellular Structure
72%
Core-back
68%
Cell Size
66%
Nanocomposite Foam
62%
Void Fraction
62%
Foam Injection Molding
56%
Electromagnetic Shielding Effectiveness
50%
Enhanced Electrical Conductivity
50%
Interfacial Compatibility
50%
Polybutylene Terephthalate
50%
Polylactic Acid
50%
Conductive Polymer Composites
37%
Polymer Composite Foams
25%
Electromagnetic Interference Shielding Effectiveness (EMI SE)
25%
Electrical Conductivity
25%
Composite Foam
20%
Nanostructured Composites
20%
Cell Density
20%
Interfacial Adhesion
18%
Injection Molding Process
18%
Poly(lactic acid) Foam
12%
Impact Strength
12%
Innovative Approach
12%
Electrical Properties
12%
Conductive Path
12%
Enlargement
12%
Solid Injection
10%
Shielding Application
10%
Crystallization Process
10%
Melt Strength
10%
Rheological Curve
10%
Good Mechanical Properties
10%
Adverse Effects
10%
High Thermal Conductivity
10%
Order of Magnitude
10%
Sensor Applications
10%
Mold Temperature
10%
Flexural Modulus
10%
Three-order
10%
Differential Scanning Calorimetry
10%
Electromagnetic Interference Shielding
10%
Reactive Extrusion
6%
Small Cell Size
6%
Brittle-plastic Transition
6%
Reactive Compatibilizer
6%
Phase Interface
6%
Industrially Scalable
6%
Petroleum
6%
Material Science
Polypropylene
100%
Nanocrystalline Material
100%
Nanocomposite Foam
62%
Void Fraction
62%
Injection Molding
62%
Electrical Conductivity
50%
Polymer Composite
37%
Electromagnetic Interference Shielding
35%
Density
20%
Molding
12%
Crystallization
10%
Thermal Conductivity
10%
Mechanical Strength
10%
Differential Scanning Calorimetry
10%
Engineering
Carbon Nanostructure
100%
Void Fraction
62%
Nanocomposite
62%
Injection Moulding
62%
Shielding Performance
50%
Electrical Conductivity
50%
Conductive Polymer
37%
Electromagnetic Interference
35%
Shielding Effectiveness
25%
Conductive Path
12%
Flexural Modulus
10%
Good Mechanical Property
10%
Application of Sensors
10%
High Thermal Conductivity
10%
Mould Temperature
10%