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Nanostructured polymers for additive manufacturing
Antigoni Paspali
Research output
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PhD
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Dive into the research topics of 'Nanostructured polymers for additive manufacturing'. Together they form a unique fingerprint.
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Keyphrases
Additive Manufacturing
100%
Polylactide
100%
Nanostructured Polymers
100%
Clay
58%
Mechanical Properties
41%
Clay Content
25%
Fused Filament Fabrication
25%
Three-dimensional-printed
25%
Feedstock Filament
25%
Cloisite
25%
Mechanical Performance
16%
Composite Sample
16%
Clay Type
16%
Polymer Matrix
16%
Clay Intercalation
16%
Clay Composite
16%
Three-dimensional Printing
16%
Composite System
16%
Environmentally Friendly
8%
Agglomeration
8%
Elastic Modulus
8%
3D Printer
8%
Mechanical Behavior
8%
Reinforcement Technique
8%
Platelets
8%
Compatibilizer
8%
High Modulus
8%
Natural Clay
8%
Processing Difficulty
8%
Nanophase
8%
Mesostructure
8%
Clay Additive
8%
Thermoplastic Composites
8%
Composite Filament
8%
Clay Fillers
8%
Flowability
8%
Organoclay
8%
Interfacial Interaction
8%
Metallic Fillers
8%
Coupling Agent
8%
Nanostructured Composites
8%
Dispersibility
8%
Die-swell Ratio
8%
Ceramic Filler
8%
Halpin-Tsai Model
8%
Interfacial Wetting
8%
Printed Composites
8%
Polymer-clay Nanocomposites
8%
Print Resolution
8%
Engineering
Additive Manufacturing
100%
Nanocomposite
100%
Mechanical Performance
50%
Polymer Matrix
50%
Clay Content
50%
Three Dimensional Printing
50%
Potential Application
25%
Experimental Result
25%
Limited Number
25%
Platelet
25%
Interfacial Interaction
25%
Ceramic Filler
25%
Die Swell
25%
Coupling Agent
25%
Halpin Tsai Model
25%
Organoclay
25%
Dispersibility
25%
Mechanical Property
25%
Phase Composition
25%
Modulus of Elasticity
25%
Material Science
Three Dimensional Printing
100%
Polylactide
100%
Nanocomposite
33%
Feedstock
25%
Fused Filament Fabrication
25%
Polymer Matrix
16%
Complex System
16%
Thermoplastics
16%
Elastic Moduli
8%
Mechanical Property
8%
Flowability
8%
Coupling Agent
8%
Phase Composition
8%
Platelet
8%