Filtration effects of graphene nanoplatelets in resin infusion processes: Problems and possible solutions

Since the discovery of graphene, various industries such as aerospace and automotive are trying to utilize this fascinating nanofiller to enhance components' performance. An important issue in the processing of nanoengineered composites is the interaction and potential filtration of nanofillers...

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Veröffentlicht in:Composites science and technology 2017-02, Vol.139, p.138-145
Hauptverfasser: Zhang, Han, Liu, Yi, Huo, Shanshan, Briscoe, Joe, Tu, Wei, Picot, Olivier T., Rezai, Amir, Bilotti, Emiliano, Peijs, Ton
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container_end_page 145
container_issue
container_start_page 138
container_title Composites science and technology
container_volume 139
creator Zhang, Han
Liu, Yi
Huo, Shanshan
Briscoe, Joe
Tu, Wei
Picot, Olivier T.
Rezai, Amir
Bilotti, Emiliano
Peijs, Ton
description Since the discovery of graphene, various industries such as aerospace and automotive are trying to utilize this fascinating nanofiller to enhance components' performance. An important issue in the processing of nanoengineered composites is the interaction and potential filtration of nanofillers by the porous microfibre preform during liquid moulding processing. Here we demonstrate the filtration effect of graphene nanoplatelets (GNPs) during resin infusion of nanoengineered hierarchical composites, and for the first time we have successfully quantified this filtration effect by both electrical and optical methods. In addition, an alternative spraying method to deliver GNPs into composite laminates was also evaluated.
doi_str_mv 10.1016/j.compscitech.2016.12.020
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source Elsevier ScienceDirect Journals
subjects Aerospace industry
Aircraft components
Automobile industry
Automotive engineering
Automotive parts
Composite materials
Epoxy
Filters
Filtration
Graphene
Graphene nanoplatelets (GNP)
Impact analysis
Laminates
Liquid moulding
Molding (process)
Morphology
Nanofillers
Nanostructure
Optics
Polymer matrix composites
Spray coating
Spraying
Studies
title Filtration effects of graphene nanoplatelets in resin infusion processes: Problems and possible solutions
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