Hierarchical carbon aerogel modified carbon fiber composites for structural power applications
File(s)Anthony_ICL_ICCM22_2019.pdf (500.67 KB)
Published version
Author(s)
Type
Conference Paper
Abstract
The desire to reduce overall weight in devices is a key driver for perpetual material development; the ability to combine composites with energy storage functions/capabilities which simultaneously provide structural integrity has the potential to supersede monofunctional components. To achieve this ambition, the multifunctional structure must perform both mechanical and energy storage functions sufficiently, but often there is a trade off in performance which is a significant challenge to overcome. Carbon aerogels have been shown to contribute positively to (electro-chemical double layer) capacitive performance due to an increased surface area in multifunctional carbon fiber based composite electrodes, but have also been shown to reduce mechanical properties; the addition of nanoscale reinforcers, such as carbon nanotubes, graphene or alike, with their superlative electrical and mechanical properties are proposed to address these concerns and create a truly hierarchical structure suitable for structural power applications.
Date Issued
2019-08-16
Date Acceptance
2019-06-28
Citation
2019, pp.1-7
Publisher
Engineers Australia
Start Page
1
End Page
7
Copyright Statement
© Engineers Australia 2019. The papers were initially published in the ICCM-22 conference proceedings and copyrighted to Engineers Australia.
Sponsor
Clean Sky Joint Undertaking
Engineering & Physical Science Research Council (EPSRC)
Engineering & Physical Science Research Council (E
Identifier
https://search.informit.com.au/documentSummary;dn=855203186188530;res=IELENG
Grant Number
738085
EP/P007465/1
121041 - EP/P006701/1
Source
22nd International Conference on Composite Materials 2019 (ICCM22)
Publication Status
Published online
Start Date
2019-08-11
Finish Date
2019-08-16
Coverage Spatial
Melbourne, Australia
Date Publish Online
2019-08-16