ENERYARN · Nanostructured Yarn Composites for Structural Energy Storage
Horizon 2020 — Marie Skłodowska-Curie Actions
- Duration
- 2018-06-01 → 2020-05-31
- EU contribution
- €170,122
- Participants
- 1
- Scheme
- MSCA-IF-EF-ST
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Results in brief
Nanostructured Yarn Composites for Structural Energy Storage
The project was based on the multiscale engineering principles, from the CNT yarns-level to unidirectional CNT fabrics and composite structures. At the yarn-level, interactions and infiltration with polymers were exploited in order to develop new yarn stretching strategies in dry and wet state to demonstrate high mechanical properties in CNT fabrics with multiple yarns. Such fabrics were used in hybrid composite laminas, and implemented successfully in multifunctional materials for energy storage applications.
Data: CORDIS, © European Union
Project objective
This research is motivated by the ever-increasing need of the aerospace, automotive, and marine industries for novel multifunctional composites with superior structural toughness, capable for energy-storing applications. The proposed topic focuses on the major European societal challenges, such as to reduce weight of transport systems and energy resources consumption, following the European Energy 2020 strategy, Europe 2020 Flagship Initiative, and other climate and energy policies. The project aims to develop the next generation first-of-this-kind large-scale composites reinforced with carbon nanotube yarns, with improved longitudinal and transverse mechanical properties for further integration as electrodes in structural supercapacitors. The Applicant will use carbon nanotube yarns synthesized from natural gas at rates of 10’s km per day by the host laboratory, multiscale engineering principles, and advanced instrumental analysis to maximize CNT alignment and CNT/polymer nanoscale interfacial properties to produce the high-performance laminates which are not feasible with conventional carbon fibres or discrete nanotubes. The project is based on the Applicant’s experience in CNT-based nanostructured composites and advanced spectroscopic nanoscale analysis, and will strengthen her knowledge in direct CNT yarn synthesis and structural composite fabrication according the host group training and excellent infrastructure. A set of new soft skills as an integrated part of this application, will complement her strong technical background and will open a new avenue for future career development in either academia or industry.
Original text from CORDIS.
Participants
- FUNDACION IMDEA MATERIALES · GetafeCoordinatorSpain
Links
- View on CORDIS
- DOI: 10.3030/797176
- https://materials.imdea.org/projects/eneryarn-nanostructured-yarn-composites-for-structural-energy-storage/
Data: CORDIS, © European Union
