Abstract
Full cells of structural composite batteries comprising carbon fibre reinforced anodes and cathodes decorated with lithium titanate and LiNi0.3Mn0.3Co0.3O2 (NMC111), respectively, embedded in a polymer gel electrolyte were produced. Spread carbon fibres were coated with cathode and anode active materials followed by impregnation with a polymer gel electrolyte consisting of PVDF particles dispersed in an ionic liquid containing a lithium salt. The resulting carbon fibre reinforced electrodes/polymer gel electrolyte prepregs could be easily stored, handled or, if needed, transported. Cathode and anode prepregs were laminated and fused by compression moulding, resulting within a time frame of couple of minutes in full cell structural composite batteries. The batteries were charged and discharged at current densities of 0.1C, resulting in a specific capacity of 35 mAh/gNMC111 and energy density of 5.6 Wh/(kg battery). The composite batteries had a Young's modulus of 4.6 GPa and tensile strength of 32 MPa. A facile layup process enabled proof-of-concept demonstration of ‘all’ carbon fibre full cell multifunctional structural composite batteries.
| Original language | English |
|---|---|
| Article number | 110312 |
| Journal | Composites Science and Technology |
| Volume | 244 |
| Publication status | Published - 2023 |
Research Field
- Solid State Battery
- Hybrid Electric Aircraft Technologies
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Dive into the research topics of 'Structural composite batteries made from carbon fibre reinforced electrodes / polymer gel electrolyte prepregs'. Together they form a unique fingerprint.Research output
- 3 Article
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1 experimental and numerical evaluation of residual mechanical performance of carbon/epoxy laminated coupons after integration of solid battery cells for aeronautical applications
Laurin, F., Mavel, A., Saffar, F., Beutl, A. & Kühnelt, H., Mar 2024, In: Composites Science and Technology. 247, 13 p., 110384.Research output: Contribution to journal › Article › peer-review
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Concepts for integrating electrical energy storage into CFRP laminate structures for aeronautic applications
Laurin, F., Beutl, A., Jiang, Q. & Kühnelt, H., 1 Jun 2023, In: Journal of Physics: Conference Series. 2526, 1, 8 p., 012062.Research output: Contribution to journal › Article › peer-review
Open Access -
Structural Batteries for Aeronautic Applications—State of the Art, Research Gaps and Technology Development Needs
Kühnelt, H., Beutl, A., Mastropierro, F. S., Laurin, F., Willrodt, S., Bismarck, A., Guida, M. & Romano, F., 23 Dec 2021, In: Aerospace. 9, 1, p. 1-24 24 p.Research output: Contribution to journal › Article › peer-review
Open Access
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