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Effects of mechanical deformation on electric performance of rechargeable batteries embedded in load carrying composite structures

journal contribution
posted on 2024-11-01, 16:36 authored by Salah M Shalouf, Jinao Zhang, Chun Wang
Integrating rechargeable battery cells with fibre reinforced polymer matrix composites is a promising technology to enable composite structures to concurrently carry load and store electric energy, thus significantly reducing weight at the system level. To develop a design criterion for structural battery composites, rechargeable lithium polymer battery cells were embedded into carbon fibre/epoxy matrix composite laminates, which were then subjected to tensile, flexural and compressive loading. The electric charging/discharging properties were measured at varying levels of applied loads. The results showed that degradation in battery performance, such as voltage and energy storage capacity, correlated well with the applied strain under three different loading conditions. Under compressive loading, battery cells, due to their multilayer construction, were unable to prevent buckling of composite face sheets due to the low lateral stiffness, leading to lower compressive strength than sandwich panels with foam core.

History

Journal

Plastics, Rubber and Composites

Volume

43

Issue

3

Start page

98

End page

104

Total pages

7

Publisher

Maney Publishing

Place published

United Kingdom

Language

English

Copyright

© 2014 Institute of Materials, Minerals and Mining

Former Identifier

2006048968

Esploro creation date

2020-06-22

Fedora creation date

2014-11-11

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