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ENHANCING THERMAL PROPERTIES OF FIBER-REINFORCED POLYMER COMPOSITES TO BE USED IN BATTERY CASINGS: A REVIEW
Abstract
Fiber-reinforced polymer composites, particularly those reinforced with carbon fiber, hold significant promise for use in battery casings. Since the performance of the batteries of electric and hybrid vehicles is highly dependent on the operating temperature, the thermal management system of the battery pack is essential. For this thermal management to be efficient, the battery enclosure must have sufficient thermal conductivity and thermal diffusivity values. However, most of the fiber-reinforced polymer composite materials have poor thermal properties. Thus, it is necessary to increase the thermal conductivity and thermal diffusivity values of such materials. In this paper, studies that have succeeded in increasing the thermal properties of fiber-reinforced polymer composites by applying different methods have been examined. The methods and obtained results are reviewed and discussed. Also, some suggestions are given to the potential applicators. Therefore, the most applicable methods, to enhance the thermal properties of the composite battery cases, can be determined and compared with one another.
Keywords
References
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Details
Primary Language
English
Subjects
Material Design and Behaviors , Composite and Hybrid Materials
Journal Section
Review
Publication Date
December 3, 2024
Submission Date
June 13, 2024
Acceptance Date
July 29, 2024
Published in Issue
Year 1970 Volume: 27 Number: 4