Graphene and CNT‐Based Smart Fiber‐Reinforced Composites: A Review
Умные волокнистые композиты на основе графена и углеродных нанотрубок: обзор
2022-08-23
SCID: 54.1/fbpgjeg3
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carbon nanotubes (CNTs)fiber-reinforced polymer compositesgraphene-based compositessmart compositesstructural health monitoring
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Abstract (AI)
Abstract Multifunctional fiber‐reinforced polymer (FRP) composites provide an ideal platform for next‐generation smart composites applications including structural health monitoring, electrical and thermal conductivity, energy storage and harvesting, and electromagnetic interference shielding without compromising their mechanical properties. Recent progress in carbon‐based nanomaterials such as graphene and carbon nanotubes (CNTs) has enabled the development of many novel multifunctional composites with excellent mechanical, electrical, and thermal properties. However, the effective incorporation of such carbon nanomaterials into FRP composites using scalable, high‐speed, and cost‐effective manufacturing without compromising their performance is challenging. This review summarizes the recent progress on graphene and CNT‐based FRP composites, their manufacturing techniques, and their applications in smart composites. Current technical challenges and future perspectives on smart FRP composites research to facilitate an essential step toward moving from research and development‐based smart composites to industrial‐scale mass production are also discussed.
Key Findings
1
Carbon nanomaterials can improve the mechanical, electrical, and thermal properties of fiber-reinforced polymer composites.
2
Graphene- and CNT-enhanced FRP composites enable multifunctional applications including structural health monitoring, conductivity, energy storage and harvesting, and electromagnetic interference shielding.
3
Scalable, high-speed, and cost-effective integration of graphene and CNTs remains challenging without sacrificing composite performance.
4
The review examines manufacturing techniques for incorporating graphene and CNTs into FRP composites and surveys their smart-composite applications.
5
The review identifies technical challenges and future research directions needed to transition smart FRP composites from laboratory development to industrial-scale production.
Research Object
graphene- and carbon nanotube-based fiber-reinforced polymer composites
Research Subject
their scalable manufacturing techniques, multifunctional properties, and smart-composite applications, including structural health monitoring, conductivity, energy storage and harvesting, and electromagnetic interference shielding
Publication Details
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2022-08-23
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