Design and Manufacture of Structure-Function Integrated Fiber Composite

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About this Research Topic

Submission deadlines

  1. Manuscript Summary Submission Deadline 28 February 2026 | Manuscript Submission Deadline 31 May 2026

  2. This Research Topic is currently accepting articles.

Background

In the realm of polymeric and composite materials, the integration of structure and function holds significant potential for advancing technologies in electric vehicles (EVs) and unmanned aerial vehicles (UAVs), both pivotal to the progressive urban transit landscape. With the surge of electric propulsion systems, traditional energy storage solutions like battery packs face limitations such as considerable weight, substantial space demand, and restricted energy density uplift. Hence, a critical need arises for evolving lightweight, higher energy-density storage solutions. Load-bearing and energy storage integrated fiber composites emerge as a promising innovation, combining structural integrity with electrochemical energy capabilities. These composites are not only revolutionizing energy storage but are also instrumental in enhancing transport efficiency and overall performance by markedly reducing vehicle weight and boosting energy utilization.

This Research Topic aims to advance the technological frontiers in the design and production of fiber composites that harmonize load-bearing and energy storage functionalities. We seek to explore large-scale manufacturing and refine performance regulation strategies to elevate material properties. Furthermore, attention will be devoted to overcoming the complex challenges associated with curved surface forming—paramount for the diverse, small-batch requirements of curved components in electric flying cars. A critical goal involves optimizing material structure-performance correspondence through shape-property regulation to furnish high-performance material solutions for cutting-edge applications like electric flying cars, thus propelling technological leaps in connected industries.

To gather further insights into this evolving field, we welcome articles addressing, but not limited to, the following themes:

• Large-scale manufacturing techniques for fiber composites

• Performance enhancement and tuning strategies

• Innovation in curved surface forming technologies

• Structural optimization structure-function integrated composites

Article types and fees

This Research Topic accepts the following article types, unless otherwise specified in the Research Topic description:

  • Editorial
  • FAIR² Data
  • FAIR² DATA Direct Submission
  • Mini Review
  • Original Research
  • Perspective
  • Review

Articles that are accepted for publication by our external editors following rigorous peer review incur a publishing fee charged to Authors, institutions, or funders.

Keywords: Carbon fiber, Structural composites, Multifunctional materials, Structure-function integration

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