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Paper | Open Access

Sound-absorbing continuous fiber-reinforced composite metastructure

Yilong Yang2 Yafeng Liu2Shuangshuang Miao3Yongdong Pan2Wei Zhai3Xiaoying Zhuang4,5 ( )Yabin Jin1 ( )
Institute of Computational Mechanics × AI & College of Intelligent Robotics and Advanced Manufacturing, Fudan University, Shanghai 200433, People’s Republic of China
School of Aerospace Engineering and Applied Mechanics, Tongji University, Shanghai 200092, People’s Republic of China
Department of Mechanical Engineering, National University of Singapore, Singapore 117575, Singapore
College of Civil Engineering, Tongji University, Shanghai 200092, People’s Republic of China
Institute of Photonics, Department of Mathematics and Physics, Leibniz University Hannover, Hannover 30167, Germany
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Abstract

Noise mitigation in applications involving extreme environments with combined structural strength and acoustic control, such as aerospace, transportation, and construction, faces critical challenges due to the trade-off between sound absorption and mechanical integrity. Traditional porous absorbers offer good acoustic performance but are structurally weak, lacking the stiffness and durability needed for load-bearing applications. Moreover, their performance in the low-frequency range often requires bulky designs, limiting their use in compact or weight-sensitive systems. In this study, we introduce a multifunctional composite metastructure that combines a Fabry–Pérot acoustic channel design with a custom-developed continuous fiber-reinforced additive manufacturing process. Using a dual-nozzle robotic arm and path-optimized printing, we fabricate a compact metastructure capable of broadband noise absorption and high mechanical robustness. The metastructure achieves an average sound absorption coefficient exceeding 0.9 across 1500–5500 Hz, as confirmed by coupled-mode theory and impedance tube experiments. We further demonstrate that continuous fiber reinforcement significantly enhances the bending, compression, and shear performance of the composite metastructure compared with its short fiber counterpart. This work offers a scalable platform for advanced multifunctional materials with strong potential in extreme environments, such as aerospace noise control, advanced transport systems, and lightweight architectural design.

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International Journal of Extreme Manufacturing

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Cite this article:
Yang Y, Liu Y, Miao S, et al. Sound-absorbing continuous fiber-reinforced composite metastructure. International Journal of Extreme Manufacturing, 2026, 8(3). https://doi.org/10.1088/2631-7990/ae35ea

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Received: 07 August 2025
Revised: 18 October 2025
Accepted: 07 January 2026
Published: 28 January 2026
© 2026 The Author(s).

Original content from this work may be used under the terms of the Creative Commons Attribution 4.0 licence. Any further distribution of this work must maintain attribution to the author(s) and the title of the work, journal citation and DOI.