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Open Access

Numerical study of mesoscopic ablation-erosion of C/C composites with inclined fibers

Jing YANGaJingran GEa( )Xiaodong LIUaZhao JINGbTong SHANGaJun LIANGa,c( )
Institute of Advanced Structure Technology, Beijing Institute of Technology, Beijing 100081, China
Beijing Institute of Space Long March Vehicle, Beijing 100076, China
Beijing Key Laboratory of Lightweight Multi-functional Composite Materials and Structures, Beijing Institute of Technology, Beijing 100081, China

Peer review under responsibility of Editorial Committee of CJA.

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Abstract

Carbon Carbon (C/C) composites in thermal-protection system are exposed to severe thermochemical ablation and mechanical erosion, and their thermal-protection performance is of vital importance to the structural safety and flight status of hypersonic vehicles. We numerically analyzes the mesoscopic ablation-erosion of C/C Composites with Inclined Fibers (CCIF). First, a thermochemical ablation model describing the reaction–diffusion coupled problem of C/C composites on mesoscale is employed to analyze ablative process, and the corresponding surface ablation morphology is obtained. Then, the ablation morphology of CCIF is taken as the geometrical model for mechanical erosion analysis, and their damage and failure behavior under high-speed airflow shear is analyzed by using progressive damage method. Moreover, the effects of fiber inclined angle and airflow direction on the mechanical erosion of CCIF are investigated, and the ablation-erosion behavior is analyzed and discussed. The results show that the failure modes of mechanical erosion in inner and edge regions are obviously different, showing granular and block erosion phenomena respectively. The mechanical erosion of CCIF in the direction of reverse flow is easier than that in the direction of forward flow. These results can provide a theoretical basis for the design and optimization of thermal protection system materials.

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Chinese Journal of Aeronautics

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Cite this article:
YANG J, GE J, LIU X, et al. Numerical study of mesoscopic ablation-erosion of C/C composites with inclined fibers. Chinese Journal of Aeronautics, 2025, 38(11). https://doi.org/10.1016/j.cja.2025.103730

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Received: 12 August 2024
Revised: 11 September 2024
Accepted: 28 October 2024
Published: 28 July 2025
© 2025 The Author(s). Chinese Society of Aeronautics and Astronautics.

This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).