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Dual-feedback healing mechanism redefining anti-oxidation coatings in fiber-reinforced composites

delete2024-10-01
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OA
AI
Y
Yuanshuai Wang
王欣宇 cover
王欣宇 (Xinyu Wang)
P
Pianpian Zhang
A
Anqi Lun
Y
Yuewei Li
王羿 cover
王羿 (Yi Wang)
L
Lizhe Xing
Z
Zhengyang Fu
Y
Ya’nan Yang
夏龙 (Long Xia) *
DOI:10.26599/JAC.2024.9220966delete
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Abstract

Abstract

En 中文
This study introduces a pioneering design concept termed the dual-feedback healing mechanism, which investigates the relationship between oxidation products and protective coatings. Specifically, it focuses on channeling oxidation products generated at exposed cracks in the substrate to interact with the antioxidant coatings, enabling a self- repair mechanism for cracks. BNf/SiBN was chosen as the ceramic matrix, while the Si-O-Al system served as the antioxidant coating. The dynamic process of obtaining Si-O-Al (SOAC) coating involving the pyrolysis of organic precursors and the dual-feedback healing mechanism were systematically investigated. These findings indicate that when the temperature surpasses 1150 degrees C, the exposed BN fibers at the cracks are oxidized, transforming into B2O3(g). Subsequently, B2O3(g) reacts with SiO2, forming a SiBO mixture. The mixture effectively diminishes the viscosity of the coating, enabling it to flow and form a fresh protective layer that effectively blocks O2 infiltration. Consequently, after oxidation at 1500 degrees C, the coated samples experience a mere 3% weight loss. This technology emphasizes the interconnectivity during material transformation, utilizing matrix oxidation products as a driving force for self-healing of the coating. This approach achieves intelligent-like, targeted closure of oxygen pathways, thereby pioneering a novel concept and direction for the advancement of antioxidant coatings. Consequently, this approach not only enhances our understanding of the fundamental nature of self-healing but also holds significant potential in the development of reparable antioxidant coatings.
Keywords:
antioxidant coating
dual-feedback
BN f /SiBN composite
Si-O-Al coating
self-healing

Journal

Journal of Advanced Ceramics cover
Journal of Advanced Ceramics
IF:
16.6
Papers:
984
Citations:
9.9K

Organization

H
harbin institute of technology
Scholars:
8.0W
Papers: 6.6W
Citations: 66
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