1. 江南大学,无锡,214122
2. 北京石墨烯研究院,北京,100095
纸质出版:2025
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张典堂, 赵马娟, 宋雨晴. 高性能结构吸波陶瓷基复合材料设计与性能表征研究进展[J]. 航空制造技术, 2025,68(16).
ZHANG Diantang, ZHAO Majuan, SONG Yuqing. Research Progress on Design and Properties Characterization of High-Performance Structural Microwave Absorbing Ceramic Matrix Composites[J]. Aeronautical Manufacturing Technology, 2025, 68(16).
张典堂, 赵马娟, 宋雨晴. 高性能结构吸波陶瓷基复合材料设计与性能表征研究进展[J]. 航空制造技术, 2025,68(16). DOI: 10.16080/j.issn1671-833x.2025.16.014.
ZHANG Diantang, ZHAO Majuan, SONG Yuqing. Research Progress on Design and Properties Characterization of High-Performance Structural Microwave Absorbing Ceramic Matrix Composites[J]. Aeronautical Manufacturing Technology, 2025, 68(16). DOI: 10.16080/j.issn1671-833x.2025.16.014.
高性能结构吸波陶瓷基复合材料是实现航空高温部件宽频吸波和高承载一体化的理想候选材料。本文以宏观–细观–微观多尺度协同设计为核心研究思路,系统地概述了高性能结构吸波复合材料的基本设计原则。从材料设计的角度出发,综合考虑阻抗匹配和电磁损耗之间的良好平衡,以实现对电磁波的宽频高效吸收。深入梳理微观组分材料(如碳化硅、氮化硅等陶瓷基体,以及碳纳米管、金属氧化物等)对复合材料吸波性能的影响机制,剖析典型宏/细观构型(如层状结构、多孔结构、纤维增强结构等)在调控材料电磁波吸收方面的关键作用。通过建立多尺度结构与性能的关联模型,总结出一系列针对高性能结构吸波陶瓷基复合材料的优化设计方法,涵盖材料成分选择和结构参数优化等多个方面。本文为新一代航空飞行器高温宽频吸波一体化的设计与性能评价提供了重要的理论依据和实践指导,对推动航空航天领域隐身技术与结构材料的协同发展具有重要意义。
High-performance structural microwave absorbing ceramic matrix composites represent an ideal candidate for achieving the integration of broadband wave absorption and high load-bearing capacity in aerospace high-temperature components. Taking the multi-scale collaborative design of macro-meso-micro levels as the core research approach
this paper systematically summarizes the fundamental design principles of high-performance structural microwave absorbing composites. From the perspective of material design
it comprehensively considers the optimal balance between impedance matching and electromagnetic loss to achieve broadband and efficient absorption of electromagnetic waves. The study deeply investigates the influence mechanisms of micro-component materials (such as SiC
Si3N4
ceramic matrices
and carbon nanotubes
metal oxides as absorbers) on the microwave absorbing performance of composites. It also analyzes the key roles of typical macro-mesoscopic configurations (such as layered structures
porous structures
and fiber-reinforced structures) in regulating electromagnetic wave absorption. By establishing correlation models between multi-scale structures and performance
a series of optimized design methods for high-performance SACMCs are summarized
covering material composition selection
structural parameter optimization
and other dimensions. This research provides critical theoretical foundations and practical guidance for the integrated design and performance evaluation of high-temperature broadband microwave absorbing systems in the new generation of aerospace vehicles. It holds significant implications for promoting the collaborative development of stealth technology and structural materials in the aerospace industry.
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