GAO Yu-yi 1 , LI Qian-hui 1 , HAN Qing-zhi 1 , XIAO Jie 1 , HE Wen-ting 1,2 , GUO Hong-bo 1,2.Development of Microwave Absorption Coatings for High-Temperature Radar[J].航空发动机,2024,50(3):17-32
Development of Microwave Absorption Coatings for High-Temperature Radar
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Key Words:microwave absorption  high-temperature coating  microwave absorbing mechanism  structural design  absorbing agent  high-temperature stealth material
Author NameAffiliation
GAO Yu-yi 1 , LI Qian-hui 1 , HAN Qing-zhi 1 , XIAO Jie 1 , HE Wen-ting 1,2 , GUO Hong-bo 1,2 1. School of Materials Science and Engineering Beihang University 2. Key Laboratory of High-Temperature Structural Materials and Coatings (Ministry of Industry and Information Technology): Beijing 100191China 
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Abstract:In modern information warfare, detection and guidance technology develops rapidly. Among the detection signals, detection by radar microwave accounts for up to 60%, so the radar stealth capability of weapons and equipment is particularly important. With the performance improvement of the new generation military equipment, the service temperature of the hot components continues to rise, which puts forward more stringent requirements for high-temperature microwave absorbing coatings. In the high-temperature service environ‐ ment, some microwave absorbing materials have problems with oxidation and low curie temperature, which lead to the loss of absorbing performance. Therefore, microwave absorption materials for high-temperature applications mainly rely on dielectric loss and conductance loss mechanisms. Based on this, the paper discusses the research progress of microwave absorbing coatings materials including carbides, borides, oxides, metal materials, and MAX phase materials, and analyzes the advantages and problems of each material. Among them, oxide absorbing agents have good high-temperature stability, are easy to prepare, and have low costs. Their absorbing performance can be controlled by doping modification, making them more promising absorbing materials for future more stringent service environments. In addi‐ tion, the influence of coating structure design on expanding its microwave absorbing frequency band from the perspectives of gradient structure and metamaterial is discussed. Combined with the current research progress, it is proposed that the research and development of new materials, new structure design, and fabrication techniques suitable for material structures are the development direction of high- temperature microwave absorbing coatings.
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