杨文,安涛涛,王江波,等. 激光熔覆高熵合金涂层高温抗氧化性能研究进展[J]. 南昌航空大学学报(自然科学版),2026,40(1):72-82,98. doi: 10.3969/j.issn.2096-8566.2026.01.008
引用本文: 杨文,安涛涛,王江波,等. 激光熔覆高熵合金涂层高温抗氧化性能研究进展[J]. 南昌航空大学学报(自然科学版),2026,40(1):72-82,98. doi: 10.3969/j.issn.2096-8566.2026.01.008
YANG Wen,AN Taotao,WANG Jiangbo,et al. Research progress on high-temperature oxidation resistance of laser-cladded high-entropy alloy coatings[J]. Journal of Nanchang Hangkong University (Natural Sciences),2026,40(1):72-82,98. doi: 10.3969/j.issn.2096-8566.2026.01.008
Citation: YANG Wen,AN Taotao,WANG Jiangbo,et al. Research progress on high-temperature oxidation resistance of laser-cladded high-entropy alloy coatings[J]. Journal of Nanchang Hangkong University (Natural Sciences),2026,40(1):72-82,98. doi: 10.3969/j.issn.2096-8566.2026.01.008

激光熔覆高熵合金涂层高温抗氧化性能研究进展

Research Progress on High-Temperature Oxidation Resistance of Laser-Cladded High-Entropy Alloy Coatings

  • 摘要: 在航空航天及核电领域,传统热防护涂层在极端工况下的性能已达到瓶颈,通过激光熔覆所制备的高熵合金凭借其出色的性能逐渐成为高温防护涂层材料的最新选择。对于高温防护涂层,氧化剥落是最常见的失效形式,涂层抗氧化性能的强弱决定了其实际寿命长短,本文系统综述了激光熔覆高熵合金涂层在高温抗氧化性能领域的最新研究进展,探讨了高熵合金涂层通过添加抗氧化元素、陶瓷颗粒和稀土氧化物实现高温抗氧化性能提升的微观机制,并对未来抗氧化性激光熔覆高熵合金涂层体系的开发、性能的优化及应用进行了展望。

     

    Abstract: In aerospace and nuclear power applications, the performance of conventional thermal protection coatings under extreme service conditions has encountered limitations. High-entropy alloys prepared by laser cladding have emerged as a promising candidate for high-temperature protective coatings owing to their outstanding comprehensive properties. For such coatings, oxidation-induced spallation constitutes the most prevalent failure mode, and their oxidation resistance plays a decisive role in determining actual service life. This paper systematically reviews recent advances in laser-cladded high-entropy alloy coatings for high-temperature oxidation resistance. The intrinsic micro-mechanisms responsible for the enhanced oxidation resistance of high-entropy alloy coatings via the addition of antioxidant elements, ceramic particles, and rare-earth oxides are analyzed in detail. Furthermore, prospects for the development, performance optimization, and future applications of oxidation-resistant laser-cladded high-entropy alloy coating systems are presented.

     

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