Progress on high-temperature protective coatings for aero-engines

热障涂层 腐蚀 工作温度 航空发动机 材料科学 高温腐蚀 涂层 陶瓷 复合材料 机械工程 工程类 电气工程
作者
Lei Guo,Wenting He,Wenbo Chen,Zhaolu Xue,Jian He,Yiqian Guo,Yang Wu,Lihua Gao,Dongqing Li,Zhao Zhang,Liangliang Wei,Yuyi Gao,Tiehao Zhang,Qiao Jiao,Qianhui Li,Hongbo Guo
标识
DOI:10.1007/s44251-023-00005-6
摘要

Abstract Aero-engine is a key part of aircraft, the operating temperature of which is being pushed to unprecedented levels for higher engine efficiency and performance. To accomplish higher gas-inlet temperature of aero-engines, applying thermal barrier coatings (TBCs) on hot-section metallic components, or even replacing some of the metallic components in aero-engines with ceramic-matrix composites (CMCs) and applying environmental-barrier coatings (EBCs) on them, are effective methods and have been widely accepted. On the other hand, increasing aero-engines operating temperature causes the aircraft more easily be detected, thus stealth coatings are necessary for engines. Except the hottest part in aero-engines, other parts may not need TBCs or EBCs due to the relatively low operating temperature, but they still need protection from oxidation and corrosion. Hence, corrosion-resistant coatings are essential. In this paper, the latest progress of the above high-temperature protective coatings, i.e., TBCs, EBCs, stealth coatings and corrosion-resistant coatings is reviewed, mainly including their materials, fabrication technologies and performance. In addition, due to the harsh operating environment, these protective coatings face many threats such as calcia-magnesia-aluminosilicates (CMAS) attack, causing premature failure of the coatings, which is also concerned in this paper. The work would provide a comprehensive understanding on the high-temperature protective coatings in aero-engines and guidance for developing advanced protective coatings for next-generation aero-engines.
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