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等离子蒸发沉积热障涂层抗CMAS附着研究进展 被引量:2

Research Status on Plasma Spray-Physical Vapor Deposited Thermal Barrier Coatings Against the Adhesion of Molten CMAS Deposits
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摘要 热障涂层是先进航空发动机核心热端部件高压涡轮叶片表面防护的关键技术。随着发动机服役温度的不断提高,一种主要化学成分为CaO-MgO-Al2O3-SiO2(简称CMAS)的环境沉积物对叶片的危害日益严重,不仅堵塞叶片表面气膜冷却孔,降低叶片冷却效率,而且导致热障涂层早期剥落失效,服役寿命大幅度降低。高温熔融CMAS在涂层表面的附着过程及防护方法是目前热障涂层研究领域的热点和难点。本文针对新型等离子蒸发沉积技术制备的热障涂层,梳理了近年来在热障涂层抗CMAS附着、渗入和腐蚀方面的最新研究成果,指出了涂层抗CMAS侵蚀研究的发展方向。 Due to the increasing demand for higher operating temperatures in gas turbine engines,a reliability problem has emerged on thermal barrier coatings(TBCs)by the attack of calcium-magnesium-alumino-silicate(CMAS)deposits.These contaminants yield glassy melts adhering to the TBC surface at high temperatures,followed by infiltrating and interacting into/with TBC,which result in its severe degradation and premature failure.The adhesion of molten CMAS and the protection methods are hot and difficult points in the field of thermal barrier coatings.In this paper,the latest research results on CMAS adhesion,infiltration and corrosion resistance of plasma spray-physical vapor deposited TBCs were reviewed.The approaches for developing corrosion-resistant TBCs were proposed.
作者 张宝鹏 于新民 刘伟 霍鹏飞 金鑫 Zhang Baopeng;Yu Xinmin;Liu Wei;Huo Pengfei;Jin Xin(Aerospace Institute of Advanced Materials&Processing Technology,Beijing 100074,China)
出处 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2020年第10期3646-3652,共7页 Rare Metal Materials and Engineering
关键词 等离子蒸发沉积 热障涂层 CMAS 氧化钇稳定氧化锆 附着 plasma spray-physical vapor deposition thermal barrier coatings CMAS YSZ adhesion
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