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Rear Earth Oxide Multilayer Deposited by Plasma Spray-Physical Vapor Deposition for Envisaged Application as Thermal/Environmental Barrier Coating

机译:以等离子体喷雾物理气相沉积沉积后地球氧化物多层,以设想应用作为热/环境屏障涂层

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SiC fiber-reinforced SiC ceramic matrix composites (SiCf/SiC CMCs) are being increasingly used in the hot sections of gas turbines because of their light weight and mechanical properties at high temperatures. The objective of this investigation was the development of a thermal/environmental barrier coating (T/EBC) composite coating system consisting of an environmental barrier coating (EBC) to protect the ceramic matrix composites from chemical attack and a thermal barrier coating (TBC) that insulates and reduces the ceramic matrix composites substrate temperature for increased lifetime. In this paper, a plasma spray-physical vapor deposition (PS-PVD) method was used to prepare multilayer Si–HfO2/Yb2Si2O7/Yb2SiO5/Gd2Zr2O7 composite coatings on the surface of SiCf/SiC ceramic matrix composites. The purpose of this study is to develop a coating with resistance to high temperatures and chemical attack. Different process parameters are adopted, and their influence on the microstructure characteristics of the coating is discussed. The water quenching thermal cycle of the coating at high temperatures was tested. The results show that the structure of the thermal/environmental barrier composite coating changes after water quenching because point defects and dislocations appear in the Gd2Zr2O7 and Yb2SiO5 coatings. A phase transition was found to occur in the Yb2SiO5 and Yb2Si2O7 coatings. The failure mechanism of the T/EBC composite coating is mainly spalling when the top layer penetrates cracks and cracking occurs in the interface of the Si–HfO2/Yb2Si2O7 coating.
机译:SiC纤维增强的SiC陶瓷基质复合材料(SICF / SiC CMC)越来越多地用于燃气轮机的热部分,因为它们在高温下的重量轻和机械性能。本研究的目的是开发由环境屏障涂层(EBC)组成的热/环境屏障涂层(T / EBC)复合涂层系统,以保护陶瓷基质复合材料免受化学攻击和热障涂层(TBC)绝缘并降低陶瓷基质复合材料的衬底温度,以增加寿命。本文采用等离子体喷雾物理气相沉积(PS-PVD)方法在SICF / SiC陶瓷基复合材料表面上制备多层Si-HfO 2 / Yb2SI2O7 / YB2SIO5 / Gd2 Zr2O7复合涂层。本研究的目的是开发具有耐高温和化学侵蚀的涂层。采用不同的工艺参数,讨论了它们对涂层的微观结构特性的影响。测试了高温下涂层的水猝灭热循环。结果表明,热/环境屏障复合涂层的结构在水猝灭后发生变化,因为点缺陷和脱位出现在GD2ZR2O7和YB2SIO5涂层中。发现相转变发生在YB2SiO5和YB2SI2O7涂层中。当顶层穿透裂缝和裂化时,T / EBC复合涂层的破坏机理主要剥落在Si-HFO2 / YB2SI2O7涂层的界面中发生。

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