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Microstructure of Thermal Barrier Coatings (TBC's) obtained by using plasma spraying and VPA methods

机译:通过等离子喷涂和VPA方法获得的热障涂层(TBC)的微观结构

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Thermal Barrier Coatings are the main type of coatings used for protecting turbine blade surfaces and the surface of modern jet engines combustion chamber parts. Depending on the type of engine element, the coatings are produced as plasma-sprayed MeCrAlY bond-coats with a ceramic outer layer or as Pt-modified aluminide coatings with a ceramic EB-PVD-deposited layer. Currently, research is being conducted on the deposition of a new type of coatings consisting of bond-coats with mulitlayer structure. In the article, the results of the study on the obtainment of TBC's with multilayer structure are presented. To obtain the metallic bond-coat, the process of atmospheric plasma spraying and the out of pack aluminizing (VPA) method were combined. The coatings were deposited on the surface of Rene 80 nickel superalloy. The first layer of the coating was a plasma-sprayed MCrAlY bond-coat, on which a diffusion aluminide layer was deposited with out of pack method. On the bond-coat, a standard ceramic zirconium oxide (ZrO_2~*20Y_2O_3) layer was deposited. The microstructure analysis, was conducted, using light and SEM microscopy. The phase- and chemical composition analyses were done using EDS and XRD methods.
机译:热障涂层是用于保护涡轮机叶片表面和现代喷气发动机燃烧室零件表面的主要涂层类型。根据发动机元件的类型,可以将涂层制成具有陶瓷外层的等离子喷涂MeCrAlY粘结涂层,或者具有陶瓷EB-PVD沉积层的Pt改性铝化物涂层。当前,正在研究一种新型涂层的沉积,该新型涂层由具有多层结构的粘结涂层组成。本文介绍了获得多层结构TBC的研究结果。为了获得金属粘结涂层,将大气等离子喷涂工艺与外装镀铝(VPA)方法结合在一起。涂层沉积在Rene 80镍超合金的表面上。涂层的第一层是等离子喷涂的MCrAlY键合涂层,其外包装法沉积了扩散铝化物层。在粘结涂层上,沉积标准的陶瓷氧化锆(ZrO_2〜* 20Y_2O_3)层。使用光和SEM显微镜进行微观结构分析。使用EDS和XRD方法进行了相和化学成分分析。

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