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Synthesis and Oxidation Behavior of Nanocrystalline MCrAlY Bond Coatings

机译:纳米晶MCrAlY键涂层的合成及氧化行为

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Thermal barrier coating systems protect turbine blades against high-temperature corrosion and oxidation. They consist of a metal bond coat (MCrAlY, M = Ni, Co) and a ceramic top layer (ZrO{sub}2/Y{sub}2O{sub}3). In this work, the oxidation behavior of conventional and nanostructured high-velocity oxyfuel (HVOF) NiCrAlY coatings has been compared. Commercially available NiCrAlY powder was mechanically cryomilled and HVOF sprayed on a nickel alloy foil to form a nanocrystalline coating. Freestanding bodies of conventional and nanostructured HVOF NiCrAlY coatings were oxidized at 1000℃ for different time periods to form the thermally grown oxide layer. The experiments show an improvement in oxidation resistance in the nanostructured coating when compared with that of the conventional one. The observed behavior is a result of the formation of a continuous Al{sub}2O{sub}3 layer on the surface of the nanostructured HVOF NiCrAlY coating. This layer protects the coating from further oxidation and avoids the formation of mixed oxide protrusions present in the conventional coating.
机译:隔热涂层系统可保护涡轮机叶片免受高温腐蚀和氧化。它们由金属结合涂层(MCrAlY,M = Ni,Co)和陶瓷顶层(ZrO {sub} 2 / Y {sub} 2O {sub} 3)组成。在这项工作中,已经比较了传统的和纳米结构的高速含氧燃料(HVOF)NiCrAlY涂层的氧化行为。将市售的NiCrAlY粉末进行机械低温研磨,然后将HVOF喷涂在镍合金箔上以形成纳米晶体涂层。常规和纳米结构的HVOF NiCrAlY涂层的独立体在1000℃下氧化不同时间,以形成热生长的氧化物层。实验表明,与常规涂层相比,纳米结构涂层的抗氧化性有所提高。观察到的行为是在纳米结构的HVOF NiCrAlY涂层的表面上形成连续的Al {sub} 2O {sub} 3层的结果。该层保护涂层免受进一步的氧化,并避免了常规涂层中存在的混合氧化物突起的形成。

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