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Microstructural changes and elemental diffusion of sputtered NiCrAlY coating on a Ni-base SC superalloy subjected to high temperature

机译:高温下Ni基SC超合金溅射NiCrAlY涂层的组织变化和元素扩散

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Microstructural changes and elemental diffusion of sputtered NiCrAlY coating on the Ni-base SC superalloy were investigated. Tests were conducted by exposing coated specimens both in vacuum and in still air at 1000℃. XRD and SEM were used to analyze phases and microstructures. EPMA was used to characterize the distribution of elements in the coating interdiffusion layers and substrates. It was found that the as-sputtered NiCrAlY coating showed homogeneous element distribution with abrupt change of constituent at the interface between the substrate and the coating. After vacuum heat treatment, microstructural and phase changes occurred in the coating because of interdiffiision between the substrate and the coating—an interdiffiision layer and two new phases emerged. After 200 h oxidation at 1000℃ in air, the interdiffusion layer thickened and a diffusion influenced layer emerged below the interdiffiision layer in the substrate. Some of the Al in the γ'-Ni_3Al phase was replaced by Ta, resulting in an increase of the lattice parameter a_0 of γ' phase.
机译:研究了Ni基SC超合金溅射NiCrAlY涂层的组织变化和元素扩散。通过在真空和静止空气中于1000℃下暴露涂层样品来进行测试。 XRD和SEM用于分析相和微观结构。 EPMA用于表征涂层互扩散层和基材中元素的分布。发现溅射的NiCrAlY涂层表现出均匀的元素分布,并且在基底和涂层之间的界面处成分突然改变。真空热处理后,由于基材和涂层之间的相互扩散,涂层中发生了微观结构和相变,即出现了一个相互扩散层和两个新相。在空气中1000℃下氧化200小时后,互扩散层变厚,并且扩散影响层出现在基材中的互扩散层下方。 Ta置换了γ'-Ni_3Al相中的一部分Al,导致γ'相的晶格参数a_0增加。

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