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Effect of Substrate Characteristics on Interdiffusion Coefficients of Ni and Al Atoms in beta-NiAl Phase of Aluminide Coatings

机译:基材特性对铝化物涂层β-NiAl相中Ni和Al原子互扩散系数的影响

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摘要

Interdiffusion coefficients at 950 deg C and 1050 deg C are calculated by Wagner analysis method as a function of composition of beta-NiAl phase. The beta-NiAl phase is formed by pack cementation on surface of superalloy Results of the calculation show that interdiffusion coefficients in beta-NiAl phase strongly depend on the compositions and vary over several orders of magnitude. Compared with the interdiffusion coefficients in the stoichiometric beta -NiAl phase, the interdiffusion coefficients in beta -NiAl phase formed on superalloy is obviously small, probably due to the composition, complicated microstructure and precipitates. However, it could be seen clearly that the shapes of the diffusivity curves are very simitar to each other. The similarity of the diffusion curves and the difference between interdiffusion coefficients imply that the compositions, microstructures and precipitates of superalloy have a distinctly adverse effect on the interdiffusion of Ni and Al atoms during aluminization, but do not change the essential characteristics of beta -NiAl phase.
机译:通过Wagner分析方法,根据β-NiAl相的组成来计算在950℃和1050℃下的互扩散系数。 β-NiAl相是通过堆积在高温合金表面上而形成的。计算结果表明,β-NiAl相的相互扩散系数在很大程度上取决于其成分,并在几个数量级上变化。与化学计量的β-NiAl相中的互扩散系数相比,超级合金上形成的β-NiAl相中的互扩散系数明显较小,这可能是由于其成分,复杂的微观结构和析出物所致。然而,可以清楚地看到,扩散率曲线的形状彼此非常相似。扩散曲线的相似性和互扩散系数之间的差异表明,高温合金的成分,微观结构和析出物对镀铝过程中Ni和Al原子的互扩散具有明显的不利影响,但不会改变β-NiAl相的基本特征。 。

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