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A mechanistic understanding on rumpling of a NiCoCrAlY bond coat for thermal barrier coating applications

机译:机械理解用于热障涂层应用的NiCoCralY粘合层的褶皱

摘要

We present a series of experimental observations on surface rumpling of an initially flat NiCoCrAlY coating deposited on a Ni-based superalloy during cyclic oxidation at 1150 °C. The extent of rumpling of the coating depends on the thermal history, coating thickness and exposed atmosphere. While the coating surface progressively roughens with cyclic oxidation, the bulk NiCoCrAlY alloys with the same nominal composition are much less susceptible to rumpling under the same oxidation conditions. The coatings, especially the thin ones, experience substantial degradation (e.g. β to γ phase transformation) induced by oxidation and coating/subsatrate interdiffusion. The observations together suggest that rumpling of the NiCoCrAlY coating is driven by a combination of the lateral growth of the thermally grown oxide and coating/substrate thermal mismatch. The results in this work are further discussed and compared with the rumpling behaviour of a β-(Ni,Pt)Al bond coat reported in the literature to illustrate the importance of possible factors in governing the development of rumpling in the NiCoCrAlY coating.
机译:我们在1150°C的循环氧化过程中,对沉积在镍基高温合金上的最初平坦的NiCoCrAlY涂层的表面起皱提出了一系列实验观察。涂层起皱的程度取决于热历史,涂层厚度和暴露的气氛。尽管涂层表面随着循环氧化而逐渐变粗糙,但具有相同标称成分的块状NiCoCrAlY合金在相同氧化条件下不易起皱。涂层,尤其是薄的涂层,由于氧化和涂层/次饱和物的相互扩散而引起相当大的降解(例如,β至γ相变)。观察结果一起表明,NiCoCrAlY涂层的起皱是由热生长氧化物的横向生长和涂层/基材热失配的结合所驱动的。这项工作的结果将进一步讨论,并与文献报道的β-(Ni,Pt)Al粘结涂层的起皱行为进行比较,以说明可能的因素在控制NiCoCrAlY涂层起皱发展中的重要性。

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