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Microstructural evolution at interfaces of thermal barrier coatings during isothermal oxidation

机译:等温氧化过程中热阻挡涂层界面的微观结构演变

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摘要

Using transmission electron microscopy, we investigate microstructural evolution at interfaces of a plasma sprayed thermal barrier coating system with an yttria-stabilized zirconia top coat and a NiCrAlY bond coat after isothermal oxidation at 1100 degrees C for up to 50 h. Interestingly, thermally grown oxide (TGO) layers split into two sub-layers. In principle, one of the two sub-layers comprises a mixture of alpha-Al2O3, Cr2O3 and Ni(Al, Cr)(2)O-4, while the other one consists of dense alpha-Al2O3 and Cr2O3. Main microstructural evolution of the TGO layers follows a similar sequence that: original phases -> alpha-Al2O3 + Cr2O3 -> alpha-Al2O3 + Cr2O3 + Ni(Al, Cr)(2)O-4. Particularly, after 50 h oxidation, gamma-Ni and NiO form in the upper TGO sub-layer at the top coat-bond coat interface, and gamma-Ni and alpha-Cr form in the upper TGO sub-layer at the bond coat-substrate interface. Moreover, gamma-Al and beta-Ti precipitate at the TGO-substrate interface after 50 h oxidation. (C) 2016 Elsevier Ltd. All rights reserved.
机译:使用透射电子显微镜,我们研究了在1100℃下等温氧化后的氧化钇稳定的氧化锆顶涂层和赤晶粘合涂层的晶体喷涂热阻挡涂层系统的微观结构演变。有趣的是,热生长的氧化物(TGO)层分成两个亚层。原则上,两个子层中的一种包括α-Al 2 O 3,Cr 2 O 3和Ni(Al,Cr)(2)O-4的混合物,而另一个子层由致密α-Al2O3和Cr2O3组成。 TGO层的主要微观结构演化遵循类似的序列:原始阶段 - >α-Al2O3 + Cr2O3 - >α-Al2O3 + Cr2O3 + Ni(Al,Cr)(2)O-4。特别是,在顶层涂层涂层界面的上部TGO子层中50小时氧化,γ-Ni和NiO形式,在粘合涂层的上部TGO子层中形成γ-Ni和α-Cr形成 - 基板接口。此外,在50小时氧化后,γ-Al和β-Ti沉淀在TGO-底物界面处。 (c)2016 Elsevier Ltd.保留所有权利。

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