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High temperature oxidation of EB-PVD TBCs on Pt-diffused single crystal Ni superalloy

机译:Pt扩散单晶镍高温合金对EB-PVD TBC的高温氧化

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The paper presents the results of high temperature oxidation of EB-PVD (Electron Beam Physical Vapor Deposition) TBCs (Thermal Barrier Coatings) deposited on a Pt-diffused second generation single crystal Ni-based superalloy. The Pt-diffused bond coating was obtained using a PVD (Physical Vapor Deposition) method applying a Closed Hollow Cathode (CHC) for the deposition of 5 mu m of Pt layer and subsequent annealing at 1140 degrees C for 2 h in vacuum. The TBC system was thermally cycled in 1.25 h cycles at 1100 degrees C for 730 h (584 cycles) until delamination of 10% of Yttria Stabilized Zirconia (YSZ) top coating. A non-destructive 3D optical scanning method was applied for a macroscopic examination of the YSZ delamination which allowed predicting and revealing of the regions of YSZ buckling prior to its spallation. The microstructure of the TBC system in the as-deposited and thermally cycled conditions was studied using FEG-SEM. The growth and evolution of the Thermally Grown Oxide (TGO) scale was performed using high resolution FEG-S/TEM and Focused Ion Beam (FIB) methods. The TGO in the as-deposited condition was found to consist of porous alpha-Al2O3 which grew to form distinctive dense and columnar grains with ionic diffusion of reactive elements (Hf and Y) through grain boundaries during high temperature exposure. Additionally the formation of nanometric NiAl2O4 islands as well as high volume oxides containing Ni was found to accelerate the spallation of the YSZ top coat. (C) 2014 Elsevier B.V. All rights reserved.
机译:本文介绍了沉积在Pt扩散的第二代单晶镍基高温合金上的EB-PVD(电子束物理气相沉积)TBC(热障涂层)的高温氧化结果。使用PVD(物理气相沉积)方法,使用密闭空心阴极(CHC)沉积5微米的Pt层,然后在1140摄氏度下真空退火2小时,可获得Pt扩散的粘合涂层。将TBC系统在1100摄氏度下以1.25小时的周期进行热循环730小时(584个周期),直到10%的氧化钇稳定氧化锆(YSZ)顶层涂层分层。将无损3D光学扫描方法应用于YSZ分层的宏观检查,该方法可以在散裂之前预测和揭示YSZ屈曲的区域。使用FEG-SEM研究了在沉积和热循环条件下TBC系统的微观结构。使用高分辨率FEG-S / TEM和聚焦离子束(FIB)方法进行热生长氧化物(TGO)标尺的生长和演变。发现在沉积状态下的TGO由多孔α-Al2O3组成,该α-Al2O3形成了独特的致密柱状晶粒,在高温暴露过程中,其反应性元素(Hf和Y)通过晶界发生离子扩散。另外,发现形成纳米NiAl 2 O 4岛以及含有Ni的高体积氧化物可加速YSZ面涂层的剥落。 (C)2014 Elsevier B.V.保留所有权利。

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