Effect of Y2O3 stabilized ZrO2 coating with tri-model structure on bi-layered thermally grown oxide evolution in nano thermal barrier coating systems at elevated temperatures

被引:1
|
作者
Mohammadreza Daroonparvar [1 ]
Muhamad Azizi Mat Yajid [1 ]
Noordin Mohd Yusof [1 ]
Hamid Reza Bakhsheshi-Rad [1 ]
Z.Valefi [2 ]
Esah Hamzah [1 ]
机构
[1] Department of Materials, Manufacturing and Industrial Engineering, Faculty of Mechanical Engineering, Universiti Teknologi Malaysia
[2] School of Metallurgy and Materials, College of Engineering, University of Tehran
关键词
spinels; oxidation; three stages TGO growth; pre-heat treatment; rare earths;
D O I
暂无
中图分类号
TG174.44 [金属复层保护];
学科分类号
080503 ;
摘要
Bi-layered thermally grown oxide(TGO) layer plays a major role in the spallation of Y2 O3 stabilized ZrO2(YSZ) layer form the bond coat in the thermal barrier coating(TBC) systems during oxidation. On the other hand, bi-layered TGO formation and growth in the TBC systems with nanostructured YSZ have not been deeply investigated during cyclic oxidation. Hence, Inconel 738/NiCrAlY/normal YSZ and Inconel 738/NiCrAlY/nano YSZ systems were pre-oxidized at 1000 °C and then subjected to cyclic oxidation at 1150 °C. According to microstructural observations, nanostructured YSZ layer over the bond coat should have less micro-cracks and pinholes, due to the compactness of the nanostructure and the presence of nano zones that resulted in lower O infiltration into the nanothermal barrier coating system, formation of thinner and nearly continuous mono-layered thermally grown oxide on the bond coat during pre-oxidation, lower spinels formation at the Al2 O3 /YSZ interface and finally, reduction of bi-layered thermally grown oxide thickness during cyclic oxidation. It was found that pre-heat treatment and particularly coating microstructure could influence microstructural evolution(bi-layered TGO thickness) and durability of thermal barrier coating systems during cyclic oxidation.
引用
收藏
页码:57 / 77
页数:21
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