Article ID Journal Published Year Pages File Type
8028559 Surface and Coatings Technology 2013 38 Pages PDF
Abstract
The coating was deposited by Pd + Pt electroplating, followed by high activity vapor phase aluminizing at 1050 °C and pre-oxidation heat treatment in order to form an α-alumina TGO. The 7 wt.% yttria stabilized zirconia TBC was deposited using electron beam physical vapor deposition. Cyclic oxidation tests of the coating were performed at 1100 °C in 1 h cycles in laboratory air. The microstructure of the coatings in the as-deposited state as well as after cyclic oxidation test was studied using SEM. The evolution and phenomena occurring at the interface between the bond coating, thermally grown oxide and TBC during high temperature exposure were studied in detail using high resolution FEG-S/TEM. The samples for S/TEM analysis were prepared using FIB (Focused Ion Beam). The study is mostly focused on the growth of TGO during high temperature exposure and the overall performance of the Pd/Pt-modified aluminide coatings as a cost effective alternative to Pt-modified aluminide coatings commonly used as EB-PVD bond coats.
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Physical Sciences and Engineering Materials Science Nanotechnology
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