Understanding the Enhanced Protective Mechanism of CoCrNiAlY–YSZ–LaMgAl11O19 Double-Ceramic Coating with Aluminum Plating

Author:

Xu Junfei,Wang Zhiguo,Hu Shuai,Feng Yongjun,Hu Suying,Chen Yongjun,Xie Zhiwen

Abstract

To understand the enhanced protection mechanism of CoCrNiAlY–YSZ–LaMgAl11O19 double-layer ceramic coating with aluminum plating, a finite element simulation method was used to simulate the distribution of thermal stress in the coating in all directions. The results show that in the air exposure of the un-aluminized coating, high temperature causes a large radial thermal stress on the surface of the LaMgAl11O19 (LMA) layer, and it increases with the increase in temperature, which is the main reason for the initiation of axial cracks. After arc aluminum plating, the aluminum plating layer effectively inhibited the volume shrinkage of the coating through good adhesion to the coating and internal diffusion; the thermal stress of the coating was considerably reduced; and the CoCrNiAlY–YSZ–LMA coating had an effective enhancement and protection effect. However, there was still a certain amount of shear thermal stress inside the LMA layer, the top of the crack, and the bottom of the crack. This thermal stress caused the initiation of radial microcracks in the LMA layer, which also becomes a risk point for the failure of the aluminum coating.

Funder

Southwest Institute of Technology and Engineering Cooperation fund

Publisher

MDPI AG

Subject

Materials Chemistry,Surfaces, Coatings and Films,Surfaces and Interfaces

Reference33 articles.

1. Edification of advanced foreign aeroengine technology;Li;Aeronaut. Manuf. Technol.,2013

2. Microstructure and mechanical properties of Ni-based superalloy prepared by electron beam physical vapor deposition;Li;Trans. Mater. Heat Treat.,2016

3. Summary of blade coatings for aero-engine and gas turbine;Cui;Therm. Spray Technol.,2019

4. Effects of porosity on thermal loadings of functionally graded Y2O3–ZrO2/NiCoCrAlY coatings

5. Progress of high-temperature protective coatings;Wang;Corros. Sci. Prot. Technol.,2013

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