Thermomechanical Properties Of Bilayer La2Zr2O7 Thermal Barrier Coatings

The Minerals, Metals and Materials Society
Xingye Guo Zhe Lu Yeon-Gil Jung Li Li James Knapp Jing Zhang
Organization:
The Minerals, Metals and Materials Society
Pages:
6
File Size:
237 KB
Publication Date:
Jan 1, 2016

Abstract

La2Zr2O7 is a promising thermal barrier coating material due to its low thermal conductivity and superior high temperature stability. In this work, Bilayer La2Zr2O7 and conventional 8 wt% yttria stabilized zirconia (8YSZ) coatings were deposited using plasma spray technique. Both singlelayer La2Zr2O7 and double-layer 8YSZ/La2Zr2O7 coating architectures were designed. Thermal cycling and thermal shock tests were used to evaluate coatings’ thermomechanical properties. All La2Zr2O7 coats were delaminated in the furnace cycle test in less than 20 cycles. This is because residual thermal stresses accumulated during thermal cycling. In the jet engine thermal shock (JETS) tests, the SCL La2Zr2O7 and DCL dense 8YSZ/La2Zr2O7 coatings were fully delaminated. In contrast, the DCL porous 8YSZ/La2Zr2O7 coating sample only partially delaminated on the edge. This is because of the porous 8YSZ layer provides strain compliance. The findings will help to propose efficient thermal barrier coating systems.
Citation

APA: Xingye Guo Zhe Lu Yeon-Gil Jung Li Li James Knapp Jing Zhang  (2016)  Thermomechanical Properties Of Bilayer La2Zr2O7 Thermal Barrier Coatings

MLA: Xingye Guo Zhe Lu Yeon-Gil Jung Li Li James Knapp Jing Zhang Thermomechanical Properties Of Bilayer La2Zr2O7 Thermal Barrier Coatings. The Minerals, Metals and Materials Society, 2016.

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