The Effects of Induction Plasma Spheroidization on the Properties of Yttrium-Stabilized Zirconia Powders and the Performance of Corresponding Thermal Barrier Coatings for Gas Turbine Engine Applications

Author:

Peng Haoran123,Yu Yueguang14,Dong Jianxin1,Shi Tianjie2,Yuan Kang23,Yan Zheng23ORCID,Bai Botian2

Affiliation:

1. School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, China

2. BGRIMM Technology Group, Beijing 100160, China

3. BGRIMM Advanced Materials Science & Technology Co., Ltd., Beijing 102206, China

4. China Iron & Steel Research Institute Group, Beijing 100081, China

Abstract

To modify the structure of thermal barrier coatings and improve their high-temperature resistance, induction plasma spheroidization (IPS) technology was applied to regulate the structure of YSZ powders in this study. The surface morphology, particle size distribution, phase composition, and internal microstructure of the conventional agglomerated and spheroidized powders were characterized using scanning electron microscopy and focused ion beam analysis methods. The results showed that the microstructure of the powders presented uneven evolution in the induction plasma stream. Due to the existence of the temperature gradient along the radial direction of the powders, the IPS powders consisted of outer dense shells and internal porous cores. The mechanical property of such shell–core structure was analyzed by using the finite elemental simulation method. In addition, coatings were prepared using the IPS powders and the agglomerated powders. The IPS coating showed improved water-cooling thermal cycling resistance compared to the conventional coating.

Funder

National Key Research and Development Program of China

Publisher

MDPI AG

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