详细信息
Evolution of Microstructure, Thermophysical and Mechanical Properties and Wetting Behaviour of Plasma-Sprayed Yb2o3 and Y2o3 Co-Stabilized Zro2 Coatings During High-Temperature Exposure and Cmas Corrosion ( EI收录)
文献类型:期刊文献
英文题名:Evolution of Microstructure, Thermophysical and Mechanical Properties and Wetting Behaviour of Plasma-Sprayed Yb2o3 and Y2o3 Co-Stabilized Zro2 Coatings During High-Temperature Exposure and Cmas Corrosion
作者:Liu, Yangguang[1]; Zhang, Wenkang[1]; Wang, Weize[1,2]; Liu, Wei[1]; Yang, Ting[1]; Li, Kaibin[1]; Tang, Zhongxiang[1]; Liu, Chen[1]; Zhang, Chengcheng[3]
机构:[1] Key Laboratory of Pressure System and Safety, Ministry of Education, East China University of Science and Technology, Shanghai, 200237, China; [2] Shanghai Institute of Aircraft Mechanics and Control, Shanghai, 200092, China; [3] Aecc Commercial Aircraft Engine Co. Ltd., Shanghai, 200241, China
年份:2023
外文期刊名:SSRN
收录:EI(收录号:20230363302)
语种:英文
外文关键词:Alumina - Aluminum oxide - Elastic moduli - Hardness - Magnesium compounds - Microstructure - Phase transitions - Plasma spraying - Rare earths - Sprayed coatings - Thermal barrier coatings - Thermal conductivity - Wetting - Zirconia
摘要:Doping rare-earth elements has been regarded as one of the potential ways to enhance the comprehensive performance of thermal barrier coatings. In the study, the microstructure, thermophysical and mechanical properties and wetting behaviour of Yb2O3-Y2O3 co-stabilized ZrO2 (YbYSZ) were evaluated in detail as compared with Y2O3 stabilized ZrO2 (YSZ) counterpart. During high-temperature exposure and CMAS attack at 1300 ℃ × 32 h, the samples did not undergo phase transformation, while samples underwent phase transformation under CMAS corrosion. In the cross-section of CMAS penetration, YbYSZ penetration depth decreases by more than 20% compared to YSZ and the maximum degradation depth of YSZ and YbYSZ is 27.37 μm and 11.28 μm. Additionally, the thermal conductivity of YbYSZ is lower than that of YSZ. During high-temperature exposure, the hardness and elastic modulus of YSZ shows a more significant upward trend are than that of YbYSZ. During CMAS corrosion, the hardness and elastic modulus which offers a downward trend, are higher than those of YSZ. The samples were held at 1300 ℃ × 180 s, the contact angle difference between YSZ (59.2°) and YbYSZ (99.9°) is the largest. The YbYSZ coating exhibits better performance on resistibility to CMAS corrosion and high-temperature exposure. ? 2023, The Authors. All rights reserved.
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