详细信息
Investigation of Sintering Mechanism for Novel-Structured Thermal Barrier Coatings with Embedded Micro-Agglomerated Particles ( EI收录)
文献类型:期刊文献
英文题名:Investigation of Sintering Mechanism for Novel-Structured Thermal Barrier Coatings with Embedded Micro-Agglomerated Particles
作者:Yang, Ting[1]; Wang, Weize[1]; Huang, Ji Bo[2]; Liu, Yang Guang[1]; Li, Kai Bin[1]; Yang, Zi Ning[1]; Wang, Yi Hao[1]; Yuan, Bao Han[1]; Zhang, Cheng Cheng[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] School of Materials Science and Engineering, South China University of Technology, Guangzhou, 510640, China; [3] AECC Commercial Aircraft Engine Co., Ltd., Shanghai, 200241, China
年份:2022
外文期刊名:SSRN
收录:EI(收录号:20220403114)
语种:英文
外文关键词:Agglomeration - Backscattering - Electron diffraction - Plasma jets - Plasma spraying - Sintering - Thermal barrier coatings - Thermal conductivity
摘要:A micro-agglomerated particle embedded thermal barrier coatings (TBCs) structure was prepared by an improved plasma spray process to withstand sintering-induced degradation of TBCs during service. In this study, the sintering resistance, thermophysical and mechanical properties of conventional and novel structured TBCs were systematically characterized. The results suggested that the thermal conductivity and sintering shrinkage of the novel-structured TBCs were approximately 30% lower than those of conventional APS TBCs. The elastic modulus of the novel-structured coating is only 32% of that of the conventional structure after thermal exposure at 1300 °C for 100h. The distinct structure of the coating is the main factor that influences its performance. The relationship between the structural evolution and residual strain of the coating was analysed using electron backscatter diffraction and transmission electron microscopy. Significant differences were observed in the sintering behaviour of the dense matrix and embedded particle regions in the coating. Some columnar grains near the intersplat pores in the dense matrix have similar lattice orientations, and they tend to connect and consequently heal the intersplat pores. The large pores between the agglomerated particles and non-oriented submicron-sized grains that constitute these particles are responsible for the sintering resistance of the coating. ? 2022, The Authors. All rights reserved.
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