Deposition of thermal barrier coatings using the solution precursor plasma spray process

被引:0
作者
Liangde Xie
Xinqing Ma
Eric H. Jordan
Nitin P. Padture
Danny T. Xiao
Maurice Gell
机构
[1] University of Connecticut,Department of Metallurgy and Materials Engineering, Institute of Materials Science
[2] Inframat Corporation,Department of Mechanical Engineering, Institute of Materials Science
[3] University of Connecticut,Department of Metallurgy and Materials Engineering, Institute of Materials Science
[4] University of Connecticut,undefined
来源
Journal of Materials Science | 2004年 / 39卷
关键词
Rapid Solidification; Plasma Spray; Thermal Barrier Coating; Plasma Torch; Spray Process;
D O I
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中图分类号
学科分类号
摘要
The solution-precursor plasma-spray (SPPS) process is capable of producing highly durable thermal barrier coatings. In an effort to improve the understanding of the deposition mechanisms in this novel process, a series of specific experiments, where the substrate is held stationary and the plasma torch is programmed to scan a single pass across the substrate, were conducted and the resulting deposits were carefully characterized. In addition to the deposition mechanisms identified previously in the stationary torch experiments, the deposition mechanisms of two other types of deposits, thin film and fine spherical particles, were identified in this study. The melting of inflight formed 7YSZ particles and their rapid solidification to form ultra-fine splats on the substrate was found to be the dominant deposition mechanism. The characterization of actual SPPS coatings confirmed that the various coating-deposition mechanisms identified in the model experiments occur in concert during the actual coating process. Adherent deposits (ultra-fine splats, deposits from gel-like precursor and film formed via chemical vapor deposition), unmelted particles (spherical particles, deposits from non-decomposed precursor) and porosity were estimated to constitute ∼65, ∼19 and ∼16 vol%, of the coating, respectively.
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页码:1639 / 1646
页数:7
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