Optimization of High Porosity Thermal Barrier Coatings Generated with a Porosity Former

被引:16
|
作者
Medricky, Jan [1 ]
Curry, Nicholas [2 ]
Pala, Zdenek [3 ]
Vilemova, Monika [3 ]
Chraska, Tomas [3 ]
Johansson, Jimmy [4 ]
Markocsan, Nicolaie [2 ]
机构
[1] Czech Tech Univ, CR-16635 Prague, Czech Republic
[2] Univ West, Trollhattan, Sweden
[3] Inst Plasma Phys AS CR, Prague, Czech Republic
[4] GKN Aerosp Engine Syst, Trollhattan, Darrasa, Sweden
关键词
gas turbines; high temperature application; porosity of coatings; stabilized zirconia; thermal barrier coatings (TBCs); CONDUCTIVITY; DYSPROSIA;
D O I
10.1007/s11666-014-0214-y
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Yttria-stabilized zirconia thermal barrier coatings are extensively used in turbine industry; however, increasing performance requirements have begun to make conventional air plasma sprayed coatings insufficient for future needs. Since the thermal conductivity of bulk material cannot be lowered easily; the design of highly porous coatings may be the most efficient way to achieve coatings with low thermal conductivity. Thus the approach of fabrication of coatings with a high porosity level based on plasma spraying of ceramic particles of dysprosia-stabilized zirconia mixed with polymer particles, has been tested. Both polymer and ceramic particles melt in plasma and after impact onto a substrate they form a coating. When the coating is subjected to heat treatment, polymer burns out and a complex structure of pores and cracks is formed. In order to obtain desired porosity level and microstructural features in coatings; a design of experiments, based on changes in spray distance, powder feeding rate, and plasma-forming atmosphere, was performed. Acquired coatings were evaluated for thermal conductivity and thermo-cyclic fatigue, and their morphology was assessed using scanning electron microscopy. It was shown that porosity level can be controlled by appropriate changes in spraying parameters.
引用
收藏
页码:622 / 628
页数:7
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