Effect of Suspension Plasma-Sprayed YSZ Columnar Microstructure and Bond Coat Surface Preparation on Thermal Barrier Coating Properties

被引:62
|
作者
Bernard, Benjamin [1 ]
Quet, Aurelie [2 ]
Bianchi, Luc [3 ]
Schick, Vincent [4 ]
Joulia, Aurelien [3 ]
Malie, Andre [5 ]
Remy, Benjamin [4 ]
机构
[1] Safran Tech, Plateforme Aubes Turbines Avancees, 171 Blvd Valmy, F-92700 Colombes, France
[2] CEA DAM, BP 16, F-37260 Monts, France
[3] Safran Tech, Pole Mat & Proc, Rue Jeunes Bois,CS 80112, F-78772 Magny Les Hameaux, France
[4] LEMTA Univ Lorraine, 2 Ave Foret Haye,BP 160, F-54504 Vandoeuvre Les Nancy, France
[5] Safran Aircraft Engines, Rue Maryse Bastie,BP 129, F-86101 Chatellerault, France
关键词
columnar structure; lifetime; suspension plasma spraying; thermal barrier coating; thermal conductivity; YSZ; STABILIZED ZIRCONIA; OXIDATION BEHAVIOR; ABSORPTION-COEFFICIENTS; CONDUCTIVITY; PARAMETERS; PVD; PERFORMANCE; SCATTERING; LANTHANUM; LIFETIME;
D O I
10.1007/s11666-017-0584-z
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Suspension plasma spraying (SPS) is identified as promising for the enhancement of thermal barrier coating (TBC) systems used in gas turbines. Particularly, the emerging columnar microstructure enabled by the SPS process is likely to bring about an interesting TBC lifetime. At the same time, the SPS process opens the way to a decrease in thermal conductivity, one of the main issues for the next generation of gas turbines, compared to the state-of-the-art deposition technique, so-called electron beam physical vapor deposition (EB-PVD). In this paper, yttria-stabilized zirconia (YSZ) coatings presenting columnar structures, performed using both SPS and EB-PVD processes, were studied. Depending on the columnar microstructure readily adaptable in the SPS process, low thermal conductivities can be obtained. At 1100 A degrees C, a decrease from 1.3 W m(-1) K-1 for EB-PVD YSZ coatings to about 0.7 W m(-1) K-1 for SPS coatings was shown. The higher content of porosity in the case of SPS coatings increases the thermal resistance through the thickness and decreases thermal conductivity. The lifetime of SPS YSZ coatings was studied by isothermal cyclic tests, showing equivalent or even higher performances compared to EB-PVD ones. Tests were performed using classical bond coats used for EB-PVD TBC coatings. Thermal cyclic fatigue performance of the best SPS coating reached 1000 cycles to failure on AM1 substrates with a beta-(Ni,Pt)Al bond coat. Tests were also performed on AM1 substrates with a Pt-diffused gamma-Ni/gamma'-Ni3Al bond coat for which more than 2000 cycles to failure were observed for columnar SPS YSZ coatings. The high thermal compliance offered by both the columnar structure and the porosity allowed the reaching of a high lifetime, promising for a TBC application.
引用
收藏
页码:1025 / 1037
页数:13
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