Thermal cycling behavior and interfacial stability in thick thermal barrier coatings

  • Lee, Pyung-Ho
  • Lee, Sang-Yup
  • Kwon, Jae-Young
  • Myoung, Sang-Won
  • Lee, Je-Hyun
  • ... Paik, Ungyu
  • 외 2명
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초록

The thermal cycling behavior of thermal barrier coatings (TBCs), which were prepared by two different air-plasma spray (APS) guns of 9 MB and TriplexPro (TM)-200, was investigated to understand the effects of the microstructure on the interfacial stability and fracture behavior of TBCs. The porosities of the top coats could be controlled by changing the gun, showing porosity of about 15% using the 9 MB and 19% using the TriplexPro (TM)-200, which decreased slightly with thermal exposure. Defects, such as interlamellar cracks, vertical cracks, and intrasplat cracks, were freshly produced in both TBCs after thermal exposure, showing delamination in the case of 2000 mu m TBCs prepared using the TriplexPro (TM)-200. The adhesive strength values of TBCs with 600 and 2000 mu m thicknesses were about 8 and 6 MPa, respectively, indicating that the adhesive strength values of TBCs were affected by the coating thickness, independent of the gun. The hardness values increased after thermal exposure, and the TBCs prepared using the TriplexPro (TM)-200 showed higher values than those prepared using the 9 MB for both thicknesses. The toughness values were not dependent on the gun, only showing an effect from coating thickness. The increase in coating thickness enhanced the densification, resulting in higher hardness and toughness values, and the microstructure could be controlled by changing the gun.

키워드

Thermal barrier coatingThick coatingMicrostructureThermal cycling behaviorMechanical propertySpray gunCoatingsCracksHardnessMechanical propertiesMicrostructurePlasma sprayingSpray gunsStrengthening (metal)Thermal cyclingThickness measurementAdhesive strengthAir-plasmaCoating thicknessFracture behaviorHardness valuesInterfacial stabilitiesThermal barrierThermal cycling behaviorThermal exposureThick coatingsTop-coatsVertical crackThermal barrier coatings
제목
Thermal cycling behavior and interfacial stability in thick thermal barrier coatings
저자
Lee, Pyung-HoLee, Sang-YupKwon, Jae-YoungMyoung, Sang-WonLee, Je-HyunJung, Yeon-GilCho, HyunPaik, Ungyu
DOI
10.1016/j.surfcoat.2010.08.062
발행일
2010-11
유형
Article; Proceedings Paper
저널명
Surface and Coatings Technology
205
5
페이지
1250 ~ 1255