Mullite photonic glasses with exceptional thermal stability for novel reflective thermal barrier coatings

被引:6
作者
Gomez-Gomez, Alberto [1 ]
Gomes, Diego Ribas [1 ]
Winhard, Benedikt F. [1 ]
Maragno, Laura G. [1 ]
Krekeler, Tobias [2 ]
Ritter, Martin [2 ]
Furlan, Kaline P. [1 ]
机构
[1] Hamburg Univ Technol, Inst Adv Ceram, Integrated Mat Syst Grp, D-21073 Hamburg, Germany
[2] Hamburg Univ Technol, Electron Microscopy Unit, D-21073 Hamburg, Germany
关键词
TAILORED MICROSTRUCTURE; RADIATION PROPERTIES; CORROSION BEHAVIOR; CONDUCTIVITY; ZIRCONIA; OPAL; TRANSFORMATION; DEPOSITION; STRENGTH; DESIGN;
D O I
10.1007/s10853-023-08844-2
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Thermal barrier coatings are essential materials systems for insulating and protecting substrates exposed to high temperatures. In such systems, the heat transfer has three possible paths: conduction, convection and irradiation. The higher the operating temperature, the more important it is to control or protect against the radiative component, since the radiative heat flux becomes non-negligible. The radiation can be controlled by the use of ceramic-based photonic nanostructures, namely photonic crystals and photonic glasses, creating so-called reflective thermal barrier coatings. In this work, mullite inverse photonic glasses (PhG) have been produced by thermally induced reaction on sol-gel-based silica structures coated with nanometric films of Al2O3 by atomic layer deposition. The conversion to mullite was carried out following a two-stage heat-treatment. The pre-annealing associated with the further mullite formation results in an excellent structural stability of these PhGs up to 1500 & DEG;C, being able to retain their high reflectivity in the near infrared range. Therefore, this structure can be considered for next-generation reflective thermal barrier coatings.
引用
收藏
页码:12993 / 13008
页数:16
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