Science and Technology of Thermal Barrier Coatings
English[eng]
degradation||high mechanical fatigue||hot gas path components||gas turbine lifetime||gas turbine blade||ANNs||passive methods||building energy||internal covering||thermal barrier coating (TBC)||BaLa2Ti3O10||molten salt corrosion||corrosion mechanisms||crack healing||encapsulation||healing agent||thermal barrier coating||thermal durability||cyclic thermal fatigue||crack growth||initial crack length||failure||hydrogenated amorphous silicon films||high temperature oxidation||super-low friction||plasma spray–physical vapor deposition||thermal stability||thermal barrier coatings||bond coat species||electron beam-physical vapor deposition||cyclic thermal exposure||plasma spraying||SrZrO3||TBC||CMAS||luminescence||high temperature wear behavior||dry sliding wear||CoNiCrAlY||detonation gun (D-gun)||supersonic plasma spraying (SSPS)