Mullite is promising as a protective coating for silicon-based ceramics in aggressive high-temperature environments. Conventionally plasma-sprayed mullite on SiC tends to crack and debond on thermal cycling. It is shown that this behavior is due to the presence of amorphous mullite in the conventionally sprayed mullite. Heating the SiC substrate during the plasma spraying eliminated the amorphous phase and produced coatings with dramatically improved properties. The new coating exhibits excellent adherence and crack resistance under thermal cycling between room temperature and 1000 to 1400 C. Preliminary tests showed good resistance to Na2CO3-induced hot corrosion
Mullite-based systems have been considered as environmental barrier coatings (EBCs) for high tempera...
Environmental barrier coatings (EBC's) have been developed to protect silicon-carbide- (SiC) based c...
Plasma sprayed mullite/YSZ graded coatings on SiC substrates were examined as environmental barrier ...
Silicon carbide with a refractory oxide coating is potentially a very attractive ceramic system. It ...
Silicon-base ceramics are promising candidate materials for high temperature structural applications...
The material C/SiC (carbon fiber enhanced silicon carbide) shows, besides its outstanding positive p...
Current gas turbines have reached their maximum operating temperature due to the limitations imposed...
Commercially available mullite (3Al(2)O(3). 2SiO(2)) powders containing oxides of calcium and iron a...
Carbon-fiber-reinforced silicon carbide composites (C/SiC) are promising materials for high-temperat...
The ongoing development of environmental barrier coatings (EBCs) offers the prospect to implement th...
Silicon carbide ceramics are the leading candidate materials for use as heat exchangers in advanced ...
Mullite (Al6Si2O13) is the basis of efficient environmental barrier coatings (EBCs) for protecting S...
Yttria-stabilized zirconia (YSZ)-mullite multilayer architectures with compositional grading between...
Si-based ceramics (e.g., SiC and Si3N4) are known as promising high-temperature structural materials...
Plasma-sprayed mullite (3Al2O3 central dot 2SiO2) and mullite/yttria-stabilized-zirconia (YSZ) dual ...
Mullite-based systems have been considered as environmental barrier coatings (EBCs) for high tempera...
Environmental barrier coatings (EBC's) have been developed to protect silicon-carbide- (SiC) based c...
Plasma sprayed mullite/YSZ graded coatings on SiC substrates were examined as environmental barrier ...
Silicon carbide with a refractory oxide coating is potentially a very attractive ceramic system. It ...
Silicon-base ceramics are promising candidate materials for high temperature structural applications...
The material C/SiC (carbon fiber enhanced silicon carbide) shows, besides its outstanding positive p...
Current gas turbines have reached their maximum operating temperature due to the limitations imposed...
Commercially available mullite (3Al(2)O(3). 2SiO(2)) powders containing oxides of calcium and iron a...
Carbon-fiber-reinforced silicon carbide composites (C/SiC) are promising materials for high-temperat...
The ongoing development of environmental barrier coatings (EBCs) offers the prospect to implement th...
Silicon carbide ceramics are the leading candidate materials for use as heat exchangers in advanced ...
Mullite (Al6Si2O13) is the basis of efficient environmental barrier coatings (EBCs) for protecting S...
Yttria-stabilized zirconia (YSZ)-mullite multilayer architectures with compositional grading between...
Si-based ceramics (e.g., SiC and Si3N4) are known as promising high-temperature structural materials...
Plasma-sprayed mullite (3Al2O3 central dot 2SiO2) and mullite/yttria-stabilized-zirconia (YSZ) dual ...
Mullite-based systems have been considered as environmental barrier coatings (EBCs) for high tempera...
Environmental barrier coatings (EBC's) have been developed to protect silicon-carbide- (SiC) based c...
Plasma sprayed mullite/YSZ graded coatings on SiC substrates were examined as environmental barrier ...