The effect of exposure temperature and time on the diffusion rate of rare-earth oxides applied on silicon carbide fiber-reinforced SiC ceramic matrix composites (SiC/SiC CMCs) have been investigated. Knowledge on diffusion mechanism between the deposited rare-earth (RE) slurry and silica layer is necessary to understand the process governing EBCs formation and their properties. SEM/EDS analysis were used to study the effect of microstructure on diffusivity. The diffusion coefficient increases with increasing sintering temperature and time. The measured diffusion coefficients of the RE-coating into silica layer were in the order of 10−15-10-17 m2/s revealing an overall good adhesion on the SiC/SiC CMCs
Environmental barrier coatings (EBCs) are being developed for next-generation gas turbine engines to...
Carbon-fiber-reinforced silicon carbide composites (C/SiC) are promising materials for high-temperat...
Experimental data on diffusion of erbium and vanadium in porous and nonporous silicon carbide at 170...
Rare earth silicate environmental barrier coatings (EBCs) are state of the art for protecting SiC ce...
Rare-earth (RE) monosilicates are promising candidates as environmental barrier coating (EBC) materi...
International audienceThe development of titanium-based composites has been hindered largely because...
Silicon-based ceramic matrix composites are rapidly eroded by the high temperature water vapor that ...
Amorphous polymer-derived Si-C-N ceramics can be doped with different elements (Al, B etc.) through ...
Advanced high-temperature cooling applications may often require the elevated-temperature capability...
Environmental barrier coated SiC-SiC ceramic matrix composites (CMCs) systems will play a crucial ro...
A novel multi-layer diffusion couple was used to isolate the diffusion of strontium, europium and ce...
Yttrium mono- and di-silicates are excellent candidate materials for Environmental Barrier Coatings ...
Oxide ceramic Environmental Barrier Coatings (EBCs) have been developed to protect SiC/SiC surface f...
A metallic network has been embedded in a silicon carbide fiber– silicon carbide (SiC) matrix cerami...
Current state-of-the-art environmental barrier coatings (EBCs) for Si-based ceramics consist of thre...
Environmental barrier coatings (EBCs) are being developed for next-generation gas turbine engines to...
Carbon-fiber-reinforced silicon carbide composites (C/SiC) are promising materials for high-temperat...
Experimental data on diffusion of erbium and vanadium in porous and nonporous silicon carbide at 170...
Rare earth silicate environmental barrier coatings (EBCs) are state of the art for protecting SiC ce...
Rare-earth (RE) monosilicates are promising candidates as environmental barrier coating (EBC) materi...
International audienceThe development of titanium-based composites has been hindered largely because...
Silicon-based ceramic matrix composites are rapidly eroded by the high temperature water vapor that ...
Amorphous polymer-derived Si-C-N ceramics can be doped with different elements (Al, B etc.) through ...
Advanced high-temperature cooling applications may often require the elevated-temperature capability...
Environmental barrier coated SiC-SiC ceramic matrix composites (CMCs) systems will play a crucial ro...
A novel multi-layer diffusion couple was used to isolate the diffusion of strontium, europium and ce...
Yttrium mono- and di-silicates are excellent candidate materials for Environmental Barrier Coatings ...
Oxide ceramic Environmental Barrier Coatings (EBCs) have been developed to protect SiC/SiC surface f...
A metallic network has been embedded in a silicon carbide fiber– silicon carbide (SiC) matrix cerami...
Current state-of-the-art environmental barrier coatings (EBCs) for Si-based ceramics consist of thre...
Environmental barrier coatings (EBCs) are being developed for next-generation gas turbine engines to...
Carbon-fiber-reinforced silicon carbide composites (C/SiC) are promising materials for high-temperat...
Experimental data on diffusion of erbium and vanadium in porous and nonporous silicon carbide at 170...