The effect of water and water vapor on the lifetime of Ni-based superalloy samples coated with a typical thermal barrier coating system—b-(Ni,Pt)Al bond coat and yttria stabilized zirconia (YSZ) top coat deposited by electron beam physical vapor deposition (EB-PVD) was studied. Samples were thermally cycled to 1,150 C and subjected to a water-drop test in order to elucidate the effect of water vapor on thermal barrier coating (TBC) spallation. It was shown that the addition of water promotes spallation of TBC samples after a given number of cycles at 1,150 C. This threshold was found to be equal to 170 cycles for the present system. Systems based on b-NiAl bond coat or on Pt-rich c/c0 bond coat were also sensitive to the water-drop test. Mo...
The cyclic oxidation of NiCoCrAlYTa-base thermal barrier coating systems was investigated at 1100 °C...
International audienceTo understand the degradation of two thermal barrier coating (TBC) systems, we...
Thermal barrier coatings (TBCs) allow operation of structural components, such as turbine blades and...
International audienceThe effect of water and water vapor on the lifetime of Ni-based superalloy sam...
Delayed failure of TBCs is a widely observed laboratory phenomenon, although many of the early obser...
PVD TBC coatings were thermally cycled to near-failure at 1150 C. Normal failure occurred after 200 ...
Laboratory experiments were conducted to study the spallation behaviour of thermal barrier coatings ...
During service, TBC can suffer degradation by CMAS, FOD, erosion or spallation. Whereas the first th...
AbstractConventional two-layered thermal barrier coatings (TBCs) are prepared by electron beam physi...
While the water vapor content of the combustion gas in natural gas-fired land based turbines is ~10%...
Moisture-induced delayed spallation (MIDS) of protective alumina scales at room temperature is a wel...
A detailed understanding of failure mechanisms in thermal barrier coatings (TBCs) can help develop r...
Thermal barrier coatings (TBCs) have been widely used in gas turbine engines to protect the underlyi...
Reliable life prediction models for the durability of thermal barrier coatings require the identific...
Multilayer thermal barrier coating (TBC) systems typically consist of three layers of materials: A t...
The cyclic oxidation of NiCoCrAlYTa-base thermal barrier coating systems was investigated at 1100 °C...
International audienceTo understand the degradation of two thermal barrier coating (TBC) systems, we...
Thermal barrier coatings (TBCs) allow operation of structural components, such as turbine blades and...
International audienceThe effect of water and water vapor on the lifetime of Ni-based superalloy sam...
Delayed failure of TBCs is a widely observed laboratory phenomenon, although many of the early obser...
PVD TBC coatings were thermally cycled to near-failure at 1150 C. Normal failure occurred after 200 ...
Laboratory experiments were conducted to study the spallation behaviour of thermal barrier coatings ...
During service, TBC can suffer degradation by CMAS, FOD, erosion or spallation. Whereas the first th...
AbstractConventional two-layered thermal barrier coatings (TBCs) are prepared by electron beam physi...
While the water vapor content of the combustion gas in natural gas-fired land based turbines is ~10%...
Moisture-induced delayed spallation (MIDS) of protective alumina scales at room temperature is a wel...
A detailed understanding of failure mechanisms in thermal barrier coatings (TBCs) can help develop r...
Thermal barrier coatings (TBCs) have been widely used in gas turbine engines to protect the underlyi...
Reliable life prediction models for the durability of thermal barrier coatings require the identific...
Multilayer thermal barrier coating (TBC) systems typically consist of three layers of materials: A t...
The cyclic oxidation of NiCoCrAlYTa-base thermal barrier coating systems was investigated at 1100 °C...
International audienceTo understand the degradation of two thermal barrier coating (TBC) systems, we...
Thermal barrier coatings (TBCs) allow operation of structural components, such as turbine blades and...