AbstractResidual stress evolution regularity in thermal barrier ceramic coatings (TBCs) under different cycles of thermal shock loading of 1100°C was investigated by the microscopic digital image correlation (DIC) and micro-Raman spectroscopy, respectively. The obtained results showed that, as the cycle number of the thermal shock loading increases, the evolution of the residual stress undergoes three distinct stages: a sharp increase, a gradual change, and a reduction. The extension stress near the TBC surface is fast transformed to compressive one through just one thermal cycle. After different thermal shock cycles with peak temperature of 1100°C, phase transformation in TBC does not happen, whereas the generation, development, evolution ...
Gas turbine materials exposed to extreme high temperature require protective coatings. To design rel...
Gas turbine materials exposed to extreme high temperature require protective coatings. To design rel...
Zirconia (ZrO2) stabilized with 8 wt.% Y2O3 is the most common material to be applied in thermal bar...
Residual stress evolution regularity in thermal barrier ceramic coatings (TBCs) under different cycl...
AbstractResidual stress evolution regularity in thermal barrier ceramic coatings (TBCs) under differ...
The residual stress of a ZrO_2-8%Y_2O_3 thermal barrier coating was determined as a function of ther...
The analysis on the residual stress producing in the cooling process of a thermal cycle in TBCS syst...
The residual stress distribution in plasma-sprayed zirconia thermal barrier coatings subjected to cy...
Thermal barrier coatings (TBCs) are widely employed to protect the turbine blades located in the hot...
In recent studies, interfacial toughness in thermal barrier coating (TBC) systems was measured by in...
Local residual stress in thermally grown oxide (TGO) layers is the primary cause of failure of therm...
The failure of thermal barrier coatings (TBCs) during operation depends mainly on the thermal mismat...
Residual stress arisen in fabrication process of Double-Ceramic-Layer Thermal Barrier Coating System...
Residual stress in the thermally grown oxide (TGO) in thermal barrier coatings (TBCs) was measured ...
Ceramic coatings are commonly used to fulfil some form of protection function, such as thermal prote...
Gas turbine materials exposed to extreme high temperature require protective coatings. To design rel...
Gas turbine materials exposed to extreme high temperature require protective coatings. To design rel...
Zirconia (ZrO2) stabilized with 8 wt.% Y2O3 is the most common material to be applied in thermal bar...
Residual stress evolution regularity in thermal barrier ceramic coatings (TBCs) under different cycl...
AbstractResidual stress evolution regularity in thermal barrier ceramic coatings (TBCs) under differ...
The residual stress of a ZrO_2-8%Y_2O_3 thermal barrier coating was determined as a function of ther...
The analysis on the residual stress producing in the cooling process of a thermal cycle in TBCS syst...
The residual stress distribution in plasma-sprayed zirconia thermal barrier coatings subjected to cy...
Thermal barrier coatings (TBCs) are widely employed to protect the turbine blades located in the hot...
In recent studies, interfacial toughness in thermal barrier coating (TBC) systems was measured by in...
Local residual stress in thermally grown oxide (TGO) layers is the primary cause of failure of therm...
The failure of thermal barrier coatings (TBCs) during operation depends mainly on the thermal mismat...
Residual stress arisen in fabrication process of Double-Ceramic-Layer Thermal Barrier Coating System...
Residual stress in the thermally grown oxide (TGO) in thermal barrier coatings (TBCs) was measured ...
Ceramic coatings are commonly used to fulfil some form of protection function, such as thermal prote...
Gas turbine materials exposed to extreme high temperature require protective coatings. To design rel...
Gas turbine materials exposed to extreme high temperature require protective coatings. To design rel...
Zirconia (ZrO2) stabilized with 8 wt.% Y2O3 is the most common material to be applied in thermal bar...