The effects of interfacial roughness and oxide film thickness on thermally-induced stresses in plasma-sprayed thermal barrier coatings subjected to thermal cycling are investigated using the recently developed higher-order theory for functionally graded materials. The higher-order theory is shown to be a viable alternative to the finite-element approach, capable of modeling different interfacial roughness architectures in the presence of an aluminum oxide layer and capturing the high stress gradients that occur at the top coat/bond coat interface. The oxide layer thickness is demonstrated to have a substantially greater effect on the evolution of residual stresses than local variations in interfacial roughness. Further, the location of dela...
Thermal barrier coating (TBC) applications continue to increase as the need for greater engine effic...
The failure mechanisms of thermal barrier coatings (TBCs) subjected to a thermal load are still not ...
International audienceIn thermal barrier coating (TBC) systems, an oxide layer develops at high temp...
This report summarizes the results of a numerical investigation into the spallation mechanism in pla...
Adherence of plasma-sprayed thermal barrier coatings (TBC'S} is strongly dependent on mechanical int...
Adherence of plasma-sprayed thermal barrier coatings (TBC'S} is strongly dependent on mechanical int...
International audienceA Finite Element Model (FEM) was developed to evaluate the stresses induced by...
International audienceA Finite Element Model (FEM) was developed to evaluate the stresses induced by...
International audienceA Finite Element Model (FEM) was developed to evaluate the stresses induced by...
International audienceA finite element model (FEM) is developed to simulate the crack development in...
A thermal barrier system with plasma-sprayed thermal barrier coating (TBC) has been analyzed subject...
International audienceA finite element model (FEM) is developed to simulate the crack development in...
International audienceA finite element model (FEM) is developed to simulate the crack development in...
Thermal barrier coating (TBC) systems are highly advanced material systems and usually applied to in...
The failure of thermal barrier coatings (TBCs) during operation depends mainly on the thermal mismat...
Thermal barrier coating (TBC) applications continue to increase as the need for greater engine effic...
The failure mechanisms of thermal barrier coatings (TBCs) subjected to a thermal load are still not ...
International audienceIn thermal barrier coating (TBC) systems, an oxide layer develops at high temp...
This report summarizes the results of a numerical investigation into the spallation mechanism in pla...
Adherence of plasma-sprayed thermal barrier coatings (TBC'S} is strongly dependent on mechanical int...
Adherence of plasma-sprayed thermal barrier coatings (TBC'S} is strongly dependent on mechanical int...
International audienceA Finite Element Model (FEM) was developed to evaluate the stresses induced by...
International audienceA Finite Element Model (FEM) was developed to evaluate the stresses induced by...
International audienceA Finite Element Model (FEM) was developed to evaluate the stresses induced by...
International audienceA finite element model (FEM) is developed to simulate the crack development in...
A thermal barrier system with plasma-sprayed thermal barrier coating (TBC) has been analyzed subject...
International audienceA finite element model (FEM) is developed to simulate the crack development in...
International audienceA finite element model (FEM) is developed to simulate the crack development in...
Thermal barrier coating (TBC) systems are highly advanced material systems and usually applied to in...
The failure of thermal barrier coatings (TBCs) during operation depends mainly on the thermal mismat...
Thermal barrier coating (TBC) applications continue to increase as the need for greater engine effic...
The failure mechanisms of thermal barrier coatings (TBCs) subjected to a thermal load are still not ...
International audienceIn thermal barrier coating (TBC) systems, an oxide layer develops at high temp...