The last 30 years materials engineers have been under continual pressure to develop materials with a greater temperature potential or to produce configurations that can be effectively cooled or otherwise protected at elevated temperature conditions. Turbines and thrust chambers produce some of the harshest service conditions for materials which lead to the challenges engineers face in order to increase the efficiencies of current technologies due to the energy crisis that the world is facing. The key tasks for the future of gas turbines are to increase overall efficiencies to meet energy demands of a growing world population and reduce the harmful emissions to protect the environment. Airfoils or blades tend to be the limiting factor when i...
In the field of Aerospace Propulsion technology, material required to resist the maximum temperatur...
In the field of Aerospace Propulsion technology, material required to resist the maximum temperatur...
Objective is development of ultra-high efficient, environmentally superior, and cost-competitive gas...
The last 30 years materials engineers have been under continual pressure to develop materials with a...
The Department of Energy`s Advanced Turbine Systems (ATS) program is aimed at fostering the developm...
The aerospace industry strives to develop new methods of refining gas turbine engines by increasing ...
Thermal barrier coatings (TBC’s) are used to provide both thermal insulation and oxidation protectio...
Thin thermal barrier coatings for protecting aircraft turbine section airfoils are examined. The dis...
Ceramic thermal barrier coatings (TBCs) are receiving increased attention for advanced gas turbine e...
Thermal Barrier Coatings (TBC), provide thermal insulation and oxidation resistance in an environmen...
This technical paper addresses the challenges for maximizing the benefit of thermal barrier coatings...
Thermal barrier coatings (TBC’s) are used to provide both thermal insulation and oxidation protectio...
The potential of thermal barrier coatings for use in utility gas turbines was assessed. Pressurized ...
The Department of Energy's Advanced Turbine System (ATS) program is aimed at forecasting the develop...
Methods for applying thermal barrier coatings to the hot-gas side wall of rocket thrust chambers in ...
In the field of Aerospace Propulsion technology, material required to resist the maximum temperatur...
In the field of Aerospace Propulsion technology, material required to resist the maximum temperatur...
Objective is development of ultra-high efficient, environmentally superior, and cost-competitive gas...
The last 30 years materials engineers have been under continual pressure to develop materials with a...
The Department of Energy`s Advanced Turbine Systems (ATS) program is aimed at fostering the developm...
The aerospace industry strives to develop new methods of refining gas turbine engines by increasing ...
Thermal barrier coatings (TBC’s) are used to provide both thermal insulation and oxidation protectio...
Thin thermal barrier coatings for protecting aircraft turbine section airfoils are examined. The dis...
Ceramic thermal barrier coatings (TBCs) are receiving increased attention for advanced gas turbine e...
Thermal Barrier Coatings (TBC), provide thermal insulation and oxidation resistance in an environmen...
This technical paper addresses the challenges for maximizing the benefit of thermal barrier coatings...
Thermal barrier coatings (TBC’s) are used to provide both thermal insulation and oxidation protectio...
The potential of thermal barrier coatings for use in utility gas turbines was assessed. Pressurized ...
The Department of Energy's Advanced Turbine System (ATS) program is aimed at forecasting the develop...
Methods for applying thermal barrier coatings to the hot-gas side wall of rocket thrust chambers in ...
In the field of Aerospace Propulsion technology, material required to resist the maximum temperatur...
In the field of Aerospace Propulsion technology, material required to resist the maximum temperatur...
Objective is development of ultra-high efficient, environmentally superior, and cost-competitive gas...