Next generation fuel-efficient jet engines are running hotter presenting a structural challenge for the exhaust systems and structures adjacent to the engines. A conventional and affordable titanium alloy with superior oxidation resistance provides significant weight reductions and associated cost savings by eliminating the need for high density material systems such as nickel-base superalloys for service temperatures in between current titanium and nickel, enabling major technology advancement in high temperature aerospace applications. This paper presents an overview of Arconic’s engineered material ARCONIC-THORTM to address the needs of future aerospace systems
In order to limit the ecological impact of air traffic and its operating costs, the aeronautical ind...
In order to reduce the environmental impact of air travel, it is desirable that the efficiencies of ...
The paper deals with the results of research of Ti-Al-N based thin heat resistant ion-plasma coating...
Next generation fuel-efficient jet engines are running hotter presenting a structural challenge for ...
The aeroengine and airframe applications of titanium alloys are often limited by their insufficient ...
The aeroengine and airframe applications of titanium alloys are often limited by their insufficient ...
The aeroengine and airframe applications of titanium alloys are often limited by their insufficient ...
The attractive combination of strength and low density has resulted in titanium alloys covering 15 t...
The attractive combination of strength and low density has resulted in titanium alloys covering 15 t...
A superalloy, or high-performance alloy, is an alloy able to withstand extreme temperatures that wou...
The titanium aluminide family was selected as a promising material for the next generation of aircra...
The development of high-temperature titanium alloys has contributed significantly to the spectacular...
The development of high-temperature titanium alloys has contributed significantly to the spectacular...
The development of high-temperature titanium alloys has contributed significantly to the spectacular...
The development of high-temperature titanium alloys has contributed significantly to the spectacular...
In order to limit the ecological impact of air traffic and its operating costs, the aeronautical ind...
In order to reduce the environmental impact of air travel, it is desirable that the efficiencies of ...
The paper deals with the results of research of Ti-Al-N based thin heat resistant ion-plasma coating...
Next generation fuel-efficient jet engines are running hotter presenting a structural challenge for ...
The aeroengine and airframe applications of titanium alloys are often limited by their insufficient ...
The aeroengine and airframe applications of titanium alloys are often limited by their insufficient ...
The aeroengine and airframe applications of titanium alloys are often limited by their insufficient ...
The attractive combination of strength and low density has resulted in titanium alloys covering 15 t...
The attractive combination of strength and low density has resulted in titanium alloys covering 15 t...
A superalloy, or high-performance alloy, is an alloy able to withstand extreme temperatures that wou...
The titanium aluminide family was selected as a promising material for the next generation of aircra...
The development of high-temperature titanium alloys has contributed significantly to the spectacular...
The development of high-temperature titanium alloys has contributed significantly to the spectacular...
The development of high-temperature titanium alloys has contributed significantly to the spectacular...
The development of high-temperature titanium alloys has contributed significantly to the spectacular...
In order to limit the ecological impact of air traffic and its operating costs, the aeronautical ind...
In order to reduce the environmental impact of air travel, it is desirable that the efficiencies of ...
The paper deals with the results of research of Ti-Al-N based thin heat resistant ion-plasma coating...