TiAl alloys are potential candidates for replacing conventional Ti-alloys in gas turbine applications in the relatively lower temperature sections, owing to their low density and excellent high temperature properties. However, their intolerable ambient temperature brittleness hinders their use in such applications. Recently, TiAl alloys with some room temperature ductility were developed through alloy development programmes using special production routes such as powder metallurgy. However, the room temperature brittleness of these alloys could not be overcome
TiAl alloys can be used in aircraft and high-performance vehicle engines owing to their structural s...
Solid state diffusion bonding of TiAl was carried out with different bonding parameters within the s...
Solid state diffusion bonding in conjunction with superplastic forming is a potential candidate to p...
TiAl alloys are potential candidates for replacing conventional Ti-alloys in gas turbine application...
Ti-alloys, particularly TiAl, are becoming attractive for the use in the production of high-temperat...
Challenging issues concerning energy efficiency and environmental politics requirenovel approaches t...
The need for more efficient gas turbines with lowered fuel consumption and thereby lowered emission ...
Intermetallic titanium aluminides have attracted considerable industrial interest for aero and autom...
As a kind of promising aerospace material, TiAl alloys need to withstand extreme conditions such as ...
The γ -TiAl based intermetallic alloys have received considerable attention as candidate materials f...
The lightweight γ titanium aluminide alloys offer good mechanical properties for gas turbine applica...
The active dislocation mechanisms responsible for the deformation process of two phase TiAl alloys h...
After almost three decades of intensive fundamental research and development activities intermetalli...
Intermetallic TiAl-based alloys represent an important class of high temperature structural material...
Gamma TiAl alloys are emerging as a pervasive structural material. Remarkable progresses have been m...
TiAl alloys can be used in aircraft and high-performance vehicle engines owing to their structural s...
Solid state diffusion bonding of TiAl was carried out with different bonding parameters within the s...
Solid state diffusion bonding in conjunction with superplastic forming is a potential candidate to p...
TiAl alloys are potential candidates for replacing conventional Ti-alloys in gas turbine application...
Ti-alloys, particularly TiAl, are becoming attractive for the use in the production of high-temperat...
Challenging issues concerning energy efficiency and environmental politics requirenovel approaches t...
The need for more efficient gas turbines with lowered fuel consumption and thereby lowered emission ...
Intermetallic titanium aluminides have attracted considerable industrial interest for aero and autom...
As a kind of promising aerospace material, TiAl alloys need to withstand extreme conditions such as ...
The γ -TiAl based intermetallic alloys have received considerable attention as candidate materials f...
The lightweight γ titanium aluminide alloys offer good mechanical properties for gas turbine applica...
The active dislocation mechanisms responsible for the deformation process of two phase TiAl alloys h...
After almost three decades of intensive fundamental research and development activities intermetalli...
Intermetallic TiAl-based alloys represent an important class of high temperature structural material...
Gamma TiAl alloys are emerging as a pervasive structural material. Remarkable progresses have been m...
TiAl alloys can be used in aircraft and high-performance vehicle engines owing to their structural s...
Solid state diffusion bonding of TiAl was carried out with different bonding parameters within the s...
Solid state diffusion bonding in conjunction with superplastic forming is a potential candidate to p...