γ-TiAl intermetallic alloys are very attractive materials for aerospace applications because of their excellent specific properties at high temperatures. Particularly, γ-TiAl alloys will replace the heavier Ni-based superalloys currently used for low pressure turbine (LPT) blades manufacturing. The main objective of this research work is to study the microstructural evolution during heat treatments in a Ti-45Al-2Nb-2Mn (at.%) + 0.8 (vol.%) TiB2 alloy (Ti4522XD). The alloy was initially processed through hot isostatic pressing (HIP) of prealloyed powder and centrifugal casting (CC). In order to generate a wide variety of microstructures, heat treatments were carried out at defined temperatures accordingly to the γ-TiAl phase diagram. Micros...
A type of advanced γ-TiAl-based alloy called β-solidifying γ-TiAl has elicited rema...
After almost three decades of intensive fundamental research and development activities intermetalli...
Intermetallic γ-TiAl based alloys are innovative lightweight structural high-temperature materials u...
γ-TiAl intermetallic alloys are very attractive materials for aerospace applications because of thei...
The effect of heat treatment on the microstructures and mechanical properties of a novel β-soli...
A gamma-TiAl intermetallic alloy, Ti-45Al-2Nb-2Mn(at.%)-0.8vol.%TiB₂, has been processed from gas at...
Heat treatment can influence the microstructure and mechanical properties, in order to homogenize th...
Gamma titanium aluminides are intermetallic alloys with great potential for aerospace applications i...
It has been widely reported that the microstructure refinement of TiAl alloys can be achieved by mas...
The mechanical properties of near β Ti-alloys are highly dependent on their microstructures, which o...
The effect of a two-step heat treatment on the microstructure and high-temperature tensile propertie...
High-temperature mechanical behavior and microstructure evolution during hot deformation of an as-ca...
The effect of a two-step heat treatment on the microstructure and high-temperature tensile propertie...
γ-TiAl alloys are well-suited for aerospace applications due to low density, high temperature streng...
The characteristics of hot deformation behavior and associated microstructural development of a cast...
A type of advanced γ-TiAl-based alloy called β-solidifying γ-TiAl has elicited rema...
After almost three decades of intensive fundamental research and development activities intermetalli...
Intermetallic γ-TiAl based alloys are innovative lightweight structural high-temperature materials u...
γ-TiAl intermetallic alloys are very attractive materials for aerospace applications because of thei...
The effect of heat treatment on the microstructures and mechanical properties of a novel β-soli...
A gamma-TiAl intermetallic alloy, Ti-45Al-2Nb-2Mn(at.%)-0.8vol.%TiB₂, has been processed from gas at...
Heat treatment can influence the microstructure and mechanical properties, in order to homogenize th...
Gamma titanium aluminides are intermetallic alloys with great potential for aerospace applications i...
It has been widely reported that the microstructure refinement of TiAl alloys can be achieved by mas...
The mechanical properties of near β Ti-alloys are highly dependent on their microstructures, which o...
The effect of a two-step heat treatment on the microstructure and high-temperature tensile propertie...
High-temperature mechanical behavior and microstructure evolution during hot deformation of an as-ca...
The effect of a two-step heat treatment on the microstructure and high-temperature tensile propertie...
γ-TiAl alloys are well-suited for aerospace applications due to low density, high temperature streng...
The characteristics of hot deformation behavior and associated microstructural development of a cast...
A type of advanced γ-TiAl-based alloy called β-solidifying γ-TiAl has elicited rema...
After almost three decades of intensive fundamental research and development activities intermetalli...
Intermetallic γ-TiAl based alloys are innovative lightweight structural high-temperature materials u...