Polysynthetically-twinned titanium aluminide (PST-TiAl), a fully lamellar γ-TiAl+α2- Ti3Al dual-phase alloy, is under evaluation for applications in rotary components in aircraft and automobile industries due to its high specific strength, and a high strength-retention capability at elevated-temperatures. However, the low ductility at room- to mid-high temperatures of the material hinders its application. Additions of certain tertiary elements to the binary TiAl system appear to improve the ductility at room- to mid-high temperatures, thus a balance among strength, ductility, and fracture toughness can be expected. In this article, segregation of tertiary elements to the lamellar interfaces is investigated. Single crystals of a TiAl with 0....
The role of various interfaces in deformation and fracture behavior of two phase TiAl-Ti{sub 3}Al al...
Special ultrafine fully lamellar microstructures have been found recently in {gamma}-TiAl alloys wit...
The microstructure and phase composition of Al/Ti/Al interfaces with respect to theirlocalization we...
Polysynthetically-twinned titanium aluminide (PST-TiAl), a fully lamellar γ-TiAl+α2- Ti3Al dual-phas...
Fully lamellar gamma titanium aluminides are very promising materials for aerospace applications, du...
Diffusion couples of pure Ti and polysynthetically twinned (PST) TiAl (49.3 at.% Al) were prepared b...
Detailed microstructure characterisation and in-situ micropillar compression were coupled with cryst...
Motivated by the great potential applications of gamma titanium aluminide based alloys and the impor...
Interdiffusion in multi-phase diffusion couples of polycrystalline Ti and polysynthetically twinned ...
The α/β interface in Ti-6Al-2Sn-4Zr-6Mo (Ti-6246) was investigated via center of symmetry analysis, ...
The α/β interface in Ti-6Al-2Sn-4Zr-6Mo (Ti-6246) was investigated via center of symmetry analysis, ...
The α/β interface in Ti-6Al-2Sn-4Zr-6Mo (Ti-6246) was investigated via center of symmetry analysis, ...
Interdiffusion in multi-phase diffusion couples of polycrystalline Ti and polysynthetically twinned ...
β phase can be introduced to TiAl alloys by the additions of β stabilizing elements such as Cr, Nb, ...
Alloy TIMETAL®834 is a near-α Ti-alloy typically processed to have a complex bimodal microstructure ...
The role of various interfaces in deformation and fracture behavior of two phase TiAl-Ti{sub 3}Al al...
Special ultrafine fully lamellar microstructures have been found recently in {gamma}-TiAl alloys wit...
The microstructure and phase composition of Al/Ti/Al interfaces with respect to theirlocalization we...
Polysynthetically-twinned titanium aluminide (PST-TiAl), a fully lamellar γ-TiAl+α2- Ti3Al dual-phas...
Fully lamellar gamma titanium aluminides are very promising materials for aerospace applications, du...
Diffusion couples of pure Ti and polysynthetically twinned (PST) TiAl (49.3 at.% Al) were prepared b...
Detailed microstructure characterisation and in-situ micropillar compression were coupled with cryst...
Motivated by the great potential applications of gamma titanium aluminide based alloys and the impor...
Interdiffusion in multi-phase diffusion couples of polycrystalline Ti and polysynthetically twinned ...
The α/β interface in Ti-6Al-2Sn-4Zr-6Mo (Ti-6246) was investigated via center of symmetry analysis, ...
The α/β interface in Ti-6Al-2Sn-4Zr-6Mo (Ti-6246) was investigated via center of symmetry analysis, ...
The α/β interface in Ti-6Al-2Sn-4Zr-6Mo (Ti-6246) was investigated via center of symmetry analysis, ...
Interdiffusion in multi-phase diffusion couples of polycrystalline Ti and polysynthetically twinned ...
β phase can be introduced to TiAl alloys by the additions of β stabilizing elements such as Cr, Nb, ...
Alloy TIMETAL®834 is a near-α Ti-alloy typically processed to have a complex bimodal microstructure ...
The role of various interfaces in deformation and fracture behavior of two phase TiAl-Ti{sub 3}Al al...
Special ultrafine fully lamellar microstructures have been found recently in {gamma}-TiAl alloys wit...
The microstructure and phase composition of Al/Ti/Al interfaces with respect to theirlocalization we...