Titanium aluminide alloys based on the ordered γ-TiAl phase are intermetallic materials well suited for lightweight high-temperature applications. The TNM alloys, a specific, β-solidifying group among them with a nominal composition of Ti-43.5Al-4Nb-1Mo-0.1B (at.-%), offer a homogeneous and fine-grained microstructure upon casting. This advantage has been exploited to develop a lab-scale hot rolling process in which a cost-effective ingot breakdown of the starting material is omitted. The present work establishes a fundamental understanding of the processes prevailing in the material during hot rolling and primary annealing. Microstructural analysis and texture measurements conducted at a synchrotron radiation source allow to study deformat...
Intermetallic γ-TiAl based alloys exhibit excellent high-temperature strength combined with low dens...
Intermetallic γ-TiAl based alloys exhibit excellent high-temperature strength combined with low dens...
In this paper, the deformation and phase transformation of disordered α phase in the (α + γ) two-pha...
Titanium aluminide alloys based on the ordered γ-TiAl phase are intermetallic materials well suited ...
Sheets made of intermetallic $\gamma$-TiAl based alloys possess promising engineering properties for...
Microstructure and texture evolution have been investigated in both α and β phases during the hot ro...
After almost three decades of intensive fundamental research and development activities intermetalli...
New high-performance engine concepts for aerospace and automotive application enforce the developmen...
In engineering materials, microstructural evolution during hot-working critically determines the pro...
The evolution of texture in the β-phase of a two-phase (O+B2) titanium–aluminide Ti–22Al–25Nb (at.%)...
In the current study, the evolution of microstructure and texture has been studied for Ti-6Al-4V-0.1...
The microstructural evolution and underlying mechanism of a new high strength, high toughness near β...
γ-TiAl intermetallic alloys are very attractive materials for aerospace applications because of thei...
In engineering materials, microstructural evolution during hot-working critically determines the pro...
In engineering materials, microstructural evolution during hot-working critically determines the pro...
Intermetallic γ-TiAl based alloys exhibit excellent high-temperature strength combined with low dens...
Intermetallic γ-TiAl based alloys exhibit excellent high-temperature strength combined with low dens...
In this paper, the deformation and phase transformation of disordered α phase in the (α + γ) two-pha...
Titanium aluminide alloys based on the ordered γ-TiAl phase are intermetallic materials well suited ...
Sheets made of intermetallic $\gamma$-TiAl based alloys possess promising engineering properties for...
Microstructure and texture evolution have been investigated in both α and β phases during the hot ro...
After almost three decades of intensive fundamental research and development activities intermetalli...
New high-performance engine concepts for aerospace and automotive application enforce the developmen...
In engineering materials, microstructural evolution during hot-working critically determines the pro...
The evolution of texture in the β-phase of a two-phase (O+B2) titanium–aluminide Ti–22Al–25Nb (at.%)...
In the current study, the evolution of microstructure and texture has been studied for Ti-6Al-4V-0.1...
The microstructural evolution and underlying mechanism of a new high strength, high toughness near β...
γ-TiAl intermetallic alloys are very attractive materials for aerospace applications because of thei...
In engineering materials, microstructural evolution during hot-working critically determines the pro...
In engineering materials, microstructural evolution during hot-working critically determines the pro...
Intermetallic γ-TiAl based alloys exhibit excellent high-temperature strength combined with low dens...
Intermetallic γ-TiAl based alloys exhibit excellent high-temperature strength combined with low dens...
In this paper, the deformation and phase transformation of disordered α phase in the (α + γ) two-pha...