In engineering materials, microstructural evolution during hot-working critically determines the properties of the finished part. Intermetallic TiAl alloys are no exception and numerous attempts have been made to improve their performance by subjecting them to harmonized hot-working steps. In the current work a novel in-situ diffraction technique along with conventional microscopic methods were employed to characterize the behavior of the individual phases at two different deformation temperatures. A so-called TNM™ alloy with a nominal composition of Ti-43.5 Al-4 Nb-1 Mo-0.1 B (in at%), which exhibits an adjustable fraction of disordered β-phase at elevated temperatures, was deformed isothermally at 1220 °C and 1300 °C. At 1220 °C three pha...
After almost three decades of intensive fundamental research and development activities intermetalli...
Intermetallic TiAl alloys are light-weight high-temperature materials and intended to partly replace...
Intermetallic γ-TiAl based alloys of the TNM™ alloy family attain their excellent processing charact...
In engineering materials, microstructural evolution during hot-working critically determines the pro...
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...
Intermetallic γ-TiAl based alloys exhibit excellent high-temperature strength combined with low dens...
Challenging issues concerning energy efficiency and environmental politics require novel approaches ...
Intermetallic γ-TiAl based alloys exhibit excellent high-temperature strengthcombined with low densi...
New high-performance engine concepts for aerospace and automotive application enforce the developmen...
New high-performance engine concepts for aerospace and automotive application enforce the developmen...
Challenging issues concerning energy efficiency and environmental politics requirenovel approaches t...
Challenging issues concerning energy efficiency and environmental politics requirenovel approaches t...
After almost three decades of intensive fundamental research and development activities intermetalli...
Intermetallic TiAl alloys are light-weight high-temperature materials and intended to partly replace...
Intermetallic γ-TiAl based alloys of the TNM™ alloy family attain their excellent processing charact...
In engineering materials, microstructural evolution during hot-working critically determines the pro...
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...
Intermetallic γ-TiAl based alloys exhibit excellent high-temperature strength combined with low dens...
Challenging issues concerning energy efficiency and environmental politics require novel approaches ...
Intermetallic γ-TiAl based alloys exhibit excellent high-temperature strengthcombined with low densi...
New high-performance engine concepts for aerospace and automotive application enforce the developmen...
New high-performance engine concepts for aerospace and automotive application enforce the developmen...
Challenging issues concerning energy efficiency and environmental politics requirenovel approaches t...
Challenging issues concerning energy efficiency and environmental politics requirenovel approaches t...
After almost three decades of intensive fundamental research and development activities intermetalli...
Intermetallic TiAl alloys are light-weight high-temperature materials and intended to partly replace...
Intermetallic γ-TiAl based alloys of the TNM™ alloy family attain their excellent processing charact...