New high-performance engine concepts for aerospace and automotive application enforce the development of lightweight intermetallic γ-TiAl based alloys with increased high-temperature capability above 750 °C. Besides an increased creep resistance, the alloy system must exhibit sufficient hot-workability. However, the majority of current high-creep resistant γ-TiAl based alloys suffer from poor workability, whereby grain refinement and microstructure control during hot-working are key factors to ensure a final microstructure with sufficient ductility and tolerance against brittle failure below the brittle-to-ductile transition temperature. Therefore, a new and advanced β-solidifying γ-TiAl based alloy, a so-called TNM alloy with a composition...
Intermetallic γ-TiAl based alloys are innovative lightweight structural high-temperature materials u...
High-temperature mechanical behavior and microstructure evolution during hot deformation of an as-ca...
The hot deformation behavior and microstructural evolution of Ti-44Al-5V-1Cr alloy were investigated...
New high-performance engine concepts for aerospace and automotive application enforce the developmen...
After almost three decades of intensive fundamental research and development activities intermetalli...
In engineering materials, microstructural evolution during hot-working critically determines the pro...
In engineering materials, microstructural evolution during hot-working critically determines the pro...
The hot deformation behavior of a cast Ti–45Al–8Nb–6Cr–0.2B (at.%) alloy has been investigated in th...
Hot deformation behavior of a high-Nb-containing cast γ-TiAl-based Ti–45Al–8Nb (at.%) alloy has been...
The characteristics of hot deformation behavior and associated microstructural development of a cast...
γ-TiAl intermetallic alloys are very attractive materials for aerospace applications because of thei...
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...
Hot deformation studies of a newly designed gamma + alpha(2) based TiAl alloy of composition Ti-42Al...
Intermetallic γ-TiAl based alloys are innovative lightweight structural high-temperature materials u...
High-temperature mechanical behavior and microstructure evolution during hot deformation of an as-ca...
The hot deformation behavior and microstructural evolution of Ti-44Al-5V-1Cr alloy were investigated...
New high-performance engine concepts for aerospace and automotive application enforce the developmen...
After almost three decades of intensive fundamental research and development activities intermetalli...
In engineering materials, microstructural evolution during hot-working critically determines the pro...
In engineering materials, microstructural evolution during hot-working critically determines the pro...
The hot deformation behavior of a cast Ti–45Al–8Nb–6Cr–0.2B (at.%) alloy has been investigated in th...
Hot deformation behavior of a high-Nb-containing cast γ-TiAl-based Ti–45Al–8Nb (at.%) alloy has been...
The characteristics of hot deformation behavior and associated microstructural development of a cast...
γ-TiAl intermetallic alloys are very attractive materials for aerospace applications because of thei...
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...
Hot deformation studies of a newly designed gamma + alpha(2) based TiAl alloy of composition Ti-42Al...
Intermetallic γ-TiAl based alloys are innovative lightweight structural high-temperature materials u...
High-temperature mechanical behavior and microstructure evolution during hot deformation of an as-ca...
The hot deformation behavior and microstructural evolution of Ti-44Al-5V-1Cr alloy were investigated...