In situ time-resolved X-ray diffraction by synchrotron radiation was used to monitor the phase transformations and grain-refining processes during laser-beam welding of a γ-TiAl-based alloy. The heating rate plays an important role of grain refinement. A high heating rate suppresses solid–solid phase transformations. The superheated γ grains serve as heterogeneous nuclei for β grains on subsequent solidification and refine the lamellar colonies. At low heating rate, diffusion-based transformations are observed on heating and coarse lamellae are formed after welding. The refined lamellar colonies improve the mechanical properties
γ-TiAl alloys are well-suited for aerospace applications due to low density, high temperature streng...
Intermetallic γ-TiAl based alloys exhibit excellent high-temperature strengthcombined with low densi...
The effects of intrinsic heat-treatment during selective laser melting of Ti-44.8Al-6Nb-1.0Mo-0.1B a...
In situ time-resolved X-ray diffraction by synchrotron radiation was used to monitor the phase trans...
γ-TiAl material is an attractive alternative candidate for aerospace and automotiveapplications beca...
The microstructure, chemical composition, residual stress, and lattice parameter evolution ofthe wel...
Post-weld heat treatment is carried out on the laser beam welded γ-TiAl-based alloy Ti-48Al-1Cr-1.5N...
Investigations were conducted on the -TiAl-based alloy Ti-42Al-2.5Cr-1Nb-0.7Si-0.5B (at. %) to asses...
It is demonstrated that, with application of several preheating and post weld heat treatments, the w...
Low ductility has long been the bottleneck for high temperature application of TiAl alloys. It is re...
Because of their good properties, the γ-TiAl based alloys are promising to replace the twice as dens...
Direct observations of fusion zone (FZ) phase transformations were made during gas tungsten arc (GTA...
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...
Representing an attractive new processing method, additive manufacturing canbe used to manufacture p...
γ-TiAl alloys are well-suited for aerospace applications due to low density, high temperature streng...
Intermetallic γ-TiAl based alloys exhibit excellent high-temperature strengthcombined with low densi...
The effects of intrinsic heat-treatment during selective laser melting of Ti-44.8Al-6Nb-1.0Mo-0.1B a...
In situ time-resolved X-ray diffraction by synchrotron radiation was used to monitor the phase trans...
γ-TiAl material is an attractive alternative candidate for aerospace and automotiveapplications beca...
The microstructure, chemical composition, residual stress, and lattice parameter evolution ofthe wel...
Post-weld heat treatment is carried out on the laser beam welded γ-TiAl-based alloy Ti-48Al-1Cr-1.5N...
Investigations were conducted on the -TiAl-based alloy Ti-42Al-2.5Cr-1Nb-0.7Si-0.5B (at. %) to asses...
It is demonstrated that, with application of several preheating and post weld heat treatments, the w...
Low ductility has long been the bottleneck for high temperature application of TiAl alloys. It is re...
Because of their good properties, the γ-TiAl based alloys are promising to replace the twice as dens...
Direct observations of fusion zone (FZ) phase transformations were made during gas tungsten arc (GTA...
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...
Representing an attractive new processing method, additive manufacturing canbe used to manufacture p...
γ-TiAl alloys are well-suited for aerospace applications due to low density, high temperature streng...
Intermetallic γ-TiAl based alloys exhibit excellent high-temperature strengthcombined with low densi...
The effects of intrinsic heat-treatment during selective laser melting of Ti-44.8Al-6Nb-1.0Mo-0.1B a...