Creep deformation behaviors in lamellar TiAl alloys have been investigated. As in the case with metals, the normal primary creep stage was observed. As creep strain increased within the primary regime, dislocation density decreased, and creep activation energy increased from 300 kJ/mol, the activation energy of the selfdiffusion of Ti in TiAl, to about 380 kJ/mol, that of steady state creep deformation. During primary creep deformation of lamellar TiAl, as the initial dislocation density decreased, the alpha(2)-phase was found to transform to a gamma-phase, generating new dislocations which contributed to the creep deformation. In other words, this phase transformation is the source of the dislocation generation for continuous creep deforma...
Deformation mechanisms of a fully lamellar TiAl ({gamma} lamellae: 100 {approximately} 300 nm thick,...
Intermetallic alloys are very advanced materials for high-temperature applications. There are series...
High-temperature creep of a binary Al60Ti40 (at.%) alloy in the as-cast state and after annealing at...
The creep deformation of two near-γ titanium aluminide alloys with equiaxed and lamellar structures ...
A γ-based TiAl alloy with equiaxed microstructure and fine grain size has been studied to analyze th...
The compression creep behavior of a cast alloy with the composition of Ti–46Al–2Cr–...
The creep deformation of a near-γ titanium aluminide alloy with equiaxed and lamellar structures has...
Creep of a TiAl alloy, having a composition of Ti-47Al-2Cr-2Nb (in atom %) and a fine-grained, fully...
Two-phase (α2Ti3Al+γTiAl) fully lamellar TiAl alloys show highly anisotropic creep behaviour. Depend...
Abstract. Grain size, volume fraction of constituent phases, lamellar spacing and lamellar orientati...
By means of creep properties measurement and microstructure observation, the deformation and damage ...
β phase can be introduced to TiAl alloys by the additions of β stabilizing elements such as Cr, Nb, ...
In order to understand the effect of fine grains on creep property of lamellar orientation controlle...
The mechanical behaviour of a $\mathrm \gamma $-TiAl alloy and its microstructural evolution are inv...
The active dislocation mechanisms responsible for the deformation process of two phase TiAl alloys h...
Deformation mechanisms of a fully lamellar TiAl ({gamma} lamellae: 100 {approximately} 300 nm thick,...
Intermetallic alloys are very advanced materials for high-temperature applications. There are series...
High-temperature creep of a binary Al60Ti40 (at.%) alloy in the as-cast state and after annealing at...
The creep deformation of two near-γ titanium aluminide alloys with equiaxed and lamellar structures ...
A γ-based TiAl alloy with equiaxed microstructure and fine grain size has been studied to analyze th...
The compression creep behavior of a cast alloy with the composition of Ti–46Al–2Cr–...
The creep deformation of a near-γ titanium aluminide alloy with equiaxed and lamellar structures has...
Creep of a TiAl alloy, having a composition of Ti-47Al-2Cr-2Nb (in atom %) and a fine-grained, fully...
Two-phase (α2Ti3Al+γTiAl) fully lamellar TiAl alloys show highly anisotropic creep behaviour. Depend...
Abstract. Grain size, volume fraction of constituent phases, lamellar spacing and lamellar orientati...
By means of creep properties measurement and microstructure observation, the deformation and damage ...
β phase can be introduced to TiAl alloys by the additions of β stabilizing elements such as Cr, Nb, ...
In order to understand the effect of fine grains on creep property of lamellar orientation controlle...
The mechanical behaviour of a $\mathrm \gamma $-TiAl alloy and its microstructural evolution are inv...
The active dislocation mechanisms responsible for the deformation process of two phase TiAl alloys h...
Deformation mechanisms of a fully lamellar TiAl ({gamma} lamellae: 100 {approximately} 300 nm thick,...
Intermetallic alloys are very advanced materials for high-temperature applications. There are series...
High-temperature creep of a binary Al60Ti40 (at.%) alloy in the as-cast state and after annealing at...