Microstructure and texture evolution have been investigated in both α and β phases during the hot rolling of β-quenched Ti–6Al–4V at 800 and 950 °C, followed by annealing at 950 °C and air cooling using detailed electron backscattered diffraction mapping. The textures of primary and secondary α in the bi-modal microstructure were analysed separately, and the high-temperature β orientations were calculated by a variant based reconstruction from the inherited αs orientations. Crystal plasticity finite element modelling has been employed to predict the rolling texture based on common α phase slip systems and compare with the measured α texture. It was found that despite the severe deformation during rolling, a large proportion of the primary α...
Different morphologies of α+β microstructures were obtained in a commercial Ti-6Al-4V alloy by cooli...
A hot rolled two-phase Ti-22Al-25Nb (at.%) alloy containing the orthorhombic (O) and beta(B2) phases...
The evolution of texture in β-annealed Ti-6Al-4V during α-β rolling and so-called recrystallisation ...
The evolution of texture in the β-phase of a two-phase (O+B2) titanium–aluminide Ti–22Al–25Nb (at.%)...
The microstructural evolution and underlying mechanism of a new high strength, high toughness near β...
The preferred orientation of crystals, or texture, is a very important phenomenon in Ti alloys, as t...
In the current study, the evolution of microstructure and texture has been studied for Ti-6Al-4V-0.1...
The microstructure and texture evolution during continuous cooling hot deformation (CCHD) in a near ...
Evolution of crystallographic texture in the orthorhombic phase of a two-phase alloy Ti–22Al–25Nb (a...
Microstructural and crystallographic aspects arising from thermomechanical processing of a Ti–6Al–4V...
The present study evaluated the β recrystallization behavior and deformation microtexture evolution ...
The crystallographic defects introduced after thermal deformation of near-β Ti-55511 alloy can have ...
Titanium aluminide alloys based on the ordered γ-TiAl phase are intermetallic materials well suited ...
Aspects of microstructure and texture evolution in the near-u, titanium alloy, Timetal834 were inves...
The precipitation behavior and microstructural evolution of α phase in a novel metastable β-type Ti ...
Different morphologies of α+β microstructures were obtained in a commercial Ti-6Al-4V alloy by cooli...
A hot rolled two-phase Ti-22Al-25Nb (at.%) alloy containing the orthorhombic (O) and beta(B2) phases...
The evolution of texture in β-annealed Ti-6Al-4V during α-β rolling and so-called recrystallisation ...
The evolution of texture in the β-phase of a two-phase (O+B2) titanium–aluminide Ti–22Al–25Nb (at.%)...
The microstructural evolution and underlying mechanism of a new high strength, high toughness near β...
The preferred orientation of crystals, or texture, is a very important phenomenon in Ti alloys, as t...
In the current study, the evolution of microstructure and texture has been studied for Ti-6Al-4V-0.1...
The microstructure and texture evolution during continuous cooling hot deformation (CCHD) in a near ...
Evolution of crystallographic texture in the orthorhombic phase of a two-phase alloy Ti–22Al–25Nb (a...
Microstructural and crystallographic aspects arising from thermomechanical processing of a Ti–6Al–4V...
The present study evaluated the β recrystallization behavior and deformation microtexture evolution ...
The crystallographic defects introduced after thermal deformation of near-β Ti-55511 alloy can have ...
Titanium aluminide alloys based on the ordered γ-TiAl phase are intermetallic materials well suited ...
Aspects of microstructure and texture evolution in the near-u, titanium alloy, Timetal834 were inves...
The precipitation behavior and microstructural evolution of α phase in a novel metastable β-type Ti ...
Different morphologies of α+β microstructures were obtained in a commercial Ti-6Al-4V alloy by cooli...
A hot rolled two-phase Ti-22Al-25Nb (at.%) alloy containing the orthorhombic (O) and beta(B2) phases...
The evolution of texture in β-annealed Ti-6Al-4V during α-β rolling and so-called recrystallisation ...