In the present study, solidification microstructure and texture evolution in grain-refined Ti-6Al-4V and γ-TiAl alloys via trace boron addition are compared with their baseline counterparts. Boron addition resulted in dramatic grain refinement by almost an order of magnitude. The texture developed in these alloys is also markedly different from the baseline alloys
Small additions of boron to conventional titanium alloys have been found to produce significant chan...
Trace boron additions to the β titanium alloy Ti–15Mo–2.6Nb–3Al–0.2Si (wt.%) lead to significant gra...
β-grain size is an influential microstructural parameter on the properties of titanium components. A...
In the present study, solidification microstructure and texture evolution in grain-refined Ti-6Al-4V...
In the present study, solidification microstructure and texture evolution in grain-refined Ti-6Al-4V...
Owing to their high strength-to-weight ratio, excellent mechanical properties and corrosion resistan...
Hypoeutectic boron addition (0.1 wt.%) to Ti-6Al-4V is known to cause significant refinement of the ...
Hypoeutectic boron addition (0.1 wt.%) to Ti–6Al–4V is known to cause significant refinement of the ...
Trace boron addition to several titanium alloys results in a reduction in the as-cast grain size by ...
ii iii Ti-6Al-4V is an important α+β titanium alloy with an interesting and challenging correlation ...
Ti-6Al-4V is an important alpha+beta titanium alloy with an interesting and challenging correlation...
Trace additions of boron to commercial purity titanium result in significant microstructural changes...
Microstructure and texture are known to undergo drastic modifications due to trace hypoeutectic boro...
The effects of trace boron on microstructure and mechanical properties of beta type Ti-9V-3Al-3Cr-3Z...
The effect of adding boron to Ti3Al on the microstructure and high temperature tensile properties ha...
Small additions of boron to conventional titanium alloys have been found to produce significant chan...
Trace boron additions to the β titanium alloy Ti–15Mo–2.6Nb–3Al–0.2Si (wt.%) lead to significant gra...
β-grain size is an influential microstructural parameter on the properties of titanium components. A...
In the present study, solidification microstructure and texture evolution in grain-refined Ti-6Al-4V...
In the present study, solidification microstructure and texture evolution in grain-refined Ti-6Al-4V...
Owing to their high strength-to-weight ratio, excellent mechanical properties and corrosion resistan...
Hypoeutectic boron addition (0.1 wt.%) to Ti-6Al-4V is known to cause significant refinement of the ...
Hypoeutectic boron addition (0.1 wt.%) to Ti–6Al–4V is known to cause significant refinement of the ...
Trace boron addition to several titanium alloys results in a reduction in the as-cast grain size by ...
ii iii Ti-6Al-4V is an important α+β titanium alloy with an interesting and challenging correlation ...
Ti-6Al-4V is an important alpha+beta titanium alloy with an interesting and challenging correlation...
Trace additions of boron to commercial purity titanium result in significant microstructural changes...
Microstructure and texture are known to undergo drastic modifications due to trace hypoeutectic boro...
The effects of trace boron on microstructure and mechanical properties of beta type Ti-9V-3Al-3Cr-3Z...
The effect of adding boron to Ti3Al on the microstructure and high temperature tensile properties ha...
Small additions of boron to conventional titanium alloys have been found to produce significant chan...
Trace boron additions to the β titanium alloy Ti–15Mo–2.6Nb–3Al–0.2Si (wt.%) lead to significant gra...
β-grain size is an influential microstructural parameter on the properties of titanium components. A...