Microstructure and mechanical properties of heat treated martensitic two-phase α+β titanium alloys are in major perspective determined by results of martensite decomposition during tempering. The process of martensitic α’(α”) phase decomposition in titanium alloys, although utilized in industry for years, has not been sufficiently characterized in the scientific literature. Especially aspects of plastically deformed martensite decomposition is poorly described. Preliminary research results of water quenched Ti-6Al-4V alloy, subsequently cold deformed in compression and tempered at the temperature range of 600-900ºC for 1 and 2 h indicated that α’(α”) martensite undergoes strain hardening and deformed martensite laths exhibit tendency toward...
Ti-6Al-4V parts obtained by selective laser melting typically have an acicular α' martensitic micros...
International audienceTi-6Al-4V is a titanium alloy widely used for aircraft components (Banerjee & ...
A metastable-β titanium alloy, Ti-10V-3Fe-3Al (wt. %), was subjected to thermo-mechanical processing...
Microstructure and mechanical properties of heat treated martensitic two-phase α+β titanium alloys a...
Development of microstructure in two-phase α+β titanium alloys is realized by thermomechanical proce...
Development of microstructure in two-phase α+β titanium alloys is realized by thermomechanical proce...
The microstructure evolution of martensitic Ti-6Al-4V alloy was investigated through uniaxial hot co...
The effect of heating rate on the decomposition kinetics of α″ martensite is continuously studied fo...
The effect of heating rate on the decomposition kinetics of α″ martensite is continuously studied fo...
In order to improve the tensile properties of additively manufactured Ti-6Al-4V parts, specific heat...
In this work, the work-hardening ability of Ti-6Al-4V alloy was investigated using a quenching and p...
The temperature dependence of the stress-induced martensite (SIM) formation in a Ti-10V-2Fe-3Al (Ti-...
The temperature dependence of the stress-induced martensite (SIM) formation in a Ti-10V-2Fe-3Al (Ti-...
Different morphologies of α+β microstructures were obtained in a commercial Ti-6Al-4V alloy by cooli...
Additive manufacturing is being increasingly used in the fabrication of Ti-6Al-4V parts to combine e...
Ti-6Al-4V parts obtained by selective laser melting typically have an acicular α' martensitic micros...
International audienceTi-6Al-4V is a titanium alloy widely used for aircraft components (Banerjee & ...
A metastable-β titanium alloy, Ti-10V-3Fe-3Al (wt. %), was subjected to thermo-mechanical processing...
Microstructure and mechanical properties of heat treated martensitic two-phase α+β titanium alloys a...
Development of microstructure in two-phase α+β titanium alloys is realized by thermomechanical proce...
Development of microstructure in two-phase α+β titanium alloys is realized by thermomechanical proce...
The microstructure evolution of martensitic Ti-6Al-4V alloy was investigated through uniaxial hot co...
The effect of heating rate on the decomposition kinetics of α″ martensite is continuously studied fo...
The effect of heating rate on the decomposition kinetics of α″ martensite is continuously studied fo...
In order to improve the tensile properties of additively manufactured Ti-6Al-4V parts, specific heat...
In this work, the work-hardening ability of Ti-6Al-4V alloy was investigated using a quenching and p...
The temperature dependence of the stress-induced martensite (SIM) formation in a Ti-10V-2Fe-3Al (Ti-...
The temperature dependence of the stress-induced martensite (SIM) formation in a Ti-10V-2Fe-3Al (Ti-...
Different morphologies of α+β microstructures were obtained in a commercial Ti-6Al-4V alloy by cooli...
Additive manufacturing is being increasingly used in the fabrication of Ti-6Al-4V parts to combine e...
Ti-6Al-4V parts obtained by selective laser melting typically have an acicular α' martensitic micros...
International audienceTi-6Al-4V is a titanium alloy widely used for aircraft components (Banerjee & ...
A metastable-β titanium alloy, Ti-10V-3Fe-3Al (wt. %), was subjected to thermo-mechanical processing...