In the present work, the elevated-temperature deformation characteristics and microstructural evolution of a Ti-5V-5Mo-5Cr-4Al alloy in solution-treatment conditions were studied under a tensile load at temperatures in the range of 25 to 550 °C and strain rates between 0.001 and 0.1 s−1. The results obtained indicated that, essentially, dynamic recovery (DRV) was the dominant softening mechanism in the case of the regimes considered. An analysis based on transmission electron microscopy (TEM) and the assessment of the mechanical behavior of the solution-heat-treated Ti-5V-5Mo-5Cr-4Al alloy revealed that dynamic precipitation (DPN) only took place at a strain rate of 0.001 s−1 and at temperatures of 450 °C and 500 °C. Void coalescence occurr...
The effect of heat treatment conditions on high rate mechanical properties of the ($\alpha +\beta$) ...
TC31 is a new type of α+β dual phase high temperature titanium alloy, which has a high specific stre...
Ti555211 titanium alloy is subjected to plastic deformation in the dual-phase (α + β phase) zone and...
International audienceIn this work, we propose a unified description of the softening behavior of a ...
The effects of temperature and thermomechanical loading on the elevated-temperature tensile strength...
To compete with other structural materials despite their high cost, titanium alloys have to provide ...
This paper documents an investigation into the compressive deformation behavior of a solution treate...
This study investigated the hot deformation behavior of Ti-4Al-1Sn-2Zr-5Mo-8V-2.5Cr alloy through is...
Hot deformation behavior of a hypoeutectic Ti-6Al-4V-0.1B alloy in (alpha + beta) phase field is inv...
Hot tensile tests were carried out on Timetal-125 and Timetal-LCB near beta Ti alloys at temperature...
This study looked into the thermo-mechanical properties and the recrystallization mechanisms of the ...
Deformation of Ti-6Al-4V alloy in the \beta phase field is generally considered to be trivial since ...
The mechanical properties of near β Ti-alloys are highly dependent on their microstructures, which o...
The mechanisms of hot deformation in the \beta titanium alloy Ti–10V–2Fe–3Al have been characterised...
The stress–strain behaviour and microstructural evolution of the Ti–6Cr–5Mo–5V–4Al (Ti6554) alloy wa...
The effect of heat treatment conditions on high rate mechanical properties of the ($\alpha +\beta$) ...
TC31 is a new type of α+β dual phase high temperature titanium alloy, which has a high specific stre...
Ti555211 titanium alloy is subjected to plastic deformation in the dual-phase (α + β phase) zone and...
International audienceIn this work, we propose a unified description of the softening behavior of a ...
The effects of temperature and thermomechanical loading on the elevated-temperature tensile strength...
To compete with other structural materials despite their high cost, titanium alloys have to provide ...
This paper documents an investigation into the compressive deformation behavior of a solution treate...
This study investigated the hot deformation behavior of Ti-4Al-1Sn-2Zr-5Mo-8V-2.5Cr alloy through is...
Hot deformation behavior of a hypoeutectic Ti-6Al-4V-0.1B alloy in (alpha + beta) phase field is inv...
Hot tensile tests were carried out on Timetal-125 and Timetal-LCB near beta Ti alloys at temperature...
This study looked into the thermo-mechanical properties and the recrystallization mechanisms of the ...
Deformation of Ti-6Al-4V alloy in the \beta phase field is generally considered to be trivial since ...
The mechanical properties of near β Ti-alloys are highly dependent on their microstructures, which o...
The mechanisms of hot deformation in the \beta titanium alloy Ti–10V–2Fe–3Al have been characterised...
The stress–strain behaviour and microstructural evolution of the Ti–6Cr–5Mo–5V–4Al (Ti6554) alloy wa...
The effect of heat treatment conditions on high rate mechanical properties of the ($\alpha +\beta$) ...
TC31 is a new type of α+β dual phase high temperature titanium alloy, which has a high specific stre...
Ti555211 titanium alloy is subjected to plastic deformation in the dual-phase (α + β phase) zone and...