Ti–15V–3Cr–3Sn–3Al (Ti–15–3), a kind of metastable beta titanium which has high specific strength and good cold-formability, is highlighted for applications in the aerospace manufacture industry. However, the technique for improving its formability at elevated temperatures is still a challenge at present. In this work, a step deformation method is proposed for superplasticity improvement of coarse grained Ti–15–3 plates at temperatures around its beta transus. The effects of the strain rate and the strain at the first stage on the superplasticity are investigated. The results show an increase of the strain rate sensitivity and a decrease of the flow stress under the step deformation mode compared to those obtained under constant strain rate...
This paper presents the effect of temperature and strain rate on the superplastic deformation behavi...
Titanium alloys subjected to suitable thermomechanical processing (TMP) schedules can exhibit superp...
The mechanisms of hot deformation in the \beta titanium alloy Ti–10V–2Fe–3Al have been characterised...
A superplastic Ti-6Al-4V grade has been deformed at a strain rate of 5 x 10(-4) s(-1) and at tempera...
In this paper, the superplastic behavior of the two-phase titanium alloy VT6 with an ultrafine-grain...
Superplastic deformation behaviour of conventional sheets of a near-α titanium alloy (Ti-2.5Al-1.8Mn...
International audienceTitanium Ti-6Al-4V alloys are known to exhibit interesting superplastic proper...
Even though TIMETAL-54M (Ti-5Al-4V-0.6Mo-0.4Fe or Ti54M) has been commercially available for over 10...
Superplasticity is vital in many industries - medical, defense, aerospace, transport and sports amon...
AbstractSurface observations are used to elucidate the deformation mechanisms responsible for the su...
Fine-grained Ti-6Al-4V titanium alloy plates were manufactured using a direct rolling approach, and ...
Determining a desirable strain rate-temperature range for superplasticity and elongation-to-failure ...
Superplastic forming (SPF) is an effective process that allows for forming the sheet metal parts of ...
TA15 (Ti–6Al–2Zr–1Mo–1V) is a near-α titanium alloy and has wide applications in the aerospace indus...
Surface observations are used to elucidate the deformation mechanisms responsible for the superplas...
This paper presents the effect of temperature and strain rate on the superplastic deformation behavi...
Titanium alloys subjected to suitable thermomechanical processing (TMP) schedules can exhibit superp...
The mechanisms of hot deformation in the \beta titanium alloy Ti–10V–2Fe–3Al have been characterised...
A superplastic Ti-6Al-4V grade has been deformed at a strain rate of 5 x 10(-4) s(-1) and at tempera...
In this paper, the superplastic behavior of the two-phase titanium alloy VT6 with an ultrafine-grain...
Superplastic deformation behaviour of conventional sheets of a near-α titanium alloy (Ti-2.5Al-1.8Mn...
International audienceTitanium Ti-6Al-4V alloys are known to exhibit interesting superplastic proper...
Even though TIMETAL-54M (Ti-5Al-4V-0.6Mo-0.4Fe or Ti54M) has been commercially available for over 10...
Superplasticity is vital in many industries - medical, defense, aerospace, transport and sports amon...
AbstractSurface observations are used to elucidate the deformation mechanisms responsible for the su...
Fine-grained Ti-6Al-4V titanium alloy plates were manufactured using a direct rolling approach, and ...
Determining a desirable strain rate-temperature range for superplasticity and elongation-to-failure ...
Superplastic forming (SPF) is an effective process that allows for forming the sheet metal parts of ...
TA15 (Ti–6Al–2Zr–1Mo–1V) is a near-α titanium alloy and has wide applications in the aerospace indus...
Surface observations are used to elucidate the deformation mechanisms responsible for the superplas...
This paper presents the effect of temperature and strain rate on the superplastic deformation behavi...
Titanium alloys subjected to suitable thermomechanical processing (TMP) schedules can exhibit superp...
The mechanisms of hot deformation in the \beta titanium alloy Ti–10V–2Fe–3Al have been characterised...