The isothermal hot compression behavior of new Ti–Fe–B (named as TF400) alloy was investigated in the temperature range of 750–950 °C and strain rate range from 0.01 to 10 s−1 with the maximum height reduction of 60% by using a Gleeble 3800 thermal simulator. By considering the effect of strain via variable material parameters, a modified constitutive model was proposed to accurately predict the flow stress. The predicted results demonstrate that the flow stress decreases with the increase of temperature while it increases as the strain rate increases, in good agreement with the present experimental results. A mechanistic understanding of plastic deformation behavior in the TF400 alloys was developed by inspecting the microstructural charac...
Hot compression tests on TiHy 600 alloy (equivalent to IMI 834) is performed using Gleeble-3800® the...
Hot compression deformation behavior of Ti-6Al-2Zr-3Ni alloy was investigated through thermal simula...
The flow curve behaviour and microstructure evolution of commercially pure titanium (CP-Ti) through ...
This study investigated the hot deformation behavior of Ti-4Al-1Sn-2Zr-5Mo-8V-2.5Cr alloy through is...
The isothermal constant strain rate compression tests of Ti-5.5Mo-6V-7Cr-4Al-2Sn-1Fe alloy were cond...
This study investigated the hot deformation behavior of Ti-4Al-1Sn-2Zr-5Mo-8V-2.5Cr alloy through is...
The isothermal compression experiment of as-rolled Ti55 alloy was carried out on a Gleeble-3800 ther...
The isothermal compression experiment of as-rolled Ti55 alloy was carried out on a Gleeble-3800 ther...
Isothermal compression tests of TC18 titanium alloy at the deformation temperatures ranging from ...
The Gleeble-3800 thermal simulation machine was used to perform hot compression experiments on a new...
The deformation behavior of Ti-3.5Al-5Mo-6V-3Cr-2Sn-0.5Fe high strength β titanium alloy is systema...
In the present study, isothermal compression tests are conducted for a near-α Ti–3.3Al–1.5Zr–1.2Mo–0...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
The mechanisms of hot deformation in the alloy Ti-5.5Al-1Fe have been studied in the temperature ran...
Hot compression tests on TiHy 600 alloy (equivalent to IMI 834) is performed using Gleeble-3800® the...
Hot compression tests on TiHy 600 alloy (equivalent to IMI 834) is performed using Gleeble-3800® the...
Hot compression deformation behavior of Ti-6Al-2Zr-3Ni alloy was investigated through thermal simula...
The flow curve behaviour and microstructure evolution of commercially pure titanium (CP-Ti) through ...
This study investigated the hot deformation behavior of Ti-4Al-1Sn-2Zr-5Mo-8V-2.5Cr alloy through is...
The isothermal constant strain rate compression tests of Ti-5.5Mo-6V-7Cr-4Al-2Sn-1Fe alloy were cond...
This study investigated the hot deformation behavior of Ti-4Al-1Sn-2Zr-5Mo-8V-2.5Cr alloy through is...
The isothermal compression experiment of as-rolled Ti55 alloy was carried out on a Gleeble-3800 ther...
The isothermal compression experiment of as-rolled Ti55 alloy was carried out on a Gleeble-3800 ther...
Isothermal compression tests of TC18 titanium alloy at the deformation temperatures ranging from ...
The Gleeble-3800 thermal simulation machine was used to perform hot compression experiments on a new...
The deformation behavior of Ti-3.5Al-5Mo-6V-3Cr-2Sn-0.5Fe high strength β titanium alloy is systema...
In the present study, isothermal compression tests are conducted for a near-α Ti–3.3Al–1.5Zr–1.2Mo–0...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
The mechanisms of hot deformation in the alloy Ti-5.5Al-1Fe have been studied in the temperature ran...
Hot compression tests on TiHy 600 alloy (equivalent to IMI 834) is performed using Gleeble-3800® the...
Hot compression tests on TiHy 600 alloy (equivalent to IMI 834) is performed using Gleeble-3800® the...
Hot compression deformation behavior of Ti-6Al-2Zr-3Ni alloy was investigated through thermal simula...
The flow curve behaviour and microstructure evolution of commercially pure titanium (CP-Ti) through ...