Based on the modified Hopkinson torsion bar, a high-temperature dynamic shear test method was proposed for the Ti-1023 alloy, and the microstructural evolution of the tested material at different temperatures was studied. By using the modified high-temperature Hopkinson torsion bar, high-temperature testing within 1000 degrees C can be achieved. As the specimen-heating rate was fast, and the temperature gradient of the experimental environment was small, valid experimental data can be ensured during the experiment. The experimental results show that stress-induced martensite can significantly enhance the strength of the Ti-1023 alloy. Dynamically recrystallized grains similar to those in adiabatic shear bands appear in the microstructure of...
In this paper, microstructure evolution and mechanic properties of metastable near β Ti-5553 alloy w...
The effects of the volume fraction of tempered martensite on the tensile and dynamic deformation pro...
Ti555211 titanium alloy is subjected to plastic deformation in the dual-phase (α + β phase) zone and...
Based on the modified Hopkinson torsion bar, a high-temperature dynamic shear test method was propos...
In this work, we develop a high-temperature dynamic testing technology for characterizing the proper...
Ti-5553 alloy is a near-beta titanium alloy with high strength and high fracture toughness. In this ...
In this work, the dynamic response of Ti6Al4V alloy at high temperature was studied using the Split ...
The stress–strain behaviour and microstructural evolution of the Ti–6Cr–5Mo–5V–4Al (Ti6554) alloy wa...
The titanium alloy (grade 5) is a two-phase material, which finds significant applications in aerosp...
The flow curve behaviour and microstructure evolution of commercially pure titanium (CP-Ti) through ...
Our study deals with the dynamic behaviour of metallic materials and in particular of titanium alloy...
Two different initial microstructures, martensitic and lamellar, were developed in a Ti-6Al-4V alloy...
The isothermal compression experiment of as-rolled Ti55 alloy was carried out on a Gleeble-3800 ther...
To study the high strain rate shear behaviour of Ti6Al4V titanium alloy, a series of dynamic compres...
The Gleeble-3800 thermal simulation machine was used to perform hot compression experiments on a new...
In this paper, microstructure evolution and mechanic properties of metastable near β Ti-5553 alloy w...
The effects of the volume fraction of tempered martensite on the tensile and dynamic deformation pro...
Ti555211 titanium alloy is subjected to plastic deformation in the dual-phase (α + β phase) zone and...
Based on the modified Hopkinson torsion bar, a high-temperature dynamic shear test method was propos...
In this work, we develop a high-temperature dynamic testing technology for characterizing the proper...
Ti-5553 alloy is a near-beta titanium alloy with high strength and high fracture toughness. In this ...
In this work, the dynamic response of Ti6Al4V alloy at high temperature was studied using the Split ...
The stress–strain behaviour and microstructural evolution of the Ti–6Cr–5Mo–5V–4Al (Ti6554) alloy wa...
The titanium alloy (grade 5) is a two-phase material, which finds significant applications in aerosp...
The flow curve behaviour and microstructure evolution of commercially pure titanium (CP-Ti) through ...
Our study deals with the dynamic behaviour of metallic materials and in particular of titanium alloy...
Two different initial microstructures, martensitic and lamellar, were developed in a Ti-6Al-4V alloy...
The isothermal compression experiment of as-rolled Ti55 alloy was carried out on a Gleeble-3800 ther...
To study the high strain rate shear behaviour of Ti6Al4V titanium alloy, a series of dynamic compres...
The Gleeble-3800 thermal simulation machine was used to perform hot compression experiments on a new...
In this paper, microstructure evolution and mechanic properties of metastable near β Ti-5553 alloy w...
The effects of the volume fraction of tempered martensite on the tensile and dynamic deformation pro...
Ti555211 titanium alloy is subjected to plastic deformation in the dual-phase (α + β phase) zone and...