The effects of microstructure morphology on corresponding tensile mechanical properties of Ti–5Al–5Mo–5V–1Cr–1Fe alloy controlling by three different heat treatment conditions (solution, single-step and two-step aging) were investigated in the present paper. The results show that the solution temperature exhibited an important impact on the precipitation behavior of secondary-α phase (αs) during aging, in which the content of αs gradually increased with the increase of solution temperature. When the alloy was single-step aged at 500–600 °C, the needle-like αs precipitated from matrix, as well as the content of αs decreased and coarsened corresponding to the increase of aging temperature. Compared with single-step aging, the αs slightly inc...
Microstructural evolutions and resulting mechanical properties have been investigated in the near-β ...
Microstructural evolutions and resulting mechanical properties have been investigated in the near-β ...
The aim of the present work is to explore the age-hardening potential of Ti-6Al-4V (Ti-64) alloy wit...
The solution-aging treatment parameters, including solution temperature, cooling rate and aging temp...
The mechanical properties of near β Ti-alloys are highly dependent on their microstructures, which o...
This work presents a comprehensive study on the microstructure evolution and mechanical property und...
Microstructure of novel high-strength metastable β titanium alloy, Ti–4Al–6Mo–2V–5Cr–2Zr, is extreme...
This study presents a strategy for the preparation of multiscale α phase by high/low-temperature two...
This study presents a strategy for the preparation of multiscale α phase by high/low-temperature two...
The microstructure evolution and precipitation behavior of a multi-component β titanium alloy (namel...
The evolution of the ω phase and its influence on tensile properties in β Ti-12V-2Fe-1Al alloys aged...
The evolution of the ω phase and its influence on tensile properties in β Ti-12V-2Fe-1Al alloys aged...
The effect of heat treatment on microstructure and mechanical properties of Ti-5553 alloy was invest...
Powder metallurgy near β Ti-5Al-5Mo-5V-1Cr-1Fe and Ti-5Al-5Mo-5V-2Cr-1Fe (in wt.%) alloys were inves...
Evolution of secondary α phase during aging treatment of a novel near β titanium alloy Ti-...
Microstructural evolutions and resulting mechanical properties have been investigated in the near-β ...
Microstructural evolutions and resulting mechanical properties have been investigated in the near-β ...
The aim of the present work is to explore the age-hardening potential of Ti-6Al-4V (Ti-64) alloy wit...
The solution-aging treatment parameters, including solution temperature, cooling rate and aging temp...
The mechanical properties of near β Ti-alloys are highly dependent on their microstructures, which o...
This work presents a comprehensive study on the microstructure evolution and mechanical property und...
Microstructure of novel high-strength metastable β titanium alloy, Ti–4Al–6Mo–2V–5Cr–2Zr, is extreme...
This study presents a strategy for the preparation of multiscale α phase by high/low-temperature two...
This study presents a strategy for the preparation of multiscale α phase by high/low-temperature two...
The microstructure evolution and precipitation behavior of a multi-component β titanium alloy (namel...
The evolution of the ω phase and its influence on tensile properties in β Ti-12V-2Fe-1Al alloys aged...
The evolution of the ω phase and its influence on tensile properties in β Ti-12V-2Fe-1Al alloys aged...
The effect of heat treatment on microstructure and mechanical properties of Ti-5553 alloy was invest...
Powder metallurgy near β Ti-5Al-5Mo-5V-1Cr-1Fe and Ti-5Al-5Mo-5V-2Cr-1Fe (in wt.%) alloys were inves...
Evolution of secondary α phase during aging treatment of a novel near β titanium alloy Ti-...
Microstructural evolutions and resulting mechanical properties have been investigated in the near-β ...
Microstructural evolutions and resulting mechanical properties have been investigated in the near-β ...
The aim of the present work is to explore the age-hardening potential of Ti-6Al-4V (Ti-64) alloy wit...