Oxygen solid solution-strengthened titanium-oxygen (Ti–O) alloys with ultrahigh yield strength and large ductility were designed and synthesized via high-energy ball milling (BM) combined with spark plasma sintering (SPS) in compression. The morphology, dispersion state, and solid solution microstructure of the Ti–O alloys were optimized by regulating the mixing method, sintering temperature, and added oxygen content. Outstanding properties that include a compressive yield strength of 1220 MPa and large ductility of 36.3% were achieved after 1 h high-energy BM and 1000 °C SPS with the addition of about 1.8 at% oxygen. The grain refinement and oxygen solid solution strengthening indicate that the dense morphology, refined grain size, and oxy...
Fully dense powder metallurgy (PM) Ti–4Fe–0.2O–3Cu–0.4Si alloy was produced employing spark plasma s...
Interstitial oxygen embrittles titanium, particularly at cryogenic temperatures, which necessitates ...
Revived interest for beta Ti alloys with increased oxygen content is motivated by the prospect of ac...
The applications of Ti and its alloys are limited to high-performance products because of expensive ...
Titanium (Ti) alloys can be applied to various products in aircraft, automotive and motor cycles ind...
Titanium alloys normally contain oxygen, nitrogen, or carbon as impurities, and although this concen...
International audienceOxygen content has always been limited in commercial titanium and titanium all...
As one of the detrimental ingredients, oxygen can, even in a small amount, substantially reduce the ...
Oxygen solid solution has been well known to have a high hardening effect on Ti and its alloys, whil...
The intention to make cost-effective titanium parts by powder metallurgy (PM) is a challenge. The ox...
Effect of oxygen content as an important interstitial solute on the microstructure and mechanical pr...
Fully dense powder metallurgy (PM) Ti–4Fe–0.2O–3Cu–0.4Si alloy was produced employing spark plasma s...
In the last decades, biomaterials have improved the life and its quality for millions around the Glo...
Oxidized Ti powder was consolidated successfully by using spark plasma sintering into a fully dense ...
A powder metallurgy Ti–35 at.% Ta alloy was produced using a spark plasma sintering process. The sin...
Fully dense powder metallurgy (PM) Ti–4Fe–0.2O–3Cu–0.4Si alloy was produced employing spark plasma s...
Interstitial oxygen embrittles titanium, particularly at cryogenic temperatures, which necessitates ...
Revived interest for beta Ti alloys with increased oxygen content is motivated by the prospect of ac...
The applications of Ti and its alloys are limited to high-performance products because of expensive ...
Titanium (Ti) alloys can be applied to various products in aircraft, automotive and motor cycles ind...
Titanium alloys normally contain oxygen, nitrogen, or carbon as impurities, and although this concen...
International audienceOxygen content has always been limited in commercial titanium and titanium all...
As one of the detrimental ingredients, oxygen can, even in a small amount, substantially reduce the ...
Oxygen solid solution has been well known to have a high hardening effect on Ti and its alloys, whil...
The intention to make cost-effective titanium parts by powder metallurgy (PM) is a challenge. The ox...
Effect of oxygen content as an important interstitial solute on the microstructure and mechanical pr...
Fully dense powder metallurgy (PM) Ti–4Fe–0.2O–3Cu–0.4Si alloy was produced employing spark plasma s...
In the last decades, biomaterials have improved the life and its quality for millions around the Glo...
Oxidized Ti powder was consolidated successfully by using spark plasma sintering into a fully dense ...
A powder metallurgy Ti–35 at.% Ta alloy was produced using a spark plasma sintering process. The sin...
Fully dense powder metallurgy (PM) Ti–4Fe–0.2O–3Cu–0.4Si alloy was produced employing spark plasma s...
Interstitial oxygen embrittles titanium, particularly at cryogenic temperatures, which necessitates ...
Revived interest for beta Ti alloys with increased oxygen content is motivated by the prospect of ac...