The development of new β-Ti alloys has been extensively studied in the medical field in recent times due to their more suitable mechanical properties, such as a relatively low Young’s modulus. This paper analyzes the influence of heat treatments (homogenization and annealing) and hot rolling on the microstructure, phase composition, and some mechanical properties of ternary alloys of the Ti-xNb-5Mo system, with an amount of Nb varying between 0 and 30 wt%. The samples are produced by argon arc melting. After melting, the samples are homogenized at 1000 °C for 24 h and are hot rolled and annealed at 1000 °C for 6 h with slow cooling. Structural and microstructural analyses are made using X-ray diffraction and optical and scanning electron mi...
Metastable β titanium alloys are developed for biomedical applications due to their low Young’s modu...
The correlation between the composition, aging heat treatments, microstructural features and mechani...
The mechanical properties of near β Ti-alloys are highly dependent on their microstructures, which o...
Alloys for orthopaedic and dentistry applications require high mechanical strength and a low Young's...
Mechanical properties of metastable β-Ti alloys are highly dependent on the final microstructure, wh...
Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)Mechanical properties of metasta...
The Ti-15Mo-xNb system integrates a new class of titanium alloys without the presence of aluminum an...
Metastable β-Ti alloys have become one of the most attractive implant materials due to their high bi...
β-metastable titanium alloys with high strength to Young's modulus ratio have been developed by diff...
A new generation of titanium alloys with non-toxic, non-allergenic elements and lower Young’s modulu...
Metastable β-type Ti alloys with non-toxic addition elements such as Mo, Zr, Sn, Ta and Nb were deve...
A low Young's modulus is required for titanium alloys used in orthopedic implants, such as hip prost...
In this work, theoretical composition design and thermo-mechanical treatments were combined in order...
The effects of alloy chemistry and heat treatment on the microstructure and mechanical properties of...
<div><p>Metastable β-type Ti alloys with non-toxic addition elements such as Mo, Zr, Sn, Ta and Nb w...
Metastable β titanium alloys are developed for biomedical applications due to their low Young’s modu...
The correlation between the composition, aging heat treatments, microstructural features and mechani...
The mechanical properties of near β Ti-alloys are highly dependent on their microstructures, which o...
Alloys for orthopaedic and dentistry applications require high mechanical strength and a low Young's...
Mechanical properties of metastable β-Ti alloys are highly dependent on the final microstructure, wh...
Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)Mechanical properties of metasta...
The Ti-15Mo-xNb system integrates a new class of titanium alloys without the presence of aluminum an...
Metastable β-Ti alloys have become one of the most attractive implant materials due to their high bi...
β-metastable titanium alloys with high strength to Young's modulus ratio have been developed by diff...
A new generation of titanium alloys with non-toxic, non-allergenic elements and lower Young’s modulu...
Metastable β-type Ti alloys with non-toxic addition elements such as Mo, Zr, Sn, Ta and Nb were deve...
A low Young's modulus is required for titanium alloys used in orthopedic implants, such as hip prost...
In this work, theoretical composition design and thermo-mechanical treatments were combined in order...
The effects of alloy chemistry and heat treatment on the microstructure and mechanical properties of...
<div><p>Metastable β-type Ti alloys with non-toxic addition elements such as Mo, Zr, Sn, Ta and Nb w...
Metastable β titanium alloys are developed for biomedical applications due to their low Young’s modu...
The correlation between the composition, aging heat treatments, microstructural features and mechani...
The mechanical properties of near β Ti-alloys are highly dependent on their microstructures, which o...