Metastable β-Ti alloys have become one of the most attractive implant materials due to their high biocorrosion resistance, biocompatibility, and mechanical properties, including lower Young’s modulus values. Mechanical properties of these alloys are strongly dependent on the final microstructure, which is controlled by thermomechanical treatment processing, in particular the Young’s modulus and hardness. The aim of this work was to analyze the influence of phase precipitations in heat-treated Ti-12Mo-xNb (x = 0, 3, 8, 13, 17, and 20) alloys. The alloys were prepared via arc melting and treated at 950 °C/1 h, and then quenched in water. The microstructures were analyzed by optical microscopy, transmission electron microscopy, and X-ray diffr...
In this paper, the effects of Nb addition (5–20 wt %) on the microstructure, mechanical properties, ...
In this paper, the effects of Nb addition (5–20 wt %) on the microstructure, mechanical properties, ...
Titanium alloys are widely used in the manufacture of biomedical implants because they possess an ex...
This study attempts to develop Ti-Nb alloys with elastic moduli that approach that of human bone. Th...
Titanium alloys are widely used in the manufacture of biomedical implants because they possess an ex...
The development of new β-Ti alloys has been extensively studied in the medical field in recent times...
Titanium alloys are widely used in the manufacture of biomedical implants because they possess an ex...
Ti-Nb based alloys are promising materials in terms of material properties, such as biocompatibility...
A new generation of titanium alloys with non-toxic, non-allergenic elements and lower Young’s modulu...
Ti alloys contemplating the simultaneous addition of Fe and Nb are available in the literature as Fe...
Ti alloys contemplating the simultaneous addition of Fe and Nb are available in the literature as Fe...
Alloys for orthopaedic and dentistry applications require high mechanical strength and a low Young's...
Ti-Nb alloys are potential candidates owing to their excellent mechanical properties and high corros...
Ti alloys contemplating the simultaneous addition of Fe and Nb are available in the literature as Fe...
In this study, a series of Ti-xNb-yMo (x = 5-40 wt.% in 5 wt.% increments; and y = 3, 5, 10 wt%) all...
In this paper, the effects of Nb addition (5–20 wt %) on the microstructure, mechanical properties, ...
In this paper, the effects of Nb addition (5–20 wt %) on the microstructure, mechanical properties, ...
Titanium alloys are widely used in the manufacture of biomedical implants because they possess an ex...
This study attempts to develop Ti-Nb alloys with elastic moduli that approach that of human bone. Th...
Titanium alloys are widely used in the manufacture of biomedical implants because they possess an ex...
The development of new β-Ti alloys has been extensively studied in the medical field in recent times...
Titanium alloys are widely used in the manufacture of biomedical implants because they possess an ex...
Ti-Nb based alloys are promising materials in terms of material properties, such as biocompatibility...
A new generation of titanium alloys with non-toxic, non-allergenic elements and lower Young’s modulu...
Ti alloys contemplating the simultaneous addition of Fe and Nb are available in the literature as Fe...
Ti alloys contemplating the simultaneous addition of Fe and Nb are available in the literature as Fe...
Alloys for orthopaedic and dentistry applications require high mechanical strength and a low Young's...
Ti-Nb alloys are potential candidates owing to their excellent mechanical properties and high corros...
Ti alloys contemplating the simultaneous addition of Fe and Nb are available in the literature as Fe...
In this study, a series of Ti-xNb-yMo (x = 5-40 wt.% in 5 wt.% increments; and y = 3, 5, 10 wt%) all...
In this paper, the effects of Nb addition (5–20 wt %) on the microstructure, mechanical properties, ...
In this paper, the effects of Nb addition (5–20 wt %) on the microstructure, mechanical properties, ...
Titanium alloys are widely used in the manufacture of biomedical implants because they possess an ex...