In this work, theoretical composition design and thermo-mechanical treatments were combined in order to improve the mechanical compatibility of a biomedical β-type titanium alloy. By applying a composition design theory, cold rolling and low temperature aging, a metastable β-type Ti-35Nb-7Zr-5Ta (wt%) alloy with an elastic modulus of 47 GPa and a yield strength of 730 MPa was successfully fabricated. This combination of high yield strength and low elastic modulus resulted in enhanced elastic recoverable strain of 1.7%, which is much higher than that of the conventional metallic biomaterials. The microstructure responsible for the much sought-after mechanical properties was observed to be mainly consisted of a homogeneous distribution of nan...
Microstructure evolutions of Ti-27Nb-8Zr (mass fraction, %) biomedical alloy subjected to different ...
Effects of thermomechanical treatment on the microstructure and superelasticity of Ti-7.5Nb-4Mo-2Sn ...
International audienceThermomechanical treatments have been proved to be an efficient way to improve...
A low Young's modulus is required for titanium alloys used in orthopedic implants, such as hip prost...
Metastable β titanium alloys are developed for biomedical applications due to their low Young’s modu...
β-metastable titanium alloys with high strength to Young's modulus ratio have been developed by diff...
International audienceRecently, beta-Ti-based alloys consisting of non-cytotoxic elements and posses...
AbstractThis paper presents a systematic study of newly developed metastable β-type Ti–25Nb–2Mo–4Sn ...
International audienceThe objective of this study was to develop a thermo-mechanical strategy to cre...
AbstractThe evolutions of phase constitutions and mechanical properties of a β-phaseTi–36Nb–5Zr (wt%...
The development of new β-Ti alloys has been extensively studied in the medical field in recent times...
The aim of this work was to achieve Ti-β alloys without considerable toxic elements (Al and V) with ...
Metastable beta-titanium alloys combine exceptionally low Young's modulus and high biocompatibility,...
A new generation of titanium alloys with non-toxic, non-allergenic elements and lower Young’s modulu...
The effects of alloy chemistry and heat treatment on the microstructure and mechanical properties of...
Microstructure evolutions of Ti-27Nb-8Zr (mass fraction, %) biomedical alloy subjected to different ...
Effects of thermomechanical treatment on the microstructure and superelasticity of Ti-7.5Nb-4Mo-2Sn ...
International audienceThermomechanical treatments have been proved to be an efficient way to improve...
A low Young's modulus is required for titanium alloys used in orthopedic implants, such as hip prost...
Metastable β titanium alloys are developed for biomedical applications due to their low Young’s modu...
β-metastable titanium alloys with high strength to Young's modulus ratio have been developed by diff...
International audienceRecently, beta-Ti-based alloys consisting of non-cytotoxic elements and posses...
AbstractThis paper presents a systematic study of newly developed metastable β-type Ti–25Nb–2Mo–4Sn ...
International audienceThe objective of this study was to develop a thermo-mechanical strategy to cre...
AbstractThe evolutions of phase constitutions and mechanical properties of a β-phaseTi–36Nb–5Zr (wt%...
The development of new β-Ti alloys has been extensively studied in the medical field in recent times...
The aim of this work was to achieve Ti-β alloys without considerable toxic elements (Al and V) with ...
Metastable beta-titanium alloys combine exceptionally low Young's modulus and high biocompatibility,...
A new generation of titanium alloys with non-toxic, non-allergenic elements and lower Young’s modulu...
The effects of alloy chemistry and heat treatment on the microstructure and mechanical properties of...
Microstructure evolutions of Ti-27Nb-8Zr (mass fraction, %) biomedical alloy subjected to different ...
Effects of thermomechanical treatment on the microstructure and superelasticity of Ti-7.5Nb-4Mo-2Sn ...
International audienceThermomechanical treatments have been proved to be an efficient way to improve...