Abstract: This work aims to develop a kind of metastable β titanium alloys applied in cardiovascular stent. Ti-12Mo (wt. %) alloy attracted our attention due to its large strength, large ductility and significant work-hardening effect. In order to further understand the deformation mechanism of Ti-12Mo alloy during tensile process, several in-situ characterization investigations such as electron backscatter diffraction (EBSD) under tensile load, transmission electron microscopy (TEM) under tensile load and heating, isothermal electrical resistivity measurements, etc., combined with theoretical Schmid factor calculations were carried out. These techniques allowed to investigate in details the diverse pathways (deformation mechanism and micro...
Titanium-based biomaterials are the gold standard for orthopedic implants; however, they are not gen...
At present, researchers pay great attention to the development of metastable β-titanium alloys. A ta...
Titanium alloys have always overtopped by their excellent biocompatibility. Nowadays, Ti-6Al-4V allo...
Abstract: This work aims to develop a kind of metastable β titanium alloys applied in cardiovascular...
In this work, based on combination of the ‘d-electron alloy design method’ and controlling of electr...
The increased use of metallic biomaterials in contact with blood e.g. for application as coronary st...
Titanium alloys have already been extensively used as orthopedic implants due to the good mechanical...
International audienceAs expected from the alloy design procedure, combined Twinning Induced Plastic...
In order to tackle the lack of ductility and work-hardening of titanium alloys, a new ...
The work carried out concerns the development and characterization of new high deformation titanium ...
Les alliages de titane sont actuellement très utilisés comme implants orthopédiques de part leurs bo...
The aim of this Phd was to design a Ti-bêta alloy that would have a good Y.S/ductility balance. The ...
Owing to a unique profile of properties such as high specific strength and excellent corrosion resis...
Biocompatible metastable β-titanium alloys have attracted much attention for biomedical applications...
This study investigates the mechanical properties and the deformation mechanisms active in Ti–25Nb–3...
Titanium-based biomaterials are the gold standard for orthopedic implants; however, they are not gen...
At present, researchers pay great attention to the development of metastable β-titanium alloys. A ta...
Titanium alloys have always overtopped by their excellent biocompatibility. Nowadays, Ti-6Al-4V allo...
Abstract: This work aims to develop a kind of metastable β titanium alloys applied in cardiovascular...
In this work, based on combination of the ‘d-electron alloy design method’ and controlling of electr...
The increased use of metallic biomaterials in contact with blood e.g. for application as coronary st...
Titanium alloys have already been extensively used as orthopedic implants due to the good mechanical...
International audienceAs expected from the alloy design procedure, combined Twinning Induced Plastic...
In order to tackle the lack of ductility and work-hardening of titanium alloys, a new ...
The work carried out concerns the development and characterization of new high deformation titanium ...
Les alliages de titane sont actuellement très utilisés comme implants orthopédiques de part leurs bo...
The aim of this Phd was to design a Ti-bêta alloy that would have a good Y.S/ductility balance. The ...
Owing to a unique profile of properties such as high specific strength and excellent corrosion resis...
Biocompatible metastable β-titanium alloys have attracted much attention for biomedical applications...
This study investigates the mechanical properties and the deformation mechanisms active in Ti–25Nb–3...
Titanium-based biomaterials are the gold standard for orthopedic implants; however, they are not gen...
At present, researchers pay great attention to the development of metastable β-titanium alloys. A ta...
Titanium alloys have always overtopped by their excellent biocompatibility. Nowadays, Ti-6Al-4V allo...