This study investigates the mechanical properties and the deformation mechanisms active in Ti–25Nb–3Mo–3Zr–2Sn fine tubes. Ti–25Nb–3Mo–3Zr–2Sn alloy is a recently developed metastable β titanium alloy intended for biomedical applications. Tensile tests were carried out on the fine tubes. The modulus of the Ti–25Nb–3Mo–3Zr–2Sn fine tubes increased with reductions in the diameter for tubes in the cold rolled and annealed conditions. In comparison with cold rolled tubes, the annealed tubes exhibit increased strain hardening behaviour and superior ductility. Mechanical twins, stress-induced martensitic transformation and the textures of the β and α″ phases were investigated. The results show that the fine tubes exhibit different moduli which ar...
A powder metallurgy processed metastable Ti-10V-3Fe-3Al alloy is thermo-mechanically processed for o...
The optimisation of compressor stage aerofoil and fan blade design remains an important area of tita...
International audienceTransformation Induced Plasticity and Twinning Induced Plasticity (TWIP) titan...
International audienceAs expected from the alloy design procedure, combined Twinning Induced Plastic...
International audienceIn this study, the microstructure and the mechanical properties of two new bio...
Ti-(24,26)Nb-(2,4)Hf at.% alloys were designed by assuming that hafnium has a similar effect to zirc...
Owing to a unique profile of properties such as high specific strength and excellent corrosion resis...
Metastable β titanium alloys are essential materials for biomedical implant and aerospace applicatio...
Abstract: This work aims to develop a kind of metastable β titanium alloys applied in cardiovascular...
Metastable β titanium alloys are essential materials for biomaterials and aerospace applications. It...
International audienceA new family of metastable beta type titanium alloys has recently been designe...
AbstractThe evolutions of phase constitutions and mechanical properties of a β-phaseTi–36Nb–5Zr (wt%...
Metastable β titanium alloys with both twinning (TWIP) and martensite transformation (TRIP) usually ...
Title: Microstructure and mechanical properties of ultra-fine grained titanium alloys Author: Bc. Kr...
Titanium alloys possessing Twinning and Transformation Induced Plasticity effects show promising mec...
A powder metallurgy processed metastable Ti-10V-3Fe-3Al alloy is thermo-mechanically processed for o...
The optimisation of compressor stage aerofoil and fan blade design remains an important area of tita...
International audienceTransformation Induced Plasticity and Twinning Induced Plasticity (TWIP) titan...
International audienceAs expected from the alloy design procedure, combined Twinning Induced Plastic...
International audienceIn this study, the microstructure and the mechanical properties of two new bio...
Ti-(24,26)Nb-(2,4)Hf at.% alloys were designed by assuming that hafnium has a similar effect to zirc...
Owing to a unique profile of properties such as high specific strength and excellent corrosion resis...
Metastable β titanium alloys are essential materials for biomedical implant and aerospace applicatio...
Abstract: This work aims to develop a kind of metastable β titanium alloys applied in cardiovascular...
Metastable β titanium alloys are essential materials for biomaterials and aerospace applications. It...
International audienceA new family of metastable beta type titanium alloys has recently been designe...
AbstractThe evolutions of phase constitutions and mechanical properties of a β-phaseTi–36Nb–5Zr (wt%...
Metastable β titanium alloys with both twinning (TWIP) and martensite transformation (TRIP) usually ...
Title: Microstructure and mechanical properties of ultra-fine grained titanium alloys Author: Bc. Kr...
Titanium alloys possessing Twinning and Transformation Induced Plasticity effects show promising mec...
A powder metallurgy processed metastable Ti-10V-3Fe-3Al alloy is thermo-mechanically processed for o...
The optimisation of compressor stage aerofoil and fan blade design remains an important area of tita...
International audienceTransformation Induced Plasticity and Twinning Induced Plasticity (TWIP) titan...