The study of the fundamentals of the α → ω and β → ω phase transformations induced by high-pressure torsion (HPT) in Ti–Nb-based alloys is presented in the current work. Prior to HPT, three alloys with 5, 10, and 20 wt% of Nb were annealed in the temperature range of 700–540°C in order to obtain the (α + β)-phase state with a different amount of the β-phase. The samples were annealed for a long time in order to reach equilibrium Nb content in the α-solid solution. Scanning electron microscope (SEM), transmission electron microscopy, and X-ray diffraction techniques were used for the characterization of the microstructure evolution and phase transformations. HPT results in a strong grain refinement of the microstructure, a partial transforma...
A metastable β solution treated Ti15Mo alloy was deformed by high pressure torsion (HPT) resulting i...
The microstructure and properties of titanium-based alloys can be tailored using severe plastic defo...
Experiments were conducted on Ti-based alloys including a commercially pure titanium (α phase), Ti-6...
It is well known that severe plastic deformation not only leads to strong grain refinement and mater...
This paper discusses the features of ω-phase formation and its thermal stability depending on the ph...
The development of next generation Ti-based alloys demand completely new processes and approaches. I...
The microstructure and properties of titanium-based alloys can be tailored using severe plastic defo...
In this work, the formation and thermal stability of the ω-Ti(Fe) phase that were produced by the hi...
The pressure influence on the α → ω transformation in Ti–Co alloys has been studied during high pres...
Results of investigations of structural and phase transformations that occur in the titanium-nick-El...
We have studied the compressibility and stability of different β-titanium alloys at high pressure, i...
We have studied the compressibility and stability of different β-titanium alloys at high pressure, i...
We have studied the compressibility and stability of different β-titanium alloys at high pressure, i...
The Ti-18Zr-15Nb shape memory alloys are a new material for medical implants. The regularities of ph...
The Ti-18Zr-15Nb shape memory alloys are a new material for medical implants. The regularities of ph...
A metastable β solution treated Ti15Mo alloy was deformed by high pressure torsion (HPT) resulting i...
The microstructure and properties of titanium-based alloys can be tailored using severe plastic defo...
Experiments were conducted on Ti-based alloys including a commercially pure titanium (α phase), Ti-6...
It is well known that severe plastic deformation not only leads to strong grain refinement and mater...
This paper discusses the features of ω-phase formation and its thermal stability depending on the ph...
The development of next generation Ti-based alloys demand completely new processes and approaches. I...
The microstructure and properties of titanium-based alloys can be tailored using severe plastic defo...
In this work, the formation and thermal stability of the ω-Ti(Fe) phase that were produced by the hi...
The pressure influence on the α → ω transformation in Ti–Co alloys has been studied during high pres...
Results of investigations of structural and phase transformations that occur in the titanium-nick-El...
We have studied the compressibility and stability of different β-titanium alloys at high pressure, i...
We have studied the compressibility and stability of different β-titanium alloys at high pressure, i...
We have studied the compressibility and stability of different β-titanium alloys at high pressure, i...
The Ti-18Zr-15Nb shape memory alloys are a new material for medical implants. The regularities of ph...
The Ti-18Zr-15Nb shape memory alloys are a new material for medical implants. The regularities of ph...
A metastable β solution treated Ti15Mo alloy was deformed by high pressure torsion (HPT) resulting i...
The microstructure and properties of titanium-based alloys can be tailored using severe plastic defo...
Experiments were conducted on Ti-based alloys including a commercially pure titanium (α phase), Ti-6...