A nanocrystalline Ti alloy powder was fabricated using cryomilling. The grain size and lattice strain evolution during cryomilling were quantitatively analyzed using X-ray diffraction (XRD) based on the Scherrer equation, Williamson-Hall (W-H) plotting method, and size-strain (S-S) method assuming uniform deformation. Other physical parameters including stress and strain have been calculated. The average crystallite size and the lattice strain evaluated from XRD analysis are in good agreement with the result of transmission electron microscopy (TEM)
In this work, different nanocrystalline metals and alloys were investigated by a synchrotron-based i...
The titanium alloy, Ti-6Al-4V is investigated to increase the current understanding of deformation i...
The microstructure, mechanical properties and deformation response of bimodal structured nanocrystal...
A nanocrystalline Ti alloy powder was fabricated using cryomilling. The grain size and lattice strai...
Lattice parameters and residual stresses in the bulk nanocrystalline/ultrafine-grained titanium were...
We report on a study of the nanocrystalline structure in Ti, which was produced by cryogenic milling...
The microstructural evolution during processing and tensile deformation of a nanocrystalline Al-Ti-C...
The grain growth, thermal stability, and recrystallization behavior of a cryomilled Ti alloy with a ...
In this study, we investigated the effects of strain rate on tensile deformation behaviour in Ti-6Al...
In this study, the tensile deformation behavior of an electron beam melted Ti−6Al−4V alloy was exami...
The mechanical properties of the Ti-6Al-4V alloy are significantly determined by the process used fo...
Mechanical behavior of a severe plastic deformation (SePD) processed nanocrystalline Ti-6Al-4V alloy...
The microstructure of three different nanocrystalline materials with hexagonal crystal structure are...
Residual stress/strain and microstructure used in additively manufactured material are strongly depe...
Additive manufacturing is being increasingly used in the fabrication of Ti-6Al-4V parts to combine e...
In this work, different nanocrystalline metals and alloys were investigated by a synchrotron-based i...
The titanium alloy, Ti-6Al-4V is investigated to increase the current understanding of deformation i...
The microstructure, mechanical properties and deformation response of bimodal structured nanocrystal...
A nanocrystalline Ti alloy powder was fabricated using cryomilling. The grain size and lattice strai...
Lattice parameters and residual stresses in the bulk nanocrystalline/ultrafine-grained titanium were...
We report on a study of the nanocrystalline structure in Ti, which was produced by cryogenic milling...
The microstructural evolution during processing and tensile deformation of a nanocrystalline Al-Ti-C...
The grain growth, thermal stability, and recrystallization behavior of a cryomilled Ti alloy with a ...
In this study, we investigated the effects of strain rate on tensile deformation behaviour in Ti-6Al...
In this study, the tensile deformation behavior of an electron beam melted Ti−6Al−4V alloy was exami...
The mechanical properties of the Ti-6Al-4V alloy are significantly determined by the process used fo...
Mechanical behavior of a severe plastic deformation (SePD) processed nanocrystalline Ti-6Al-4V alloy...
The microstructure of three different nanocrystalline materials with hexagonal crystal structure are...
Residual stress/strain and microstructure used in additively manufactured material are strongly depe...
Additive manufacturing is being increasingly used in the fabrication of Ti-6Al-4V parts to combine e...
In this work, different nanocrystalline metals and alloys were investigated by a synchrotron-based i...
The titanium alloy, Ti-6Al-4V is investigated to increase the current understanding of deformation i...
The microstructure, mechanical properties and deformation response of bimodal structured nanocrystal...