Surface nanostructuring of engineering materials can be utilised to enhance materials performance for various applications. The aim of this work was to investigate the evolution of microstructure and its correlation with strengthening mechanisms in nanocrystalline commercially pure titanium (cp-Ti) produced by surface mechanical attrition treatment (SMAT). The individual contributions of dislocation slip and twining as the deformation mechanisms during SMAT have been quantified using X-ray line profile analysis and corroborated with transmission electron microscopy and electron backscattered diffraction techniques. It is found that twining is operative only in the early stages of deformation. The absence of twin-twin intersections suggests ...
Evolution of deformation texture in commercially pure titanium with submicron grain size (SMG) was s...
A nanocrystalline (NC) layer with the thickness of 30 µm was produced on pure titanium surface...
In the present study, multimodal nanostructured titanium was engineered using severe plastic deforma...
Surface nanostructuring of engineering materials can be utilised to enhance materials performance fo...
The mechanism of grain refinement was studied in titanium subjected to high-rate surface mechanical ...
Surface mechanical attrition treatment (SMAT) is a high strain and strain rate severe plastic deform...
Surface mechanical attrition treatment (SMAT) is a high strain and strain rate severe plastic deform...
Severe plastic deformation methods such as equal channel angular pressing (ECAP), high pressure tors...
In the present work the influence of various parameters on formation of nano- or ultrafine-grained s...
Nanocrystalline titanium with an average grain size of about 60–70 nm was prepared by high-pressure ...
A nanocrystalline (NC) layer with the thickness of 30 µm was produced on pure titanium surface by su...
A nanocrystalline (NC) layer with the thickness of 30 μm was produced on pure titanium surface by su...
Gradient structured materials possess good combinations of strength and ductility, rendering the mat...
Evolution of deformation texture in commercially pure titanium with submicron grain size (SMG) was s...
Gradient structured materials possess good combinations of strength and ductility, rendering the mat...
Evolution of deformation texture in commercially pure titanium with submicron grain size (SMG) was s...
A nanocrystalline (NC) layer with the thickness of 30 µm was produced on pure titanium surface...
In the present study, multimodal nanostructured titanium was engineered using severe plastic deforma...
Surface nanostructuring of engineering materials can be utilised to enhance materials performance fo...
The mechanism of grain refinement was studied in titanium subjected to high-rate surface mechanical ...
Surface mechanical attrition treatment (SMAT) is a high strain and strain rate severe plastic deform...
Surface mechanical attrition treatment (SMAT) is a high strain and strain rate severe plastic deform...
Severe plastic deformation methods such as equal channel angular pressing (ECAP), high pressure tors...
In the present work the influence of various parameters on formation of nano- or ultrafine-grained s...
Nanocrystalline titanium with an average grain size of about 60–70 nm was prepared by high-pressure ...
A nanocrystalline (NC) layer with the thickness of 30 µm was produced on pure titanium surface by su...
A nanocrystalline (NC) layer with the thickness of 30 μm was produced on pure titanium surface by su...
Gradient structured materials possess good combinations of strength and ductility, rendering the mat...
Evolution of deformation texture in commercially pure titanium with submicron grain size (SMG) was s...
Gradient structured materials possess good combinations of strength and ductility, rendering the mat...
Evolution of deformation texture in commercially pure titanium with submicron grain size (SMG) was s...
A nanocrystalline (NC) layer with the thickness of 30 µm was produced on pure titanium surface...
In the present study, multimodal nanostructured titanium was engineered using severe plastic deforma...