Synchrotron-based micro-beam Laue diffraction is an experimental technique for the study of intra-granular lattice orientation and elastic strain in individual crystallites of polycrystalline engineering alloys. Traditionally the technique operates in reflection geometry with a polychromatic X-ray beam focused to a sub-micron spot and with photon energy ranging from approximately 5 to 30 keV. This allows the study of material in the near-surface region. In this paper the first feasibility study of extending this technique to a polychromatic beam with significantly higher photon energies from 50 to 300 keV is presented. At these energies, transmission through even thick samples can be achieved and it becomes possible to study deeply buried m...
Synchrotron 3D X-ray Laue microdiffraction, available at beamline 34-ID-E at Advanced Photon Source ...
Synchrotron x-ray sources provide high-brilliance beams that can be focused to submicron sizes with ...
Local crystal structure, crystal orientation, and crystal deformation can all be probed by Laue diff...
Synchrotron-based micro-beam Laue diffraction is an experimental technique for the study of intra-gr...
An understanding of the mechanical response of modern engineering alloys to complex loading conditio...
An understanding of the mechanical response of modern engineering alloys to complex loading conditio...
Laue diffraction, energy scanning and reciprocal space mapping are three micro-beam synchrotron X-ra...
AbstractDeformation in polycrystalline materials does not occur uniformly in the constituent grains,...
Laue diffraction, energy scanning and reciprocal space mapping are three micro-beam synchrotron X-ra...
A laboratory diffraction system capable of illuminating individual grains in a polycrystalline matri...
A laboratory diffraction system capable of illuminating individual grains in a polycrystalline matri...
Microscopic beams of penetrating synchrotron radiation provide a unique tool for the analysis of mat...
Deformation in polycrystalline materials does not occur uniformly in the constituent grains, but sho...
For high performance, safety-critical applications, such as aerospace components, in-depth understan...
Quantifying the state of materials and understanding their micromechanical behavior are ever more im...
Synchrotron 3D X-ray Laue microdiffraction, available at beamline 34-ID-E at Advanced Photon Source ...
Synchrotron x-ray sources provide high-brilliance beams that can be focused to submicron sizes with ...
Local crystal structure, crystal orientation, and crystal deformation can all be probed by Laue diff...
Synchrotron-based micro-beam Laue diffraction is an experimental technique for the study of intra-gr...
An understanding of the mechanical response of modern engineering alloys to complex loading conditio...
An understanding of the mechanical response of modern engineering alloys to complex loading conditio...
Laue diffraction, energy scanning and reciprocal space mapping are three micro-beam synchrotron X-ra...
AbstractDeformation in polycrystalline materials does not occur uniformly in the constituent grains,...
Laue diffraction, energy scanning and reciprocal space mapping are three micro-beam synchrotron X-ra...
A laboratory diffraction system capable of illuminating individual grains in a polycrystalline matri...
A laboratory diffraction system capable of illuminating individual grains in a polycrystalline matri...
Microscopic beams of penetrating synchrotron radiation provide a unique tool for the analysis of mat...
Deformation in polycrystalline materials does not occur uniformly in the constituent grains, but sho...
For high performance, safety-critical applications, such as aerospace components, in-depth understan...
Quantifying the state of materials and understanding their micromechanical behavior are ever more im...
Synchrotron 3D X-ray Laue microdiffraction, available at beamline 34-ID-E at Advanced Photon Source ...
Synchrotron x-ray sources provide high-brilliance beams that can be focused to submicron sizes with ...
Local crystal structure, crystal orientation, and crystal deformation can all be probed by Laue diff...