The peak profiles of standard reference materials have been investigated with energy-dispersive X-ray diffraction at a synchrotron source. Keeping the detector dead time below 2%, the peak profiles were essentially pure Gaussians independent of energy in the range investigated. Plastic deformation of ductile f.c.c.-based materials (Cu3Au and Au) leads to increased Lorentzian contributions to the peak profiles. A single-line profile analysis was performed to obtain estimates of size and strain; reasonable values were found
Synchrotron energy-dispersive X-ray diffraction experiments on station 16.3 at the SRS for residual ...
The feasibility of high-resolution strain mapping in bulk samples with both high-spatial and strain ...
In order to predict the durability of engineering components and improve performance, it is mandator...
The peak profiles of standard reference materials have been investigated with energy-dispersive X-ra...
A tensonometer for stretching metal foils has been constructed for the study of strain broadening in...
An important advantage of energy dispersive X-ray diffraction is the opportunity to obtain diffracti...
Abstract X-ray diffraction peak profile analysis has become a powerful tool during the last two deca...
The combination of these techniques is a strong issue for the construction and development of future...
Powder diffraction is one of the fundamental techniques for the investigation of materials. Its sens...
The feasibility of both high spatial and strain resolution is demonstrated using high-energy X-rays ...
Synchrotron energy-dispersive X-ray diffraction experiments on station 16.3 at the SRS for residual ...
Continuous tuneable wavelength in the range [MATH], high brilliance and parallelity of the beam are ...
A tensonometer for stretching metal foils has been constructed for the study of strain broadening i...
Quantifying the state of materials and understanding their micromechanical behavior are ever more im...
The important advantage of energy-dispersive X-ray diffraction is the opportunity to obtain diffract...
Synchrotron energy-dispersive X-ray diffraction experiments on station 16.3 at the SRS for residual ...
The feasibility of high-resolution strain mapping in bulk samples with both high-spatial and strain ...
In order to predict the durability of engineering components and improve performance, it is mandator...
The peak profiles of standard reference materials have been investigated with energy-dispersive X-ra...
A tensonometer for stretching metal foils has been constructed for the study of strain broadening in...
An important advantage of energy dispersive X-ray diffraction is the opportunity to obtain diffracti...
Abstract X-ray diffraction peak profile analysis has become a powerful tool during the last two deca...
The combination of these techniques is a strong issue for the construction and development of future...
Powder diffraction is one of the fundamental techniques for the investigation of materials. Its sens...
The feasibility of both high spatial and strain resolution is demonstrated using high-energy X-rays ...
Synchrotron energy-dispersive X-ray diffraction experiments on station 16.3 at the SRS for residual ...
Continuous tuneable wavelength in the range [MATH], high brilliance and parallelity of the beam are ...
A tensonometer for stretching metal foils has been constructed for the study of strain broadening i...
Quantifying the state of materials and understanding their micromechanical behavior are ever more im...
The important advantage of energy-dispersive X-ray diffraction is the opportunity to obtain diffract...
Synchrotron energy-dispersive X-ray diffraction experiments on station 16.3 at the SRS for residual ...
The feasibility of high-resolution strain mapping in bulk samples with both high-spatial and strain ...
In order to predict the durability of engineering components and improve performance, it is mandator...