In response to the development of new materials and the application of materials and components in new technologies the direct measurement, calculation and evaluation of textures and residual stresses has gained worldwide significance in recent years. STRESS-SPEC, the materials science diffractometer, which is jointly operated by the Technische Universität München, the Institute of Materials Science and Engineering, Technische Universität Clausthal and by GEMS, Helmholtz-Zentrum Geesthacht, is located at the thermal beam port SR-3 of the FRM II and can easily be configured either for texture analysis or strain measurements
The detection of near surface residual stress gradients in real space requires high depth resolution...
A measuring and evaluation strategy for the determination of residual stress depth distributions sij...
Due to the individual steps of manufacturing various kinds of residual stresses and strains are indu...
Abstract: In response to the development of new materials and the application of materials and com-p...
In response to the development of new material and the application of materials and components in ne...
In response to the development of new materials and the application of materials and components in ...
Dieser Beitrag ist mit Zustimmung des Rechteinhabers aufgrund einer (DFG geförderten) Allianz- bzw. ...
Recent progress in engineering includes the development of new materials and innovations in their p...
AbstractTogether with the microstructure residual stresses and crystallographic textures are importa...
Modern materials science diffractometers are generally equipped with area detectors that allow a hig...
Non destructive analysis of phase specific residual stresses and textures is only possible by diffra...
The deep penetration and selective absorption of neutrons make them a powerful tool in nondestructiv...
The E3 residual stress neutron diffractometer operated at Helmholtz-Zentrum Berlin (HZB) is designed...
The two-axis diffractometer SPN-100 at the Center of Accelerators and Nuclear Analytical Methods (CA...
The two-axis diffractometer SPN-100 at the Center of Accelerators and Nuclear Analytical Methods (CA...
The detection of near surface residual stress gradients in real space requires high depth resolution...
A measuring and evaluation strategy for the determination of residual stress depth distributions sij...
Due to the individual steps of manufacturing various kinds of residual stresses and strains are indu...
Abstract: In response to the development of new materials and the application of materials and com-p...
In response to the development of new material and the application of materials and components in ne...
In response to the development of new materials and the application of materials and components in ...
Dieser Beitrag ist mit Zustimmung des Rechteinhabers aufgrund einer (DFG geförderten) Allianz- bzw. ...
Recent progress in engineering includes the development of new materials and innovations in their p...
AbstractTogether with the microstructure residual stresses and crystallographic textures are importa...
Modern materials science diffractometers are generally equipped with area detectors that allow a hig...
Non destructive analysis of phase specific residual stresses and textures is only possible by diffra...
The deep penetration and selective absorption of neutrons make them a powerful tool in nondestructiv...
The E3 residual stress neutron diffractometer operated at Helmholtz-Zentrum Berlin (HZB) is designed...
The two-axis diffractometer SPN-100 at the Center of Accelerators and Nuclear Analytical Methods (CA...
The two-axis diffractometer SPN-100 at the Center of Accelerators and Nuclear Analytical Methods (CA...
The detection of near surface residual stress gradients in real space requires high depth resolution...
A measuring and evaluation strategy for the determination of residual stress depth distributions sij...
Due to the individual steps of manufacturing various kinds of residual stresses and strains are indu...