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New opportunities at the Materials Science Beamline at ESRF to exploit high energy nano-focus X-ray beams
A new end station for high energy (30–70 keV) X-ray diffraction experiments with nano-focus
(150–500 nm) beam sizes has been installed at beamline ID11 at the ESRF. We review …
(150–500 nm) beam sizes has been installed at beamline ID11 at the ESRF. We review …
Applying full-field measurement techniques for the thermomechanical characterization of shape memory alloys: a review and classification
Full-field measurement techniques are now mature. As such, they have profoundly impacted
the experimental mechanics community in recent years. The way that shape memory alloys …
the experimental mechanics community in recent years. The way that shape memory alloys …
Intragranular three-dimensional stress tensor fields in plastically deformed polycrystals
Y Hayashi, D Setoyama, Y Hirose, T Yoshida, H Kimura - Science, 2019 - science.org
The failure of polycrystalline materials used in infrastructure and transportation can be
catastrophic. Multiscale modeling, which requires multiscale measurements of internal …
catastrophic. Multiscale modeling, which requires multiscale measurements of internal …
Reconstructing intragranular strain fields in polycrystalline materials from scanning 3DXRD data
Two methods for reconstructing intragranular strain fields are developed for scanning three-
dimensional X-ray diffraction (3DXRD). The methods are compared with a third approach …
dimensional X-ray diffraction (3DXRD). The methods are compared with a third approach …
Microstructure and stress map** in 3D at industrially relevant degrees of plastic deformation
Strength, ductility, and failure properties of metals are tailored by plastic deformation routes.
Predicting these properties requires modeling of the structural dynamics and stress …
Predicting these properties requires modeling of the structural dynamics and stress …
[HTML][HTML] High-resolution 3D X-ray diffraction microscopy: 3D map** of deformed metal microstructures
Three-dimensional X-ray diffraction microscopy, 3DXRD, has become an established tool for
orientation and strain map** of bulk polycrystals. However, it is limited to a finite spatial …
orientation and strain map** of bulk polycrystals. However, it is limited to a finite spatial …
Hierarchical synchrotron diffraction and imaging study of the calcium sulfate hemihydrate–gypsum transformation
The mechanism of hydration of calcium sulfate hemihydrate (CaSO4· 0.5 H2O) to form
gypsum (CaSO4· 2H2O) was studied by combining scanning 3D X-ray diffraction (s3DXRD) …
gypsum (CaSO4· 2H2O) was studied by combining scanning 3D X-ray diffraction (s3DXRD) …
Resolving intragranular stress fields in plastically deformed titanium using point-focused high-energy diffraction microscopy
The response of a polycrystalline material to a mechanical load depends not only on the
response of each individual grain, but also on the interaction with its neighbors. These …
response of each individual grain, but also on the interaction with its neighbors. These …
Towards the validation of a phase field model for Ni coarsening in solid oxide cells
M Trini, S De Angelis, PS Jørgensen, PV Hendriksen… - Acta Materialia, 2021 - Elsevier
Ni coarsening in the Ni/yttria-stabilized zirconia (YSZ) fuel electrode of solid oxide cells
(SOCs) is a major cause of long-term performance degradation. Phase-field modeling is a …
(SOCs) is a major cause of long-term performance degradation. Phase-field modeling is a …
Tin whisker growth from titanium-tin intermetallic and the mechanism
Spontaneous growth of metal whiskers, represented by tin whiskers, has haunted tin-based
platings and solder joints for decades and caused huge losses to the electronics industry …
platings and solder joints for decades and caused huge losses to the electronics industry …