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Quantitative X-ray tomography
X-ray computer tomography (CT) is fast becoming an accepted tool within the materials
science community for the acquisition of 3D images. Here the authors review the current …
science community for the acquisition of 3D images. Here the authors review the current …
Using the Ti–Al System to Understand Plasticity and Its Connection to Fracture and Fatigue in α Ti Alloys
Abstract The Ti–Al system, specifically with Al wt pct ranging from approximately 4 to 14 pct,
has served as a model system for exploring the deformation behavior of the hexagonal close …
has served as a model system for exploring the deformation behavior of the hexagonal close …
Combining crystal plasticity and phase field model for predicting texture evolution and the influence of nuclei clustering on recrystallization path kinetics in Ti-alloys
A three-dimensional computational framework has been developed combining a crystal
plasticity (CP) and a phase-field (PF) approach that can efficiently simulate static …
plasticity (CP) and a phase-field (PF) approach that can efficiently simulate static …
Far-field high-energy diffraction microscopy: a tool for intergranular orientation and strain analysis
The far-field high-energy diffraction microscopy technique is presented in the context of high-
energy synchrotron x-ray diffraction. For each grain in an illuminated polycrystalline volume …
energy synchrotron x-ray diffraction. For each grain in an illuminated polycrystalline volume …
High-energy diffraction microscopy at the advanced photon source
The status of the High Energy Diffraction Microscopy (HEDM) program at the 1-ID beam line
of the Advanced Photon Source is reported. HEDM applies high energy synchrotron …
of the Advanced Photon Source is reported. HEDM applies high energy synchrotron …
Modeling slip system strength evolution in Ti-7Al informed by in-situ grain stress measurements
Far-field high-energy X-ray diffraction microscopy is used to asses the evolution of slip
system strengths in hexagonal close-packed (HCP) Ti-7Al during tensile deformation in-situ …
system strengths in hexagonal close-packed (HCP) Ti-7Al during tensile deformation in-situ …
Adaptive reconstruction method for three-dimensional orientation imaging
An adaptive orientation reconstruction algorithm is developed for near-field high-energy X-
ray diffraction microscopy. When combined with a spatially adaptive extension the algorithm …
ray diffraction microscopy. When combined with a spatially adaptive extension the algorithm …
[HTML][HTML] Growth of {112 2} twins in titanium: A combined experimental and modelling investigation of the local state of deformation
In this work we combine experiments and simulations to study the residual deformation state
near twins in titanium at different stages of the complete twin growth process, including the …
near twins in titanium at different stages of the complete twin growth process, including the …
A rotational and axial motion system load frame insert for in situ high energy x-ray studies
High energy x-ray characterization methods hold great potential for gaining insight into the
behavior of materials and providing comparison datasets for the validation and development …
behavior of materials and providing comparison datasets for the validation and development …
Incipient dynamic recrystallization and adiabatic shear bands in Ti–7Al studied via in situ X-ray diffraction
The interconnected phenomena of dynamic recrystallization (DRX) and adiabatic shear
bands (ASBs) are critical features of dynamic deformation and fracture in metals. Despite …
bands (ASBs) are critical features of dynamic deformation and fracture in metals. Despite …