Better understanding of the distribution of elastic and plastic strains in deformed polycrystalline, multiphase materials is important for structural engineering. The deformation response depends upon the interaction of grains of different orientations, and the anisotropy associated with each phase. Strain partitioning and tensile-compressive hardening asymmetry arises due to mismatches in modulus and ductility between grains and phases in alloys such as Ti-6Al-4V that displays both strong anisotropy within one phase and significant differences of properties between phases. Simple four-point bent beam samples were studied using the newly available energy-dispersive X-ray diffraction setup at the high energy white-beam synchrotron beamline I...
AbstractLong-standing evidence suggests that plasticity in metals may proceed in an intermittent fas...
International audienceThe overall plastic behavior of polycrystalline materials strongly depends on ...
AbstractA methodology to simulate X-ray diffraction lattice strains using crystal plasticity, replic...
Better understanding of the distribution of elastic and plastic strains in deformed polycrystalline,...
In this paper a 3D, elastically anisotropic crystal-plasticity based constitutive model is used to d...
Deformation and internal stress distribution in polycrystalline materials depend upon interactions a...
This paper presents the results of a study of elastoplastic deformation of titanium alloy Ti-6Al-4V ...
Understanding the conditions that drive phenomena like fatigue crack initiation in polycrystalline s...
Quantifying the state of materials and understanding their micromechanical behavior are ever more im...
A caked synchrotron X-ray diffraction (SXRD) dataset, recording diffraction pattern rings during the...
The primary aim of this research was to develop and improve the experimental method and data interpr...
The methods most commonly used for the determination of the elastic lattice deformation and distorti...
The combination of synchrotron radiation x-ray imaging and diffraction techniques offers new possibi...
Diffraction experiments using high energy, high intensity synchrotron X-ray beams are a powerful met...
Microscopic beams of penetrating synchrotron radiation provide a unique tool for the analysis of mat...
AbstractLong-standing evidence suggests that plasticity in metals may proceed in an intermittent fas...
International audienceThe overall plastic behavior of polycrystalline materials strongly depends on ...
AbstractA methodology to simulate X-ray diffraction lattice strains using crystal plasticity, replic...
Better understanding of the distribution of elastic and plastic strains in deformed polycrystalline,...
In this paper a 3D, elastically anisotropic crystal-plasticity based constitutive model is used to d...
Deformation and internal stress distribution in polycrystalline materials depend upon interactions a...
This paper presents the results of a study of elastoplastic deformation of titanium alloy Ti-6Al-4V ...
Understanding the conditions that drive phenomena like fatigue crack initiation in polycrystalline s...
Quantifying the state of materials and understanding their micromechanical behavior are ever more im...
A caked synchrotron X-ray diffraction (SXRD) dataset, recording diffraction pattern rings during the...
The primary aim of this research was to develop and improve the experimental method and data interpr...
The methods most commonly used for the determination of the elastic lattice deformation and distorti...
The combination of synchrotron radiation x-ray imaging and diffraction techniques offers new possibi...
Diffraction experiments using high energy, high intensity synchrotron X-ray beams are a powerful met...
Microscopic beams of penetrating synchrotron radiation provide a unique tool for the analysis of mat...
AbstractLong-standing evidence suggests that plasticity in metals may proceed in an intermittent fas...
International audienceThe overall plastic behavior of polycrystalline materials strongly depends on ...
AbstractA methodology to simulate X-ray diffraction lattice strains using crystal plasticity, replic...