We present a combined experimental and numerical study that provides the understanding of deformation mechanisms and stresses in Mg AZ31B alloy across scales, from macro-scale (Type I) to micro- (inter-granular, Type II) and nano-scale (intra-granular, Type III). The combination of in situ synchrotron X-ray diffraction (XRD), in situ electron backscattered diffraction (EBSD) and crystal plasticity finite element (CPFE) modeling of crystal slip and twinning/detwinning was employed. The crystal rotation observed directly in the XRD and EBSD experiments revealed the onset and completion of the twinning/detwinning processes during in situ cyclic compression-tension loading. It also allowed reliable calibration of the key model parameters, in pa...
Twinning and detwinning behavior, together with slip behavior, are studied in a textured AZ31 magnes...
Twinning and detwinning behavior, together with slip behavior, are studied in a textured AZ31 magnes...
An SEM in situ uniaxial tensile testing setup allowing HR-EBSD acquisition during deformation was us...
We present a combined experimental and numerical study that provides the understanding of deformatio...
We present a combined experimental and numerical study that provides the understanding of deformatio...
Crystals with a hexagonal close-packed (HCP) structure are inherently anisotropic, and have a limite...
A crystal plasticity finite element method (CPFEM), considering both crystallographic slip and defor...
Diffraction data were collected using synchrotron X-ray scattering (sXRD) and electron back-scattere...
Diffraction data were collected using synchrotron X-ray scattering (sXRD) and electron back-scattere...
Diffraction data were collected using synchrotron X-ray scattering (sXRD) and electron back-scattere...
Magnesium (Mg) is of interest as a lightweight structural material, given its potential for energy-e...
Deformation twinning in Magnesium alloys both facilitates slip and forms sites for failure. Currentl...
Magnesium (Mg) is of interest as a lightweight structural material, given its potential for energy-e...
Lightweight magnesium alloys, such as AZ31, constitute alternative materials of interest for many in...
While there have been many numerical and experimental studies of various aspects of mechanical twinn...
Twinning and detwinning behavior, together with slip behavior, are studied in a textured AZ31 magnes...
Twinning and detwinning behavior, together with slip behavior, are studied in a textured AZ31 magnes...
An SEM in situ uniaxial tensile testing setup allowing HR-EBSD acquisition during deformation was us...
We present a combined experimental and numerical study that provides the understanding of deformatio...
We present a combined experimental and numerical study that provides the understanding of deformatio...
Crystals with a hexagonal close-packed (HCP) structure are inherently anisotropic, and have a limite...
A crystal plasticity finite element method (CPFEM), considering both crystallographic slip and defor...
Diffraction data were collected using synchrotron X-ray scattering (sXRD) and electron back-scattere...
Diffraction data were collected using synchrotron X-ray scattering (sXRD) and electron back-scattere...
Diffraction data were collected using synchrotron X-ray scattering (sXRD) and electron back-scattere...
Magnesium (Mg) is of interest as a lightweight structural material, given its potential for energy-e...
Deformation twinning in Magnesium alloys both facilitates slip and forms sites for failure. Currentl...
Magnesium (Mg) is of interest as a lightweight structural material, given its potential for energy-e...
Lightweight magnesium alloys, such as AZ31, constitute alternative materials of interest for many in...
While there have been many numerical and experimental studies of various aspects of mechanical twinn...
Twinning and detwinning behavior, together with slip behavior, are studied in a textured AZ31 magnes...
Twinning and detwinning behavior, together with slip behavior, are studied in a textured AZ31 magnes...
An SEM in situ uniaxial tensile testing setup allowing HR-EBSD acquisition during deformation was us...