Most complex engineering components experience varied loading in use. We conducted successive experiments of cyclic tensile deformation followed by electron-backscattered diffraction imaging of the same area on each of several magnesium alloy (ZM) sample to investigate the microstructure and texture evolution during cyclic loading. In this way we correlated the evolving deformed microstructure of cyclically loaded magnesium to the initial grain orientations. To investigate the effects of the strain path, the behaviour of samples with and without pre-compression was compared. Twins can propagate from grain to grain and twin chains will form in the material without any pre-deformation. Twin chains are a result of twin transmission at grain bo...
The microstructural evolution during compression (at 350°C and a strain rate of 0.01s-1) was exa...
We performed time-resolved x-ray diffraction on bulk, equal-channel angular extruded (ECAE) polycrys...
Magnesium (Mg) is of interest as a lightweight structural material, given its potential for energy-e...
In this thesis, cyclic tests have been performed on Mg alloy to measure the twinning activity during...
The Taylor-Lin polycrystal elasto-viscoplastic model was employed to simulate the fatigue behavior o...
Twinning is an important mode of deformation in magnesium (Mg) and its alloys at high strain rates. ...
The evolution of flow stress and microstructure during the deformation of two Mg-based (+Al, Mn, Zn)...
An SEM in situ uniaxial tensile testing setup allowing HR-EBSD acquisition during deformation was us...
The dynamic mechanical behavior of magnesium and its alloys is a subject of interest primarily becau...
International audienceWe present a systematic investigation of {101¯2} extension twinning mechanism ...
International audienceA statistical analysis is conducted on sequential (10-12)-(10-12) double exten...
There is great interest in magnesium and magnesium alloys for use as structural materials due to the...
While there have been many numerical and experimental studies of various aspects of mechanical twinn...
Deformation twinning plays an important role in the yielding of extruded magnesium alloys, especiall...
The {1 0 - 1 2} twinning activity in plastic deformation of a polycrystalline magnesium alloy was in...
The microstructural evolution during compression (at 350°C and a strain rate of 0.01s-1) was exa...
We performed time-resolved x-ray diffraction on bulk, equal-channel angular extruded (ECAE) polycrys...
Magnesium (Mg) is of interest as a lightweight structural material, given its potential for energy-e...
In this thesis, cyclic tests have been performed on Mg alloy to measure the twinning activity during...
The Taylor-Lin polycrystal elasto-viscoplastic model was employed to simulate the fatigue behavior o...
Twinning is an important mode of deformation in magnesium (Mg) and its alloys at high strain rates. ...
The evolution of flow stress and microstructure during the deformation of two Mg-based (+Al, Mn, Zn)...
An SEM in situ uniaxial tensile testing setup allowing HR-EBSD acquisition during deformation was us...
The dynamic mechanical behavior of magnesium and its alloys is a subject of interest primarily becau...
International audienceWe present a systematic investigation of {101¯2} extension twinning mechanism ...
International audienceA statistical analysis is conducted on sequential (10-12)-(10-12) double exten...
There is great interest in magnesium and magnesium alloys for use as structural materials due to the...
While there have been many numerical and experimental studies of various aspects of mechanical twinn...
Deformation twinning plays an important role in the yielding of extruded magnesium alloys, especiall...
The {1 0 - 1 2} twinning activity in plastic deformation of a polycrystalline magnesium alloy was in...
The microstructural evolution during compression (at 350°C and a strain rate of 0.01s-1) was exa...
We performed time-resolved x-ray diffraction on bulk, equal-channel angular extruded (ECAE) polycrys...
Magnesium (Mg) is of interest as a lightweight structural material, given its potential for energy-e...