Magnesium (Mg) and its alloys usually show relatively low strength and poor ductility at room temperature due to their anisotropic hexagonal close-packed (HCP) crystal structure that provides a limited number of independent slip systems. Here we report that unique combinations of strength and ductility can be realized in bulk polycrystalline pure Mg by tuning the predominant deformation mode. We succeeded in obtaining the fully recrystallized specimens of pure Mg having a wide range of average grain sizes, of which minimum grain size was 650 nm, and clarified mechanical properties and deformation mechanisms at room temperature systematically as a function of the grain size. Deformation twinning and basal slip governed plastic deformation in...
Interest in Mg alloys has significantly increased in recent years for weight-critical applications. ...
Magnesium can be replaced with materials which experience strain controlled fatigue in their respect...
A Ti-AZ31 composite was severely plastically deformed by rotary swaging at room temperature up to a ...
Magnesium (Mg) is the lightest structural metal in the world. Therefore, Mg alloys hold great promis...
Recently, we have found that fully recrystallized ultrafine-grained (UFG) microstructures could be r...
The applicability of classical wrought Mg alloys is limited by their comparatively poor room tempera...
This study investigated the grain size dependence of mechanical properties and deformation mechanism...
An important limitation of wrought (rolled and extruded) Mg alloys is their inherent strong mechanic...
An investigation was conducted to examine the mechanical behavior and microstructure evolution durin...
An investigation was conducted to examine the mechanical behavior and microstructure evolution durin...
An investigation was conducted to examine the mechanical behavior and microstructure evolution durin...
An investigation was conducted to examine the mechanical behavior and microstructure evolution durin...
Deformation mechanics and microstructure evolution of material removal at the micrometer length-scal...
Extruded polycrystalline pure magnesium (Mg) with fine grain size (~1.2 µm) exhibits ductility of ov...
Deformation twinning (DT) has a very important role in accommodating plastic deformation in hexagona...
Interest in Mg alloys has significantly increased in recent years for weight-critical applications. ...
Magnesium can be replaced with materials which experience strain controlled fatigue in their respect...
A Ti-AZ31 composite was severely plastically deformed by rotary swaging at room temperature up to a ...
Magnesium (Mg) is the lightest structural metal in the world. Therefore, Mg alloys hold great promis...
Recently, we have found that fully recrystallized ultrafine-grained (UFG) microstructures could be r...
The applicability of classical wrought Mg alloys is limited by their comparatively poor room tempera...
This study investigated the grain size dependence of mechanical properties and deformation mechanism...
An important limitation of wrought (rolled and extruded) Mg alloys is their inherent strong mechanic...
An investigation was conducted to examine the mechanical behavior and microstructure evolution durin...
An investigation was conducted to examine the mechanical behavior and microstructure evolution durin...
An investigation was conducted to examine the mechanical behavior and microstructure evolution durin...
An investigation was conducted to examine the mechanical behavior and microstructure evolution durin...
Deformation mechanics and microstructure evolution of material removal at the micrometer length-scal...
Extruded polycrystalline pure magnesium (Mg) with fine grain size (~1.2 µm) exhibits ductility of ov...
Deformation twinning (DT) has a very important role in accommodating plastic deformation in hexagona...
Interest in Mg alloys has significantly increased in recent years for weight-critical applications. ...
Magnesium can be replaced with materials which experience strain controlled fatigue in their respect...
A Ti-AZ31 composite was severely plastically deformed by rotary swaging at room temperature up to a ...