We report that alloying with Y remarkably enhances the corrosion resistance of extruded Mg-Al-Ca-based alloy. The corrosion rates, measured by immersion tests in 0.6M NaCl solution at 25??C, were 0.31 and 1.84mmy-1 for the Mg-6Al-1Zn-0.5Ca-0.3Mn (wt.%) alloys with and without 0.25wt.% Y, respectively. The improved corrosion resistance is mainly attributed to a change in the type of Al-containing intermetallic particles toward reducing their electrochemical nobility, resulting in reduced H2 evolution rate during corrosion.clos
Magnesium-Aluminium-Zinc powders are produced by centrifugal atomization. The microstructural refine...
AbstractThe effect of hot extrusion and addition of Y element on the corrosion behavior of Mg–Y allo...
AbstractThe corrosion behavior of extruded AZ61 magnesium alloy with different addition of yttrium r...
A significant enhancement in corrosion resistance by Y microalloying was achieved for the Mg-8Sn-1Zn...
Microstructure and corrosion properties of extruded Mg-8Sn-1Zn alloys with varying Al contents were ...
The corrosion resistance of conventional and experimental Mg-3Al-1Zn-based alloys with different Mn ...
We report that microalloying with Mn substantially enhances the corrosion resistance of extruded Mg-...
The work presented herein represents a research endeavour undertaken by Aaron Südholz at Monash Univ...
Microstructure and corrosion properties of extruded AZ61 Mg alloys with varying Ca contents were inv...
The presence of a second phase in the Mg–8Al–4Ca (at. %) alloy plays a significant role on both its ...
The microstructure and corrosion properties of AZ31 alloy with microalloying Ca and Ce addition were...
We report that the corrosion resistance of hot-rolled Mg?8Sn?1Al?1Zn alloy was significantly enhance...
The poor corrosion resistance of magnesium and magnesium alloys limited their industry applications,...
We report that the corrosion resistance of Mg-8Sn-1Zn-1Al alloy is significantly improved by the app...
Corrosion of Mg-Y alloys was studied using electrochemical evaluations, immersion tests and direct o...
Magnesium-Aluminium-Zinc powders are produced by centrifugal atomization. The microstructural refine...
AbstractThe effect of hot extrusion and addition of Y element on the corrosion behavior of Mg–Y allo...
AbstractThe corrosion behavior of extruded AZ61 magnesium alloy with different addition of yttrium r...
A significant enhancement in corrosion resistance by Y microalloying was achieved for the Mg-8Sn-1Zn...
Microstructure and corrosion properties of extruded Mg-8Sn-1Zn alloys with varying Al contents were ...
The corrosion resistance of conventional and experimental Mg-3Al-1Zn-based alloys with different Mn ...
We report that microalloying with Mn substantially enhances the corrosion resistance of extruded Mg-...
The work presented herein represents a research endeavour undertaken by Aaron Südholz at Monash Univ...
Microstructure and corrosion properties of extruded AZ61 Mg alloys with varying Ca contents were inv...
The presence of a second phase in the Mg–8Al–4Ca (at. %) alloy plays a significant role on both its ...
The microstructure and corrosion properties of AZ31 alloy with microalloying Ca and Ce addition were...
We report that the corrosion resistance of hot-rolled Mg?8Sn?1Al?1Zn alloy was significantly enhance...
The poor corrosion resistance of magnesium and magnesium alloys limited their industry applications,...
We report that the corrosion resistance of Mg-8Sn-1Zn-1Al alloy is significantly improved by the app...
Corrosion of Mg-Y alloys was studied using electrochemical evaluations, immersion tests and direct o...
Magnesium-Aluminium-Zinc powders are produced by centrifugal atomization. The microstructural refine...
AbstractThe effect of hot extrusion and addition of Y element on the corrosion behavior of Mg–Y allo...
AbstractThe corrosion behavior of extruded AZ61 magnesium alloy with different addition of yttrium r...