To further expand the application of magnesium (Mg) alloys, development of the high strength Mg-rare earth (RE) alloys is strongly desired. The strength of the Mg alloys can be greatly improved through adding RE elements. This paper reviews the recent progress of the high-performance Mg-RE alloys, including alloy design, strengthening mechanism, forming processes, and applications. The review aims to provide references for designs, technologies, and applications of the Mg-RE alloys, which will contribute to further advancement of the Mg-RE alloys with excellent properties
Recent literature data on the possible technological beneficial effects of the addition of rare eart...
As the most possibility applied to the next generation negative electrode materials of Ni/ MH second...
The influences of rare earth (RE) on the microstructure and mechanical properties of Mg-7Zn-5Al allo...
Higher strength is always the goal pursued by researchers for the structural materials, especially f...
The combination of magnesium and rare-earth (RE) elements can produce the lightest constructional me...
Magnesium alloys are the lightest structural alloys developed so far and have a great potential for ...
The lightest density of Mg has stimulated renewed interest in Mg based alloys for applications in th...
Wrought magnesium alloys attract special interests as lightweight structural material due to their h...
As the lightest metallic structural materials with excellent damping capacity, good castability, and...
Among all alloying elements the rare earth elements (RE) play a key role in improving the ductility,...
Magnesium-rare earth based alloys are increasingly being investigated due to the formation of highly...
Magnesium-rare earth (Mg-RE) alloys, as potential biodegradable materials, are attracting considerab...
In the present article, the effect of Rare Earth elements on the microstructural development and mec...
It is necessary for cast alloys possessing sufficient plasticity to be subjected to deforming progre...
The thesis project investigates the effect of alloying elements Pr, Y and Er addition on the solidif...
Recent literature data on the possible technological beneficial effects of the addition of rare eart...
As the most possibility applied to the next generation negative electrode materials of Ni/ MH second...
The influences of rare earth (RE) on the microstructure and mechanical properties of Mg-7Zn-5Al allo...
Higher strength is always the goal pursued by researchers for the structural materials, especially f...
The combination of magnesium and rare-earth (RE) elements can produce the lightest constructional me...
Magnesium alloys are the lightest structural alloys developed so far and have a great potential for ...
The lightest density of Mg has stimulated renewed interest in Mg based alloys for applications in th...
Wrought magnesium alloys attract special interests as lightweight structural material due to their h...
As the lightest metallic structural materials with excellent damping capacity, good castability, and...
Among all alloying elements the rare earth elements (RE) play a key role in improving the ductility,...
Magnesium-rare earth based alloys are increasingly being investigated due to the formation of highly...
Magnesium-rare earth (Mg-RE) alloys, as potential biodegradable materials, are attracting considerab...
In the present article, the effect of Rare Earth elements on the microstructural development and mec...
It is necessary for cast alloys possessing sufficient plasticity to be subjected to deforming progre...
The thesis project investigates the effect of alloying elements Pr, Y and Er addition on the solidif...
Recent literature data on the possible technological beneficial effects of the addition of rare eart...
As the most possibility applied to the next generation negative electrode materials of Ni/ MH second...
The influences of rare earth (RE) on the microstructure and mechanical properties of Mg-7Zn-5Al allo...