AbstractThe flow stress of Mg-Gd-Y-Zr, Mg-Al-Zn, and Mg-Zn-Zr magnesium alloys during hot deformation were correlated to the Zener–Hollomon parameter through analyses based on the proposed physically-based and apparent approaches. It was demonstrated that the theoretical exponent of 5 and the lattice self-diffusion activation energy of magnesium (135kJ/mol) can be set in the hyperbolic sine law to describe the peak flow stresses. As a result, the influence of rare earth elements, gadolinium (Gd) and yttrium (Y), upon the hot working behavior was readily characterized by the proposed approach, which was not possible by the conventional apparent approach. It was shown quantitatively that the rare earth addition exerts a profound effect on the...
Alloying Mg with Mn improves the strength and corrosion resistance. The addition of rare-earth eleme...
The thesis project an investigation the effect of alloying elements Yttrium, Erbium and Samarium add...
AbstractFor the purpose of investigating the microstructure evolution and deformation behavior of ma...
AbstractA comparative study was carried out on the hot flow stress of AZ31, AZ61, and AZ91 magnesium...
One of the limitations of magnesium alloys is their low mechanical properties at elevated temperatur...
Mg-Gd-Y-Zr alloys are among the newly developed magnesium alloys with superior strength properties a...
Magnesium (Mg) based alloys have been growing in popularity in the aerospace and automotive industri...
The experimental activity was aimed at optimizing the T6 heat treatment conditions of the innovative...
The effects of rare earth (RE) elements Y and Nd on the microstructure and mechanical properties of ...
AbstractFour Mg–Gd–Y–Nd–Zr alloys were prepared by mold casting to investigate the effects of Nd/Gd ...
High temperature regime, 300-450?C for Mg-Al-Zn alloys, is currently used in primary processing, suc...
Due to their lightweight and high specific strength, Mg-based alloys are considered as substitutes t...
AbstractThe tensile testing bars of the Mg–2.7Nd–0.6Zn–0.5Zr (wt.%) alloy were prepared by sand cast...
AbstractA study has been undertaken to reveal the microstructure, mechanical and creep properties of...
A comparative study was carried out on the hot flow stress of AZ31, AZ61, and AZ91 magnesium alloys....
Alloying Mg with Mn improves the strength and corrosion resistance. The addition of rare-earth eleme...
The thesis project an investigation the effect of alloying elements Yttrium, Erbium and Samarium add...
AbstractFor the purpose of investigating the microstructure evolution and deformation behavior of ma...
AbstractA comparative study was carried out on the hot flow stress of AZ31, AZ61, and AZ91 magnesium...
One of the limitations of magnesium alloys is their low mechanical properties at elevated temperatur...
Mg-Gd-Y-Zr alloys are among the newly developed magnesium alloys with superior strength properties a...
Magnesium (Mg) based alloys have been growing in popularity in the aerospace and automotive industri...
The experimental activity was aimed at optimizing the T6 heat treatment conditions of the innovative...
The effects of rare earth (RE) elements Y and Nd on the microstructure and mechanical properties of ...
AbstractFour Mg–Gd–Y–Nd–Zr alloys were prepared by mold casting to investigate the effects of Nd/Gd ...
High temperature regime, 300-450?C for Mg-Al-Zn alloys, is currently used in primary processing, suc...
Due to their lightweight and high specific strength, Mg-based alloys are considered as substitutes t...
AbstractThe tensile testing bars of the Mg–2.7Nd–0.6Zn–0.5Zr (wt.%) alloy were prepared by sand cast...
AbstractA study has been undertaken to reveal the microstructure, mechanical and creep properties of...
A comparative study was carried out on the hot flow stress of AZ31, AZ61, and AZ91 magnesium alloys....
Alloying Mg with Mn improves the strength and corrosion resistance. The addition of rare-earth eleme...
The thesis project an investigation the effect of alloying elements Yttrium, Erbium and Samarium add...
AbstractFor the purpose of investigating the microstructure evolution and deformation behavior of ma...