Effects of Al addition to a Mg–Sn–Ca ternary alloy on its microstructure and tensile properties after extrusion were studied via extrusion of Mg-1.0Sn-0.5Ca-xAl (x = 0, 0.8, 2.4 wt%) sheets and analysis of the extruded materials. The results showed that Al addition not only refined the grain size (from 9.8 ± 0.7 μm to 8.3 ± 0.4 μm and 7.6 ± 0.5 μm) but also accelerated the generation of more second phase (from 0.98 to 1.72 and 4.32%). Except for the CaMgSn and Mg2Ca in Mg-1.0Sn-0.5Ca alloy, new phase (Mg, Al)2Ca appeared after Al addition. The addition of Al into Mg–Sn–Ca alloy induced the textural variation from an initially ED-split double-peaked texture to a weakened texture, i.e., divergent elliptical texture, due to the eff...
The mechanical response of as-extruded magnesium-aluminum-manganese alloy with varying (1-4 wft) alu...
AbstractThe microstructure and tensile properties of AZ80+X%Ca (X=0, 0.1, 0.5) magnesium alloy have ...
In this paper, the effect of extrusion temperatures (250 °C, 300 °C and 350 °C) on the microstructur...
We report that the addition of 1-4.5 wt% Al to Mg-5Sn-1Zn alloy results in grain refinement and a si...
The effects of Sn addition (0, 0.5, 1.0, 2.0 and 3 wt%) on microstructure of Mg-4Zn-1.5Al alloy in c...
Hot rolling was carried out in this study to modify the microstructures of an extruded Mg–6Al&...
AbstractAs-extruded Mg–5Sn–1Zn–xAl alloys (x=1, 3, and 5) were fabricated by hot extrusion. The expe...
The wide Mg alloy sheets produced by hot extrusion usually can easily form an inhomogeneous texture,...
The effects of trace addition of Al on the microstructure and mechanical properties of the as-extrud...
Experiments were conducted to determine the influence of magnesium additions on grain refinement and...
Based on the compositional design concept, an Al–6 Mg–0.8Mn (–0.2Sc) alloy with a good combination o...
This paper mainly concerns the enhancement of the microstructure and mechanical properties of the Mg...
In this paper, the effect of Ca and Zr additions on microstructure and mechanical properties at room...
Calcium (Ca), with abundant and cheap reserves, is a potential element to facilitate the further app...
A family of alloys based on the Mg-Al-Zn-Ca-Mn system (Mg-3Al-1Zn-1Ca-0.3Mn, Mg-3Al-1.5Zn-0.5Ca-0.3M...
The mechanical response of as-extruded magnesium-aluminum-manganese alloy with varying (1-4 wft) alu...
AbstractThe microstructure and tensile properties of AZ80+X%Ca (X=0, 0.1, 0.5) magnesium alloy have ...
In this paper, the effect of extrusion temperatures (250 °C, 300 °C and 350 °C) on the microstructur...
We report that the addition of 1-4.5 wt% Al to Mg-5Sn-1Zn alloy results in grain refinement and a si...
The effects of Sn addition (0, 0.5, 1.0, 2.0 and 3 wt%) on microstructure of Mg-4Zn-1.5Al alloy in c...
Hot rolling was carried out in this study to modify the microstructures of an extruded Mg–6Al&...
AbstractAs-extruded Mg–5Sn–1Zn–xAl alloys (x=1, 3, and 5) were fabricated by hot extrusion. The expe...
The wide Mg alloy sheets produced by hot extrusion usually can easily form an inhomogeneous texture,...
The effects of trace addition of Al on the microstructure and mechanical properties of the as-extrud...
Experiments were conducted to determine the influence of magnesium additions on grain refinement and...
Based on the compositional design concept, an Al–6 Mg–0.8Mn (–0.2Sc) alloy with a good combination o...
This paper mainly concerns the enhancement of the microstructure and mechanical properties of the Mg...
In this paper, the effect of Ca and Zr additions on microstructure and mechanical properties at room...
Calcium (Ca), with abundant and cheap reserves, is a potential element to facilitate the further app...
A family of alloys based on the Mg-Al-Zn-Ca-Mn system (Mg-3Al-1Zn-1Ca-0.3Mn, Mg-3Al-1.5Zn-0.5Ca-0.3M...
The mechanical response of as-extruded magnesium-aluminum-manganese alloy with varying (1-4 wft) alu...
AbstractThe microstructure and tensile properties of AZ80+X%Ca (X=0, 0.1, 0.5) magnesium alloy have ...
In this paper, the effect of extrusion temperatures (250 °C, 300 °C and 350 °C) on the microstructur...