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Grain Refinement and Enhancement of Mechanical Properties of Hot Extruded Rare-Earth Containing Magnesium Alloy

机译:热挤压含稀土镁合金的晶粒细化和力学性能增强

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The effects of rare earth addition and hot extrusion process on the grain refinement of magnesium alloy were studied. The as-cast Mg-6Al-1Zn (AZ61) alloy had the average grain size of ~ 64 μm and its microstructure consisted of α-Mg and Mg17Al12 phase. By partial substitution of Al with Gd to reach Mg-4.8Gd-1.2Al-1Zn alloy, it was observed that the Mg17Al12 phase disappeared and two new intermetallic phases, i.e. (Mg,Al)3Gd and Al2Gd, were identified. The extrusion process showed significant effects on the shape and size of intermetallics and grain size of the matrix. The grain size of the extruded Mg-6Al-1Zn alloy was refined from 64 μm to 13.4 μm as a result of recrystallization. Regarding the Mg-4.8Gd-1.2Al-1Zn alloy, the grain refinement was much more pronounced, where the extruded grain size has been refined from 698 μm to 2.4 μm (extruded at 385 °C) and 1.3 μm (extruded at 320 °C). This was related to the presence of fine and widely dispersed intermetallic phases. Tensile strength and total elongation of extruded alloys were much higher than their as-cast counterparts and the extruded Mg-6Zn-1Al alloy showed magnificent mechanical properties. The latter was related to the absence of intermetallic particles, which act as stress risers.
机译:研究了稀土添加和热挤压工艺对镁合金晶粒细化的影响。铸态的Mg-6Al-1Zn(AZ61)合金的平均晶粒尺寸为〜64μm,其显微组织由α-Mg和Mg17Al12相组成。通过用Gd部分置换Al达到Mg-4.8Gd-1.2Al-1Zn合金,可以观察到Mg17Al12相消失了,并且鉴定出两个新的金属间相,即(Mg,Al)3Gd和Al2Gd。挤压工艺对金属间化合物的形状和尺寸以及基体的晶粒尺寸显示出显着影响。作为再结晶的结果,挤出的Mg-6Al-1Zn合金的晶粒尺寸从64μm细化至13.4μm。关于Mg-4.8Gd-1.2Al-1Zn合金,晶粒细化更为明显,其中挤压晶粒尺寸已从698μm精炼到2.4μm(在385°C挤压)和1.3μm(在320°C挤压)。 C)。这与细小且广泛分散的金属间相的存在有关。挤压合金的拉伸强度和总伸长率远高于铸态合金,并且挤压出的Mg-6Zn-1Al合金具有出色的机械性能。后者与缺乏金属间颗粒有关,金属间颗粒起应力上升的作用。

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