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Microstructures and mechanical properties of Mg-2Zn-0.4RE alloys

机译:Mg-2%Zn-0.4%RE合金的组织和力学性能

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摘要

The solidification microstructures and hardness of Mg-2%Zn (mass fraction) based alloys with addition of 0.4%Ce, 0.4%Gd, 0.4%Y or 0.4%Nd (mass fraction) were investigated, and the effects of the rare earth elements on the microstructures and mechanical properties of these alloys extruded at 310℃ were also compared. The results indicate that the trace rare earth Ce, Gd, Y or Nd in the Mg-2%Zn alloy has obviously different grain refinement effects on its solidification microstructures, and the as-cast and hot-extruded alloy with 0.4%Ce has the smallest average grain size and the highest strength. However, the extruded alloys containing 0.4%Nd or 0.4%Y with the elongation of 26.6% and 30%, respectively, show higher plasticity in spite of lower strength as compared with the alloy containing 0.4%Ce.
机译:研究了添加0.4%Ce,0.4%Gd,0.4%Y或0.4%Nd(质量分数)的Mg-2%Zn(质量分数)基合金的凝固组织和硬度,并研究了稀土元素的影响还比较了这些合金在310℃下的组织和力学性能。结果表明,Mg-2%Zn合金中的痕量稀土Ce,Gd,Y或Nd对其凝固组织具有明显不同的晶粒细化效果,而0.4%Ce的铸态和热挤压合金的晶粒细化效果明显。最小的平均晶粒尺寸和最高的强度。然而,与含有0.4%Ce的合金相比,具有0.4%Nd或0.4%Y的伸长率分别为26.6%和30%的挤压合金尽管具有较低的强度,但仍显示出较高的可塑性。

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