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The Effect of Y/Er and Zn Addition on the Microstructure and Mechanical Properties of Mg-11Li Alloy

机译:Y / Er和Zn的添加对Mg-11Li合金组织和力学性能的影响

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摘要

Although body-centered cubic (BCC) structural magnesium–lithium (Mg-Li) alloys have lower density and better formability than common hexagonal close-packed (HCP) Mg alloys, their applications remain limited due to their low strength. The purpose of this study is to investigate the effect of Y/Er and Zn addition on the microstructure and tensile properties of Mg-11Li alloy with a BCC structural matrix by comparing Mg-11Li, Mg-11Li-4Y-2Er-2Zn, and Mg-11Li-8Y-4Er-4Zn (wt %) alloys. The results indicate that the addition of Y/Er and Zn at a ratio of 3:1 cannot promote the formation of long-period stacking ordered structure in Mg-11Li alloy such as that in Mg-Y-Er-Zn alloys and the dominant intermetallic phases formed are BCC Mg RE and face-centered cubic (FCC) Mg RE Zn phases. With an increase of the content of Y/Er and Zn in an as-cast alloy, the fraction of intermetallic particles increases and the grain size decreases. The addition of Y/Er, as well as Zn, dramatically promotes the refinement of dynamic recrystallization (DRX) during extrusion. The initial intermetallic phases induced by Y/Er and Zn addition are broken into relatively fine particles during extrusion, and this contributes to refining the dynamic recrystallized (DRXed) grains mainly by the particle stimulated nucleation mechanism. The as-extruded Mg-11Li-4Y-2Er-2Zn and Mg-11Li-8Y-4Er-4Zn alloys exhibit much higher tensile strength as compared with as-extruded Mg-11Li alloy, which is mainly ascribed to the refined DRXed grains and numerous dispersed intermetallic phase particles. It is suggested that further refinement of intermetallic particles in these extruded Mg-11Li-based alloys may lead to higher quality alloy materials with low density and excellent mechanical properties.
机译:尽管体心立方(BCC)结构的镁锂(Mg-Li)合金比普通六方密堆积(HCP)Mg合金具有更低的密度和更好的可成形性,但由于其强度低,其应用受到限制。本研究的目的是通过比较Mg-11Li,Mg-11Li-4Y-2Er-2Zn和Mg-11Li来研究Y / Er和Zn添加对具有BCC结构基质的Mg-11Li合金的组织和拉伸性能的影响。 Mg-11Li-8Y-4Er-4Zn(wt%)合金。结果表明,以3:1的比例添加Y / Er和Zn不能促进Mg-11Li合金(如Mg-Y-Er-Zn合金)中长周期堆积有序结构的形成,并且占主导地位形成的金属间相为BCC Mg RE和面心立方(FCC)Mg RE Zn相。随着铸态合金中Y / Er和Zn含量的增加,金属间化合物的分数增加,晶粒尺寸减小。 Y / Er以及Zn的添加极大地促进了挤出过程中动态重结晶(DRX)的细化。由Y / Er和Zn添加引起的初始金属间相在挤压过程中被破碎成相对较细的颗粒,这主要是通过颗粒激发的成核机制而有助于细化动态再结晶(DRXed)晶粒。与挤压态的Mg-11Li合金相比,挤压态的Mg-11Li-4Y-2Er-2Zn和Mg-11Li-8Y-4Er-4Zn合金具有更高的拉伸强度,这主要归因于精炼的DRX晶粒和大量分散的金属间相粒子。建议在这些挤压的Mg-11Li基合金中进一步细化金属间颗粒可能会产生具有低密度和出色机械性能的高质量合金材料。

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