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Effect of Ce Addition on Modifying the Microstructure and Achieving a High Elongation with a Relatively High Strength of As-Extruded AZ80 Magnesium Alloy

机译:铈添加对挤压态AZ80镁合金显微组织的改变和相对较高强度的高伸长率的影响

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摘要

Forming magnesium alloys with rare earth elements (La, Gd, Nd, Y, Ce) is a routine method for modifying their microstructure and properties. In the present work, the effect of Ce addition on the microstructure evolution and the mechanical properties of as-extruded Mg-8Al-0.5Zn (AZ80) alloy was investigated. All of the extruded AZ80-xCe (x = 0, 0.2, 0.8 and 1.4 wt %) alloys exhibited equiaxed grains formed by fully dynamic recrystallization, and the grain size of the extruded AZ80 alloy was remarkably reduced by ~56.7% with the addition of 1.4 wt % Ce. Furthermore, the bulk-shaped Al4Ce phase formed when Ce was first added, with the Ce content rising to 0.8 wt % or higher, and Al4Ce particles in both the nano- and micron sizees were well distributed in the primary α-Mg matrix. The area fraction of the Al4Ce particles expanded with increasing Ce content, providing more nuclei for dynamic recrystallization, which could contribute to the grain refinement. The results of the tensile tests in this study showed that Ce addition effectively improved the room temperature formability of the as-extruded AZ80 alloy, without sacrificing strength. The significantly improved mechanical properties were ascribed to excellent grain refinement, weakened texture strength, an increased Schmid factor, and a reduced area fraction of low-angle grain boundaries, all resulting from Ce addition to the as-extruded AZ80 alloy. The contribution of the nano-Al4Ce precipitates on improving the mechanical properties was also discussed in this paper.
机译:用稀土元素(La,Gd,Nd,Y,Ce)形成镁合金是改变其微观结构和性能的常规方法。在本工作中,研究了Ce的添加对挤压Mg-8Al-0.5Zn(AZ80)合金组织演变和力学性能的影响。所有挤压成型的AZ80-xCe(x = 0、0.2、0.8和1.4 wt%)合金均表现出通过全动态再结晶形成的等轴晶粒,并且添加AZ80-xCe挤压成型的AZ80合金的晶粒尺寸显着减小了约56.7%。 1.4重量%铈此外,当首次添加Ce时形成的块状Al4Ce相,Ce含量提高到0.8 wt%或更高,并且纳米和微米尺寸的Al4Ce颗粒均很好地分布在主要的α-Mg基体中。随着Ce含量的增加,Al4Ce颗粒的面积分数增加,为动态再结晶提供了更多的核,这可能有助于晶粒细化。这项研究中的拉伸试验结果表明,铈的添加有效地改善了挤压成型AZ80合金的室温成形性,而没有牺牲强度。显着改善的机械性能归因于出色的晶粒细化,弱化的织构强度,增加的施密特因子和减小的低角度晶界面积分数,所有这些均归因于将铈添加到挤压后的AZ80合金中。本文还讨论了纳米Al4Ce沉淀物对改善机械性能的贡献。

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