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首页> 外文期刊>China Foundry >Effects of Sm addition on microstructural evolution of Mg-6Zn-0.4Zr alloy during semi-solid isothermal heat treatment
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Effects of Sm addition on microstructural evolution of Mg-6Zn-0.4Zr alloy during semi-solid isothermal heat treatment

机译:Sm添加对Mg-6Zn-0.4Zr合金半固态等温热处理组织演变的影响

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摘要

The application of segmental semi-solid thixoforming of magnesium alloys is confined due to the dimensional distinction existing in solid particles of the alloy billet from edge to center zones. In the present study, the effects of Sm addition on the microstructural evolution of Mg-6Zn-0.4Zr and Mg-6Zn-4Sm-0.4Zr alloys by semi-solid isothermal heat treatment were investigated, to obtain optimum semi-solid microstructures for the subsequently thixoforming. The results indicate that the grains of the Sm-bearing alloy are evidently refined and gradually evolve from dendritic to globular and elliptic particles. In addition, the distinctly dimensional effect of the Mg-6Zn-0.4Zr alloy is eliminated with 4% Sm addition; the particle sizes in all zones from center to the edge of the billet are almost identical. With the increment of isothermal heat treatment temperature, the dendritic microstructures completely disappear, and meanwhile, the irregular and globular particles gradually form. The size, morphology and the distribution of solid particles mainly depend on the formation and permeation of the liquid phase in the process of isothermal heat treatment. As the isothermal temperature increases from 570 °C to 610 °C, the average size and shape factor of solid particles of both the alloys with and without Sm addition gradually decrease while the liquid fraction gradually increases.
机译:由于存在于合金坯的固体颗粒从边缘到中心区域的尺寸差异,镁合金分段半固态触变成形的应用受到限制。在本研究中,研究了Sm添加对半固态等温热处理Mg-6Zn-0.4Zr和Mg-6Zn-4Sm-0.4Zr合金微观组织演变的影响,以获得最佳的半固态组织。随后进行触变性。结果表明,含Sm合金的晶粒明显细化,并从树枝状颗粒逐渐演化为球状和椭圆形颗粒。另外,添加4%Sm可以消除Mg-6Zn-0.4Zr合金的明显尺寸效应。从坯料的中心到边缘的所有区域的粒径几乎相同。随着等温热处理温度的升高,枝晶的微观结构完全消失,同时不规则和球形的颗粒逐渐形成。固体颗粒的大小,形态和分布主要取决于等温热处理过程中液相的形成和渗透。随着等温温度从570°C升高到610°C,添加和不添加Sm的两种合金的固体颗粒的平均尺寸和形状因子逐渐减小,而液体分数逐渐增加。

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