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Microstructural evolution of Mg9A1ZnY alloy with vibration in lost foam casting during semi-solid isothermal heat treatment

机译:Mg9A1ZnY合金在半固态等温热处理过程中消失模铸造中振动引起的组织演变

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The nearly equiaxed grains of Mg9AlZnY alloy were obtained by vibrating solidification in lost foam casting(LFC) and the mierostrueture of Mg9AlZnY alloy was analyzed. On this basis, the morphology and size of α-Mg grains fabricated by semi-solid isothermal heat treatment(SSIT) at 530 ℃ and 570 ℃ holding different time were studied. The results show that the main constituent phases of Mg9AlZnY alloy are α-Mg, βMg17A112 and A12Y, and the Y can greatly refine α-Mg grains. The distribution of α-Mg grains equivalent diameters between 20 and 100 μm is up to 87%, and the average roundness of α-Mg grains reaches 1.37 in the specimen obtained at 570 ℃ and holding time 60 min. According to the analysis of solidification kinetics and thermodynamic, binary eutectie with low melting point melts firstly on SSIT process. As the liquid fraction increases with the solute diffusibility, both of the shape and size of α-Mg grains change ceaselessly. When the liquid fraction reaches equilibrium, the α-Mg grains are gradually spheroidized under the interfacial tension, and then the α-Mg grains begin to combine and grow. Evolution of α-Mg dendritic grains on SSIT process is obviously different from that of equiaxed grains.
机译:通过消失模铸造(LFC)中的振动凝固获得了Mg9AlZnY合金的近等轴晶,并分析了Mg9AlZnY合金的微观组织。在此基础上,研究了在530℃和570℃下半固态等温热处理(SSIT)制备的α-Mg晶粒的形貌和尺寸。结果表明,Mg9AlZnY合金的主要组成相为α-Mg,βMg17A112和Al2Y,并且Y可以极大地细化α-Mg晶粒。在570℃,保持时间60 min的试样中,α-Mg晶粒当量直径在20至100μm之间的分布高达87%,α-Mg晶粒的平均圆度达到1.37。根据凝固动力学和热力学分析,低熔点二元共熔首先在SSIT工艺中熔化。随着液体分数随溶质扩散性的增加而增加,α-Mg晶粒的形状和尺寸均不断变化。当液体分数达到平衡时,α-Mg晶粒在界面张力下逐渐球形化,然后α-Mg晶粒开始结合并生长。 SSIT过程中α-Mg树枝状晶粒的演化与等轴晶粒的演化明显不同。

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