首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Microstructural evolution and tensile mechanical properties of thixoformed AZ91D magnesium alloy with the addition of yttrium
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Microstructural evolution and tensile mechanical properties of thixoformed AZ91D magnesium alloy with the addition of yttrium

机译:含钇的触变AZ91D镁合金的微观组织演变和拉伸力学性能

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摘要

The microstructure evolution of AZ91D magnesium alloy in the semi-solid state has been proposed or reported in previous literature. However, no detailed investigation has been conducted regarding the relationship between the microstructure and tensile mechanical properties of the thixoformed AZ91D magnesium alloy. In this paper, the microstructure of AZ91D alloy with the addition of yttrium was produced by the semi-solid thermal transformation (SSTT) route and the strain-induced melt activation (SIMA) route, respectively. Isothermal holding experiments investigated grain coarsening and the degree of spheroidization as a function of holding time in the semi-solid state. The SSTT route and the SIMA route were used to obtain the semi-solid feedstock for thixoforming. The results show that solid particles of the SSTT alloy are spheroidized to some extent but the previous irregular shape is still obvious in some of them. While the SIMA alloy exhibits ideal, fine microstructure, in which completely spheroidized solid particles contain little entrapped liquid. The microstructure of the SSTT alloy is less spheroidized compared with the SIMA alloy under the similar isothermal holding condition. As the holding time increases, the mean solid particle size of the SSTT alloy decreases initially, then increases, while the mean solid particle size of the SIMA alloy increases monotonously at 560 deg C Compared with the SSTT alloy, the SIMA alloy obtains finer grains under the similar isothermal holding condition. The mechanical properties of the thixoformed AZ91D alloy with the addition of yttrium produced by the SIMA route are better than those of the thixoformed alloy produced by the SSTT route. The ultimate tensile strength, yield strength and elongation for the thixoformed alloy produced by the SIMA route are 303.1 MPa, 147.6 MPa and 13.27 percent, respectively. The tensile properties for the AZ91D alloy with the addition of yttrium thixoformed from starting material produced by the SIMA route are better than those of the AZ91D alloy with the addition of yttrium thixoformed from starting material produced by the SSTT route.
机译:在以前的文献中已经提出或报道了半固态的AZ91D镁合金的组织演变。但是,尚未对触变成形的AZ91D镁合金的微观结构与拉伸机械性能之间的关系进行详细研究。本文通过半固态热转变(SSTT)路径和应变诱导熔体活化(SIMA)路径分别生成了添加了钇的AZ91D合金的显微组织。等温保温实验研究了晶粒的粗化和球化程度与半固态保温时间的关系。用SSTT路线和SIMA路线获得用于触变性的半固体原料。结果表明,SSTT合金的固体颗粒在一定程度上被球化,但其中一些以前的不规则形状仍然很明显。 SIMA合金表现出理想的精细微观结构,其中完全球化的固体颗粒几乎没有截留的液体。在相似的等温保持条件下,与SIMA合金相比,SSTT合金的微结构球化程度更低。随着保温时间的增加,SSTT合金的平均固体颗粒尺寸先减小,然后增加,而SIMA合金的平均固体颗粒尺寸在560℃单调增加。与SSTT合金相比,SIMA合金在以下条件下可获得更细的晶粒类似的恒温条件。触变成形的AZ91D合金的机械性能优于SIMA路线生产的触变合金的机械性能。通过SIMA路线生产的触变成型合金的极限抗拉强度,屈服强度和伸长率分别为303.1 MPa,147.6 MPa和13.27%。含有通过SIMA路线生产的起始材料制成的触变钇的AZ91D合金的拉伸性能要优于含有通过SSTT路线生产的起始材料的触变钇制成的AZ91D合金的拉伸性能。

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