Assessment of the Microstructure and Solidification Characteristics of Al–20%Mg2Si Composite under Melt Superheating Treatment Using Thermal Analysis

IF 1.1 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
S. Shabestari, S. Ashkvary, Farnaz Yavari
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引用次数: 3

Abstract

The influence of melt superheating treatment on the solidification characteristics and microstructure of Al–20%Mg2Si in-situ composite has been investigated. The results revealed that melt superheating temperature has significant effects on solidification parameters and morphology of primary Mg2Si particles. Solidification parameters acquired using the cooling curve thermal analysis method, indicate that both nucleation temperature and nucleation undercooling of primary Mg2Si particles increase by increasing melt superheating temperature, while recalescence undercooling decrease under the same condition. Also, based on the microstructural evaluations, melt superheating treatment can refine primary Mg2Si particles and alter their morphology from dendritic shape to more spherical shape and the eutectic microstructure of α-Al + Mg2Si becomes finer and the distance between eutectic layers becomes smaller..
熔体过热处理下Al-20%Mg2Si复合材料组织与凝固特性的热分析
研究了熔体过热处理对Al–20%Mg2Si原位复合材料凝固特性和微观结构的影响。结果表明,熔体过热温度对初生Mg2Si颗粒的凝固参数和形貌有显著影响。利用冷却曲线热分析方法获得的凝固参数表明,在相同条件下,初生Mg2Si颗粒的形核温度和形核过冷度均随熔体过热温度的升高而升高,而再辉过冷度则降低。此外,根据微观结构评估,熔体过热处理可以细化初级Mg2Si颗粒,并将其形态从树枝状改变为更球形,α-Al+Mg2Si的共晶组织变得更细,共晶层之间的距离变小。。
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来源期刊
Iranian Journal of Materials Science and Engineering
Iranian Journal of Materials Science and Engineering MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
1.30
自引率
10.00%
发文量
0
审稿时长
18 weeks
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