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Effect of melt superheating treatment on the microstructure of as cast AZ61 Magnesium alloy

机译:熔体过热处理对铸态AZ61镁合金组织的影响

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The influence of melt superheating treatment on microstructure of as cast AZ61 magnesium alloy was investigated at the melt superheating temperatures of 750°C, 800°C, 850°C, 900 °C and 950°C respectively. The characteristics of dendrite spacing were analyzed and the component uniformity of the alloy was evaluated. The results showed that the melt superheating treatment could significantly refine the microstructure of the alloy. With the increase of the superheating temperature, the dendrite spacing gradually decreased. When the superheating temperature was 900°C, the primary dendrite spacing of 228.8um and the secondary dendrite arm spacing of 11.2um could be obtained. The concentrations of Al and Zn elements increased with the position change from the center of a dendrite to its primary dendrite spacing. With the increase of the superheating temperature, the distribution of Zn and Al in the alloy was more uniform under 850 °C. The optimized superheating temperature of AZ61 alloy was 850-900 °C.
机译:分别在750℃,800℃,850℃,900℃和950℃的熔体过热温度下研究了熔体过热处理对铸态AZ61镁合金组织的影响。分析了枝晶间距的特性,并评估了合金的成分均匀性。结果表明,熔体过热处理可以显着改善合金的显微组织。随着过热温度的升高,枝晶间距逐渐减小。当过热温度为900℃时,一次枝晶间距为228.8um,二次枝晶臂间距为11.2um。 Al和Zn元素的浓度随着从枝晶中心到其初始枝晶间距的位置变化而增加。随着过热温度的升高,合金在850°C下Zn和Al的分布更加均匀。 AZ61合金的最佳过热温度为850-900°C。

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