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首页> 外文期刊>Journal of Materials >Influence of Cooling Rate on Microsegregation Behavior of Magnesium Alloys
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Influence of Cooling Rate on Microsegregation Behavior of Magnesium Alloys

机译:冷却速率对镁合金微偏析行为的影响

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The effect of cooling rate on microstructure and microsegregation of three commercially important magnesium alloys was investigated using Wedge (V-shaped) castings of AZ91D, AM60B, and AE44 alloys. Thermocouples were distributed to measure the cooling rate at six different locations of the wedge casts. Solute redistribution profiles were drawn based on the chemical composition analysis obtained by EDS/WDS analysis. Microstructural and morphological features such as dendrite arm spacing and secondary phase particle size were analyzed using both optical and scanning electron microscopes. Dendritic arm spacing and secondary phase particle size showed an increasing trend with decreasing cooling rate for the three alloys. Area percentage of secondary phase particles decreased with decreasing cooling rate for AE44 alloy. The trend was different for AZ91D and AM60B alloys, for both alloys, area percentage ofβ-Mg17Al12increased with decreasing cooling rate up to location 4 and then decreased slightly. The tendency for microsegregation was more severe at slower cooling rates, possibly due to prolonged back diffusion. At slower cooling rate, the minimum concentration of aluminum at the dendritic core was lower compared to faster cooled locations. The segregation deviation parameter and the partition coefficient were calculated from the experimentally obtained data.
机译:使用AZ91D,AM60B和AE44合金的楔形(V形)铸件,研究了冷却速率对三种商业上重要的镁合金的组织和微观偏析的影响。分布热电偶以测量楔形铸件六个不同位置的冷却速率。根据通过EDS / WDS分析获得的化学成分分析得出溶质再分布曲线。使用光学和扫描电子显微镜分析微观结构和形态特征,例如枝晶臂间距和次级相粒度。对于三种合金,随着冷却速率的降低,枝晶臂间距和第二相粒度均呈增加趋势。随着AE44合金冷却速率的降低,次级相颗粒的面积百分比降低。 AZ91D和AM60B合金的趋势有所不同,两种合金的β-Mg17Al12面积百分比均随着冷却速率的降低而增加,直至第4位。在较低的冷却速率下,微偏析的趋势更为严重,这可能是由于长时间的向后扩散所致。在较慢的冷却速率下,与较快的冷却位置相比,树状芯中铝的最低浓度较低。从实验获得的数据计算偏析偏差参数和分配系数。

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