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EFFECTS OF ALLOYING ELEMENTS AND SOLIDIFICATION CONDITIONS ON SECONDARY DENDRITE ARM SPACING IN ALUMINUM ALLOYS

机译:合金元素和凝固条件对铝合金二次枝晶臂间距的影响

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摘要

Published and unpublished experimentally determined values of secondary dendrite cell size and arm spacing in aluminum alloys as a function of solidification conditions and alloy composition have been reviewed and collated. Functional empirical models for predicting the effects of alloying elements, solidification rate, and local solidification time on secondary dendrite arm spacing in binary and multicomponent aluminum alloys have been developed. Results of the study indicate that secondary dendrite arm spacing (or cell size) in aluminum alloys generally decrease with increase in solidification rate and by addition of Ti, Cu, Fe and Si. Conversely, secondary dendrite arm spacing (or cell size) in cast aluminum products increases with increase in local solidification time and by addition of Zn. Mg, the most widely used alloying element in the aluminum industry, does not have any statistically significant effect on dendrite coarsening in commercial aluminum alloys.
机译:已审查和整理了铝合金中二次枝晶晶胞尺寸和臂间距与凝固条件和合金成分的关系的已发表和未发表的实验确定值。已经开发了用于预测合金元素,凝固速率和局部凝固时间对二元和多组分铝合金中次生枝晶臂间距的影响的功能经验模型。研究结果表明,铝合金中的二次枝晶臂间距(或晶胞尺寸)通常随着凝固速率的增加以及添加Ti,Cu,Fe和Si的作用而减小。相反,铸铝产品中的二次枝晶臂间距(或晶胞尺寸)随着局部凝固时间的增加和锌的添加而增加。镁是铝工业中使用最广泛的合金元素,对商用铝合金中的枝晶粗化没有统计学上的显着影响。

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