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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Solidification and segregation of Al-Mg alloys and influence of alloy composition and cooling rate
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Solidification and segregation of Al-Mg alloys and influence of alloy composition and cooling rate

机译:铝镁合金的凝固与偏析及其对合金组成和冷却速率的影响

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摘要

The dependency of solidification and segregation behaviour of Al-Mg alloys on alloy composition and cooling conditions was investigated. In the case of normal solidification, the low magnesium containing alloy had an as cast microstructure of single phase alpha-Al, with no alpha-Al+Al8Mg5 eutectic structure. With an increase in the magnesium content of the alloy, the eutectic reaction L-->alpha-Al+Al8Mg5 occurred at the finally solidified zone. The higher the magnesium content, the greater the amount of the eutectic structure. The formation and growth of the eutectic structure were also influenced by the cooling conditions. As the cooling rate increased, the eutectic fraction increased correspondingly. However, in the fast cooling rate range (> 190 K min(-1)), the average concentration of magnesium in second phase Al8Mg5 decreased gradually. The faster the cooling rate, the smaller the grain size. In respect of the size of second phase Al8Mg5, there existed a critical cooling rate of similar to 60 K min(-1), at which the size of the eutectic phase was a maximum. Slower and more rapid cooling rates produced a finer second phase structure.
机译:研究了Al-Mg合金的凝固和偏析行为对合金成分和冷却条件的依赖性。在正常凝固的情况下,低镁合金具有单相α-Al的铸态组织,无α-Al+ Al8Mg5共晶组织。随着合金中镁含量的增加,共晶反应L-> alpha-Al + Al8Mg5发生在最终凝固区。镁含量越高,共晶结构的量越大。共晶结构的形成和生长也受冷却条件的影响。随着冷却速率的增加,共晶分数相应增加。然而,在快速冷却速率范围内(> 190 K min(-1)),第二相Al8Mg5中的镁平均浓度逐渐降低。冷却速度越快,晶粒尺寸越小。关于第二相Al8Mg5的尺寸,存在类似于60 K min(-1)的临界冷却速率,在该速率下,共晶相的尺寸最大。较慢且较快的冷却速度产生了更精细的第二相结构。

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