Microstructure evolution of the A380 aluminum alloy semi-solid slurry prepared by serpentine channel
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摘要: 采用石墨質蛇形通道制備半固態A380鋁合金漿料,并研究漿料制備過程中漿料組織的演變.結果顯示,合金熔體在蛇形通道內發生一次凝固,在其通道內壁的激冷和異質形核作用下形成大量的初生自由晶,半固態漿料的剩余液相在收集坩堝內發生二次凝固形成二次非枝晶.初生晶粒的游離模型表明一部分初生自由晶直接生長為球晶,其他部分則成長為枝晶,枝晶在‘自攪拌’的作用下發生縮頸和熔斷,通過‘自旋轉’在蛇形通道內得到初步球化和熟化.二次凝固形成的二次非枝晶在收集坩堝內得到初步球化和熟化,同時初生晶粒在收集坩堝內得到進一步球化、熟化和均勻分布.Abstract: The semi-solid slurry of A380 aluminum alloy was prepared by using a graphite serpentine channel and the microstructure evolution during solidification was investigated. The result showed that, initial solidification occurred in the serpentine channel, and a large number of primary free grains generated in the alloy melt under the influence of chilling and heterogeneous nucleation caused by the serpentine channel inner wall. Secondary non-dendrites formed during secondary solidification which occurred in the remaining alloy melt of the semi-solid slurry in the collective crucible. The drifting model of primary grains displayed that a part of primary free grains directly grew to spherical grains, and others developed to dendrites. The "self-stirring" of the alloy melt made dendrites neck and fuse, and they got initial spheroidization and ripening through the " self-rotating" in the serpentine channel. Secondary non-dendrites formed during secondary solidification got initial spheroidization and ripening in the collective crucible. Mean-while, the primary grains got further spheroidization, ripening and uniform distribution in the collective crucible.
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Key words:
- aluminum alloys /
- semi-solid slurry /
- serpentine channels /
- microstructural evolution /
- drifting
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