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首页> 外文期刊>Science and technology of advanced materials >Effects of a high-gradient magnetic field on the migratory behavior of primary crystal silicon in hypereutectic Al–Si alloy
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Effects of a high-gradient magnetic field on the migratory behavior of primary crystal silicon in hypereutectic Al–Si alloy

机译:高梯度磁场对过共晶Al-Si合金中初晶硅迁移行为的影响

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The migration of primary Si grains during the solidification of Al–18?wt%Si alloy under a high-gradient magnetic field has been investigated experimentally. It was found that under a gradient magnetic field, the primary Si grains migrated toward one end of the specimen, forming a Si-rich layer, and the thickness of the Si-rich layer increased with increasing magnetic flux density. No movement of Si grains was apparent under a magnetic field below 2.3?T. For magnetic fields above 6.6?T, however, the thickness of the Si-rich layer was almost constant. It was shown that the static field also played a role in impeding the movement of the grains. The primary Si grains were refined in the Si layer, even though the primary silicon grains were very dense. The effect of the magnetic flux density on the migratory behavior is discussed.
机译:实验研究了Al-18%wt%Si合金在高梯度磁场下凝固过程中原始Si晶粒的迁移。发现在梯度磁场下,原始硅晶粒向试样的一端迁移,形成富硅层,且富硅层的厚度随着磁通密度的增加而增加。在低于2.3?T的磁场下,没有观察到Si晶粒的运动。但是,对于高于6.6?T的磁场,富Si层的厚度几乎是恒定的。结果表明,静磁场在阻碍晶粒运动方面也起了作用。即使原始硅晶粒非常致密,原始Si晶粒也会在Si层中细化。讨论了磁通密度对迁移行为的影响。

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