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The formation mechanism of non-dendritic primary α-Al phase in semi-solid AlSi7Mg Alloy

机译:半固态AlSi7Mg合金中非枝晶初生α-Al相的形成机理

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In this paper, a process to make non-dendritic semi-solid AlSi7Mg alloy by electromagnetic stirring and the temperature field of the stirred melt cooled is continuously investigated. It is proposed that a new kinetic factor for primary α-Al nucleation is that a low thermal gradient exists in the electromagnetically stirred melt, for which the primary dendrite arms and secondary dendrite arms are refined. The results also show that the root remelting of the secondary dendrite arms is an important mechanism of the primary α-Al refinement. Strong electromagnetic stirring greatly reduces the composition supercooling in the melt and eliminates the preferred growth of primary dendrite arms, therefore, many rosettes or spherical primary α-Al phase particles form finally.
机译:本文研究了电磁搅拌制备非枝晶半固态AlSi 7 Mg合金及其搅拌冷却的温度场的工艺。提出了α-Al初晶成核的新动力学因素是在电磁搅拌的熔体中存在一个低的热梯度,为此细化了初生枝晶臂和次生枝晶臂。结果还表明,二次枝晶臂的根部重熔是一次α-Al细化的重要机制。强烈的电磁搅拌极大地降低了熔体中成分的过冷,并消除了初生枝晶臂的优先生长,因此,最终形成许多玫瑰形或球形初生α-Al相粒子。

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