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On migration of primary/peritectic interface during interrupted directional solidification of Sn-Ni peritectic alloy

机译:Sn-Ni包晶合金定向凝固中断过程中一次/包晶界面的迁移

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The migration of the primary/peritectic interface in local isothermal condition is observed in dendritic structure of Sn-Ni peritectic alloy after experiencing interrupted directional solidification. It was observed that this migration of primary Ni3Sn2/peritectic Ni3Sn4 interface towards the primary Ni3Sn2 phase was accompanied by migration of liquid film located at this interface. The migration velocity of this interface was confirmed to be much faster than that of peritectic transformation, so this migration was mostly caused by superheating of primary Ni3Sn2 phase below TP, leading to nucleation and migration of liquid film at this interface. This migration can be classified as a kind of liquid film migration (LFM), and the migration velocity at the horizontal direction has been confirmed to be much faster than that along the direction of temperature gradient. Analytical prediction has shown that the migration of liquid film could be divided into two stages depending on whether primary phase exists below TP. If the isothermal annealing time is not long enough, both the liquid film and the primary/peritectic interface migrate towards the primary phase until the superheated primary phase has all been dissolved. Then, this migration process towards higher temperature is controlled by temperature gradient zone melting (TGZM).
机译:Sn-Ni包晶合金的枝晶结构经历了定向凝固的中断后,在局部等温条件下观察到了主/包晶界面的迁移。观察到,初级Ni 3 Sn 2 /包晶Ni 3 Sn 4界面向初级Ni 3 Sn 2相的迁移伴随着位于该界面的液膜的迁移。证实该界面的迁移速度比包晶转变的速度要快得多,因此该迁移主要是由于TP以下的初级Ni3Sn2相的过热导致该界面处的液膜成核和迁移。该迁移可以归类为液膜迁移(LFM)的一种,并且已经确认水平方向的迁移速度比沿着温度梯度方向的迁移速度快得多。分析预测表明,液膜的迁移可根据初级相是否低于TP分为两个阶段。如果等温退火时间不够长,则液膜和主/包晶界面都朝着主相迁移,直到过热的主相全部溶解为止。然后,通过温度梯度区熔化(TGZM)控制向更高温度的迁移过程。

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