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Channel segregation during columnar solidification: Relation between mushy zone instability and mush permeability

机译:柱状凝固期间的频道隔离:糊状区不稳定与糊状性之间的关系

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A model of mushy zone instability is developed for characterization and prediction of channel segregation in castings. The model highlights the connection of the mushy zone instability with the mush permeability. A new criterion for amplification of the mush instability is derived, which depends on the interden-dritic velocity, the isotherm velocity, the temperature gradient, and explicitly on the mush permeability. The capability of the instability criterion in the characterization of channel segregates is illustrated by comparing the estimated possible channel locations with that of numerically simulated channel segregations in a benchmark test case of solidification of Sn-Pb alloy. An Opensource CFD software OpenFOAM is used to simulate the solidification of Sn-Pb alloy in a side-cooled rectangular cavity. The new instability criterion very well characterizes the channel segregates shown in the numerical simulations. The near-liquidus part of the mushy region is more prone to the initiation of instability, which can initiate the formation of channel segregates in castings. Permeability and its derivative with respect to the liquid fraction in the outer part of mushy zone (liquid fraction more than 0.9) plays a key role in the amplification of this instability that can be responsible for the development and the formation of channel segregates. The locations of channel segregates estimated by the new instability model are also compared with those with a remelting criterion, and it has been noticed that the remelting criterion severely under characterizes these defects (e.g., their number and length). We noticed that local remelting might not be necessary for the initiation of a channel; some destabilization of the mushy zone due to local instability could be sufficient.
机译:开发了一种糊状区不稳定性的模型,用于表征和预测铸件中的通道偏析。该模型突出了糊状区不稳定性与糊状性的连接。推导出用于扩增糊状液的新标准,这取决于惰性番石音速度,等温速度,温度梯度,并明确地对糊状性透气性。通过将估计的可能的通道位置与在Sn-Pb合金的基准测试情况下的数值模拟的信道偏析中的估计可能的通道位置进行比较来说明在信道偏析的表征中的能力。 OpenSource CFD软件OpenFoam用于模拟侧冷矩形腔内Sn-Pb合金的凝固。新的不稳定标准很好地表征了数值模拟中所示的信道隔离。糊状区域的近液部分更容易发生不稳定性,这可以在铸件中形成通道隔离的形成。相对于糊状区外部的液体部分(液体分数大于0.9)的渗透性及其衍生物在这种不稳定性的扩增中起关键作用,这可能负责发育和沟道偏析的形成。通过新的不稳定模型估计的通道隔离的位置也与具有重熔标准的人进行比较,并且已经注意到重熔标准严重地描述这些缺陷(例如,它们的数量和长度)。我们注意到,渠道启动可能不需要当地重熔;由于局部不稳定性导致的糊状区的一些稳定化可能是足够的。

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