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Influence of Crystal Orientation on the Freckle Formation in Directionally Solidified Superalloys

机译:晶体取向对方向凝固超合金中祛斑形成的影响

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Freckle occurrence is known to be dependent on the casting size and the superalloy components with large cross section are more prone to freckle formation. In our directional solidification experiment of superalloys freckles are observed in some thin samples, while some significantly thicker samples in the same shell mould cluster remain freckle free. The EBSD analysis shows that the samples with freckles have a good <001> axial orientation, while in freckle free samples the primary dendrite stems diverge from the sample axis. In an analogue system the flow behaviour through a mushy zone was simulated, in which the dendrite network was placed in different orientation. The <001> dendrite array shows the lowest resistance to the vertical melt flow. As the dendrite alignment diverges from <001> orientation, the flow speed slows down and reaches the minimum at the <111> orientation. This orientation effect of the interdendritic permeability explains well why the crystal orientation plays such an important role in the occurrence of freckles in superalloy castings.
机译:已知祛斑发生依赖于铸造尺寸,并且具有大横截面的超合金组分更容易发生祛斑形成。在我们的定向凝固实验中,在一些薄的样品中观察到高温合金雀斑,而在同一壳体簇中的一些显着较厚的样品仍然是无雀斑。 EBSD分析表明,具有雀斑的样品具有良好的<001>轴向取向,而在雀道自由样品中,初级枝晶源从样品轴线偏离。在模拟系统中,模拟了通过糊状区域的流动行为,其中树枝状网络以不同的取向放置。枝晶阵列显示垂直熔体流动的最低电阻。当枝晶对准从<001>取向发散时,流速向下减速并达到<111>取向的最小值。当前型渗透率的这种取向效果讨论了晶体取向在超合金铸件中的雀斑发生中起着如此重要的作用。

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