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THE EFFECT OF FORCED FLUID FLOW ON MICROSTRUCTURE IN DIRECTIONALLY SOLIDIFIED Al-Si BASE ALLOYS

机译:强制流动对定向凝固Al-Si基合金的微观结构的影响

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摘要

The solidification microstructure is the consequence of a wide range of process parameters, like the growth velocity, the temperature gradient and the composition. The application of time dependent magnetic fields during directional solidification offers the possibility to create defined flow conditions in solidification processing. We report about solidification experiments with rotating magnetic fields (RMF). The effect of the forced melt flow on microstructural parameters like the primary and secondary dendrite arm spacing is analyzed for a wide range of magnetic field parameters. The experimental analysis is supported by a rigorous application of numerical modeling.
机译:凝固的微观结构是多种工艺参数(例如生长速度,温度梯度和组成)的结果。在定向凝固过程中,时间相关磁场的施加提供了在凝固过程中创建定义的流动条件的可能性。我们报告有关旋转磁场(RMF)的凝固实验。对于广泛的磁场参数,分析了强制熔体流动对微观结构参数(如主要和次要枝晶臂间距)的影响。实验分析得到严格的数值建模应用的支持。

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