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Analysis of current dendritic growth models during downward transient directional solidification of Sn-Pb alloys

机译:Sn-Pb合金向下瞬态定向凝固过程中当前枝晶生长模型的分析

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摘要

Microstructures are the strategic link between materials processing and materials behavior. The micro structural scales of dendrites, such as primary and secondary arm spacings, control the segregation profiles and the formation of secondary phases within interdendritic regions, which determine the properties of cast structures. A small number of studies have been conducted in order to analyze the effects of melt convection within the interdendritic region. In this article, the influence of thermosolutal convection on dendrite ami spacings is experimentally examined in the downward vertical unsteady-state directional solidification of Sn-Pb hypoeutectic alloys. The main predictive theoretical models for dendritic spacings are compared with the experimental observations.
机译:微观结构是材料加工和材料行为之间的战略联系。枝晶的微观结构尺度,例如主要和次要的臂间距,控制着偏析分布和枝晶间区域内次生相的形成,这决定了铸造结构的特性。为了分析树突间区域内熔体对流的影响,进行了少量研究。在本文中,在Sn-Pb亚共晶合金的向下垂直非稳态定向凝固中,通过实验研究了热固对流对枝晶ami间距的影响。树突间距的主要预测理论模型与实验观察结果进行了比较。

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