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Spacing in solidification of dendritic arrays

机译:树状阵列凝固的间距

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A number of models of the primary dendrite spacing selection in directional solidification have been proposed based on considerations of the solutal diffusion problem. It is shown here that the primary spacing in dendritic solidification is fundamentally determined by the heat balance. Diffusion of solute affects the spacing only indirectly via selection of the tip radius. A simple solution for the spacing is derived. This analysis does not support the recent idea that the dendrite tip radius is selected by array interactions and indicates that the experimentally observed history dependence and range of spacings are due to the thermal hysteresis of the system, rather than to a range of physically allowable stable states.
机译:基于溶质扩散问题,已经提出了定向凝固过程中初生枝晶间距选择的许多模型。此处显示,树状凝固的主要间隔基本上由热平衡决定。溶质的扩散仅通过选择尖端半径间接影响间距。得出了一个简单的间距解决方案。该分析不支持最近的想法,即通过阵列相互作用选择枝晶尖端半径,并表明实验观察到的历史依赖关系和间距范围是由于系统的热滞,而不是由于物理上允许的稳定状态范围。

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