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首页> 外文期刊>Materials transactions >Growth Direction of Cellular and Dendritic Interface in a Constrained Growth Condition
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Growth Direction of Cellular and Dendritic Interface in a Constrained Growth Condition

机译:在受限的生长条件下细胞和树突状界面的生长方向

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In-situ observation of unidirectional solidification using transparent substance has been performed to investigate the growth direction of solid phase. Cell and/or dendrite, the preferred growth directions of which are not parallel to the heat flow direction, were observed with various solidification conditions. Dimensionless growth direction (pi' = (angle between heat flow direction and growth direction)/(angle between heat flow direction and preferred growth direction)) changes from zero to unity with increasing growth velocity at a constant temperature gradient. Introducing the normalized growth velocity (V/ V_c, where V_c is the critical growth velocity for breaking down a planar interface), the relation between pi' and growth condition could be correlated and pi' could he expressed by a unique line with respect to the normalized growth velocity. Furthermore, the growth directions of cells or dendrites under the condition of unidirectional solidification have been analyzed by the phase-field model. The calculated results agree with the experimental results and the functional relationship between growth velocity and growth direction is qualitatively explained.
机译:已经进行了使用透明物质的单向凝固的原位观察,以研究固相的生长方向。在各种固化条件下观察到其优选生长方向不平行于热流方向的泡孔和/或枝晶。在恒定温度梯度下,随着生长速度的增加,无量纲的生长方向(pi'=(热流方向与生长方向之间的夹角)/(热流方向与优选生长方向之间的夹角))从零变为统一。引入归一化的生长速度(V / V_c,其中V_c是破坏平面界面的临界生长速度),可以将pi'和生长条件之间的关系进行关联,并且可以用关于归一化生长速度。此外,通过相场模型分析了单向凝固条件下细胞或树突的生长方向。计算结果与实验结果吻合,定性地解释了生长速度与生长方向之间的函数关系。

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