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首页> 外文期刊>Journal of Fluid Mechanics >The interactive dynamics of flow and directional solidification in a Hele-Shaw cell Part 1. Experimental investigation of parallel shear flow
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The interactive dynamics of flow and directional solidification in a Hele-Shaw cell Part 1. Experimental investigation of parallel shear flow

机译:Hele-Shaw单元中流动与定向凝固的相互作用动力学第1部分。平行剪切流的实验研究

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It is recognized that flow in the melt can have a profound influence on the dynamics of a solidifying interface and hence on the quality of the solidified material. To better understand the effect of fluid flow on the interface morphological stability and on the cellular and dendritic growth, directional solidification experiments were carried out in a horizontally placed Hele-Shaw cell with and without externally imposed parallel shear flow. The specimen material used was SCN-1.0Wt% acetone. The experiment shows that the transient parallel flow has a stabilizing effect on the planar interface by damping the existing initial perturbations. The left-right symmetry of crystal cells was broken by the parallel flow, with cells tilting toward the incoming flow direction. The tilting angle increased with the velocity ratio. The secondary dendrites were found to either not appear or appear much later on the downstream side of the crystal cells. The wavelengths of the initial perturbations and of the cellular interface were insensitive to the imposed flow. [References: 30]
机译:公认的是,熔体中的流动可对固化界面的动力学产生深远影响,并因此对固化材料的质量产生深远影响。为了更好地了解流体流动对界面形态稳定性以及对细胞和树突生长的影响,在水平放置的Hele-Shaw细胞中进行了定向凝固实验,有无外部施加平行剪切流。使用的样品材料是SCN-1.0Wt%丙酮。实验表明,通过抑制现有的初始扰动,瞬态平行流对平面界面具有稳定作用。晶胞的左右对称性被平行流动破坏,晶胞朝着进入的流动方向倾斜。倾斜角随速度比增加。发现次生树枝状晶体在晶胞的下游侧不出现或出现得较晚。初始扰动和细胞界面的波长对施加的流量不敏感。 [参考:30]

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