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Numerical simulation of Bridgman solidification of binary alloys

机译:二元合金布里奇曼凝固的数值模拟

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摘要

A transient 2D axisymmetric numerical model for the Bridgman solidification process for a stationary furnace and moving sample is presented. The model is able to predict the evolution of temperature and solid fraction of binary alloys in cases where buoyancy induced convection is negligible, such as in micrograv-ity conditions. A dimensionless form of the governing equations was derived in order to identify the dimensionless parameters that characterise the process, those being the Stefan, Peclet, and Biot numbers. The problem was solved using a finite volume method and an explicit time stepping scheme. To test the efficacy of the model, simulated results were compared with experimental data from the literature and acceptable agreement was obtained. Finally, a parametric analysis was performed for understanding the influence of the process parameters on solidification. One key feature of this study was the inclusion of a term describing the advection of latent heat due to the translation of the mushy zone with varying solid fraction. This thermal transport mechanism was shown to be significant, since its magnitude was comparable to the advection of sensible heat. It was also found that when small Biot numbers were due to low values of the heat transfer coefficients at the surface of the sample, rather than to small sample radii, advective mechanisms were enhanced resulting in more convex shapes of the liquidus isotherm. This highlighted the importance of considering both axial and radial heat fluxes when describing the process.
机译:提出了用于固定炉和移动样品的Bridgman凝固过程的瞬态二维轴对称数值模型。在浮力引起的对流可忽略不计的情况下(例如在微重力条件下),该模型能够预测二元合金的温度和固相分数的变化。导出控制方程的无量纲形式,以识别表征过程的无量纲参数,这些参数为Stefan,Peclet和Biot数。使用有限体积方法和显式时间步进方案解决了该问题。为了测试该模型的有效性,将模拟结果与文献中的实验数据进行了比较,并获得了可接受的协议。最后,进行参数分析以了解工艺参数对凝固的影响。这项研究的一个主要特征是包含了一个术语,该术语描述了由于糊状区域的平移随固体成分的变化而引起的潜热对流。该传热机制很重要,因为它的大小与显热的平流相当。还发现,当小比奥数是由于样品表面传热系数的值较低而不是由于样品半径较小时,对流机制得到了增强,导致液相线等温线的形状更凸。这突出了在描述过程时同时考虑轴向和径向热通量的重要性。

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  • 作者单位

    Department of Mechanical and Manufacturing Engineering, Parsons Building, Trinity College Dublin, Ireland;

    Centre for Engineering and Renewable Energy, Faculty of Computing and Engineering, Magee Campus, Ulster University, BT48 7JL Northern Ireland, United Kingdom;

    Department of Mechanical and Manufacturing Engineering, Parsons Building, Trinity College Dublin, Ireland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bridgman furnace; Transient solidification; Finite volume; Binary alloy;

    机译:布里奇曼炉;瞬态凝固;有限的体积;二元合金;

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