首页> 外文期刊>The Canadian Journal of Chemical Engineering >OPTIMIZATION OF MIXING PARAMETERS FOR A COLD MODEL SYSTEM BY CFD FOR ALUMINUM MATRIX COMPOSITES SYNTHESIS PROCESS
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OPTIMIZATION OF MIXING PARAMETERS FOR A COLD MODEL SYSTEM BY CFD FOR ALUMINUM MATRIX COMPOSITES SYNTHESIS PROCESS

机译:CFD对铝基复合材料合成过程的CFD冷模系统混合参数的优化

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Stir casting process is the most important method in the aluminum matrix composites synthesis industry. In the stir casting process, the stability of the liquid aluminum surface and the highest shear force induced by the impellers are the two main factors for high quality of aluminum matrix composites synthesis. In this paper, a three-dimensional CFD model validated on a water and air two-phase flow system in a cold model was used to optimize the mixing string tank for aluminum matrix composites synthesis, coupling the volume of fluid (VOF) model, the k-E turbulence model, and the multiple reference frames (MRF) model. Important mixing parameters of the gas-liquid two-phase stirred tank such as rotation speed, type of baffles, and angle of rotating impellers were simulated and analyzed in detail. Varieties of speed were investigated to choose the best one. The best stirrer was chosen through analyzing the stability of liquid aluminum and shear force induced by impellers. The results showed that the optimal stirring speed was 180rpm during studying the surface between liquid and gas. The best baffles with the lowest vortex were obtained through simulation, with dimensions of 50mmx20mmx350mm. In order to get the lowest vortex between water and air and the strongest shear force, the blades should be installed at 15 degrees with vertical direction.
机译:搅拌铸造工艺是铝基复合材料合成工业中最重要的方法。在搅拌铸造工艺中,液体铝表面的稳定性和由叶轮引起的最高剪切力是高质量的铝基基复合材料合成的两个主要因素。在本文中,使用在冷模型中的水和空气两相流系统上验证的三维CFD模型来优化铝基复合材料合成的混合柱罐,耦合流体(VOF)模型的体积,柯湍流模型,以及多参考帧(MRF)模型。将气液两相搅拌槽的重要混合参数如旋转速度,挡板的旋转速度,旋转型和旋转叶轮角度进行了模拟和分析。调查了各种速度选择最好的速度。通过分析叶轮诱导的液体铝和剪切力的稳定性来选择最佳搅拌器。结果表明,在研究液体和气体之间的表面期间,最佳搅拌速度为180rpm。通过模拟获得最低涡流的最佳挡板,尺寸为50mmx20mmx350mm。为了获得水和空气之间的最低涡流和最强的剪力力,刀片应以15度安装在垂直方向15度。

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