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Mathematical Modelling of the Initial Mold Filling with Utilization of an Angled Runner

机译:利用成角度的流道填充初始模具的数学模型

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The flow pattern plays a crucial role in the uphill teeming process. The non-metallic inclusion generation due to interaction with the mold flux is believed to be influenced by the flow pattern. In this study, a three-dimensional mathematical model of the filling of a gating system for 10, 20, and 30 degrees angled runners was used to predict the fluid flow characteristics. Moreover, a mathematical model with a horizontal runner was applied as a reference. The predictions indicate that the angled-runner-design decreases the hump height during the initial filling stage, which results in less entrapment of mold flux into the mold. Nevertheless, increasing the angle of runner can result in a lower hump height, while the 30 degree angled runner gives a much more stable increase of the hump height during the initial filling stage. Besides CFD calculations, some thermodynamic calculations are taken into account for the chemical reactions between liquid steel and gas. The results show that the bubble shrinks due to the fact that N and O are dissolved into steel. The present findings strongly suggest that changing the horizontal runner to an angled runner would be an effective means of reducing flow unevenness during the initial filling of ingots, if the added steel losses are deemed acceptable.
机译:流动模式在上坡灌浆过程中起着至关重要的作用。据信,由于与铸型助熔剂相互作用而产生的非金属夹杂物受流动方式的影响。在这项研究中,用于10、20和30度角浇口的浇口系统填充的三维数学模型用于预测流体流动特性。此外,以具有水平流道的数学模型为参考。这些预测表明,成角度的流道设计可降低初始填充阶段的驼峰高度,从而减少了铸模助焊剂滞留在铸模中的现象。但是,增加流道角度可以降低驼峰高度,而30度成角度的流道在初始填充阶段可以使驼峰高度稳定得多。除了CFD计算之外,液态钢与气体之间的化学反应还考虑了一些热力学计算。结果表明,由于N和O溶解在钢中,气泡缩小。本发现有力地表明,如果认为增加的钢损是可以接受的,则将水平流道改为成角度的流道将是减少钢锭初始填充过程中流动不均匀的有效手段。

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