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Modeling of electromagnetic separation of inclusions from molten metals

机译:熔融金属中夹杂物的电磁分离建模

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The presence of inclusions greatly influences the mechanical and the corrosion resistance of metallic alloys. These influential effects become more crucial when using metallic scrap, due to the high levels of inclusions and other contaminants such as non-metallic and oxides particles. Metal cleanliness requirements are becoming more striking, enforcing higher demands on the efficiency and flexibility of refining methods. Recently electromagnetic separation technique has been considered as a new method for the production of metals free from inclusions. In this study, a mathematical model has been developed to simulate the flow of molten metal through a channel in the presence of electromagnetic force field generated by interaction between a stationary electromagnetic field and DC current passing through the melt. A generalized model based on Newton's second law of motion was developed for the motion of inclusions in the melt flowing through the channel of separator by considering different forces acting on particle including electromagnetic force. A physical model was designed and constructed to visualize the inclusion separation phenomena and to verify the mathematical model. The predicted particle trajectories and separation in the physical model were compared with those obtained from experiments which showed reasonably good agreement. Parametric studies were performed using the mathematical model to evaluate the effects of various parameters, such as electromagnetic force strength, particle size and melt inlet velocity on the inclusion removal efficiency.
机译:夹杂物的存在极大地影响了金属合金的机械性能和耐腐蚀性。由于使用高含量的夹杂物和其他污染物(例如非金属和氧化物颗粒),因此在使用金属废料时,这些影响作用变得更加关键。金属清洁度要求越来越高,对精炼方法的效率和灵活性提出了更高的要求。最近,电磁分离技术已被认为是生产不含夹杂物的金属的新方法。在这项研究中,已经开发出数学模型来模拟在存在由固定电磁场和通过熔体的直流电流之间相互作用而产生的电磁力场的情况下,熔融金属通过通道的流动。通过考虑作用在颗粒上的不同力(包括电磁力),建立了基于牛顿第二运动定律的通用模型,用于分析熔体中夹杂物流经分离器通道的运动。设计并构建了物理模型,以可视化夹杂物分离现象并验证数学模型。将物理模型中预测的粒子轨迹和分离与从实验中获得的结果进行了比较,这些实验显示出合理的一致性。使用数学模型进行参数研究,以评估各种参数(如电磁力强度,粒径和熔体入口速度)对夹杂物去除效率的影响。

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