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Effect of entrance nozzle design on the fluid flow in an ingot mold during filling

机译:入口喷嘴设计对填充过程中锭模中流体流动的影响

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Earlier studies have shown that the mold powder reacts with Steel during filling of the mold during ingot casting of ball-bearing and tool steels, which results in formation of inclusions. Since all inclusions are bad for the material properties for these grades, this is a phenomenon that needs to be avoided. In this study, fundamental mathematical modeling of the filling of an ingot has been used to predict the fluid flow characteristics. A special effort has been made to model the effect of a modified inlet allowing for a larger volume flow. Predictions made by the presently used numerical model, indicates that a successive increase in the opening angle of the inlet nozzle leads to a gradual decrease in the disturbance of the free surface, during mold filling. Furthermore, the horizontal velocities are lower, which results in lower values of the Weber number which is an indication of less chances for mold powder entrapment into steel. It is concluded that both these improvements leads to decreased possibilities for the creation of inclusions in the steel due to interaction with the mold powder.
机译:早期的研究表明,在球轴承和工具钢的铸锭过程中,在填充模具时,保护渣粉末会与钢发生反应,这会导致夹杂物的形成。由于所有夹杂物均不利于这些牌号的材料性能,因此需要避免这种现象。在这项研究中,硅锭填充的基本数学模型已用于预测流体流动特性。已经做出了特别的努力来模拟修改后的进样口的效果,以允许更大的体积流量。由当前使用的数值模型做出的预测表明,在模具填充期间,入口喷嘴的打开角度的连续增大导致自由表面的扰动逐渐减小。此外,水平速度较低,这导致较低的韦伯值,这表明脱模剂滞留在钢中的机会较小。可以得出结论,由于与铸型保护渣的相互作用,这两种改进均导致减少了在钢中产生夹杂物的可能性。

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