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Simulation of Multi-electrode ESR Process for Manufacturing Large Ingot

机译:制造大铸锭的多电极ESR工艺仿真

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Electroslag remelting process will be an important method for manufacturing heavy casing and forging due to its ability to improve the cleanness, macrostructure, microstructure, the distribution and size of non-metallic inclusions. In this paper, a finite element coupling model has been developed based on four electrodes configuration mode for manufacturing large ingot. Maxwell equation, Faraday's law, Navier-Stokes equation, heat transfer equation has been adopted in the model to analyze the current density, Joule-heat density, magnetic induction intensity and electromagnetic force and fluid flow distribution. The impact of slag depth, electrodes immersion depth and filling ratio on the molten pool depth has been analyzed. Results indicated that four electrodes with two sets of bifilar configuration are better than single phase with one electrode type. The molten pool is shallower for four electrodes than conventional single electrode mode, which is in favor of improving large ingot quality. The larger slag pool depth is the shallower the molten pool is. The depth of molten steel pool increases with the increasing of electrode immersion depth under the same slag depth condition. In addition, increasing filling ratio can reduce the depth of molten steel pool, but the filling ratio should be less than 0.6 according to area for general materials. Comparing to the single electrode mode four electrodes configuration mode is in favor of manufacturing large ingot.
机译:电渣重熔工艺由于具有改善非金属夹杂物的清洁度,宏观结构,微观结构,分布和尺寸的能力,将成为制造重型机壳和锻件的重要方法。在本文中,基于四电极配置模式开发了用于制造大型铸锭的有限元耦合模型。模型中采用了麦克斯韦方程,法拉第定律,纳维-斯托克斯方程,传热方程来分析电流密度,焦耳热密度,磁感应强度以及电磁力和流体流动分布。分析了炉渣深度,电极浸入深度和填充比对熔池深度的影响。结果表明,具有两组双线构造的四个电极比具有一种电极类型的单相更好。对于四个电极,熔池比常规的单电极模式要浅,这有利于提高大铸锭质量。渣池深度越大,熔池越浅。在相同炉渣深度条件下,钢水熔池深度随电极浸入深度的增加而增加。另外,增加填充率可以减小钢水熔池的深度,但是根据一般材料的面积,填充率应小于0.6。与单电极模式相比,四电极配置模式有利于制造大铸锭。

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