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Research on Filling Channel of ESC by Fixed Consumable Electrode Filling Method

机译:固定消耗电极充填法对电调充填通道的研究

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This study takes the consumable electrode, slag bath, and ingot as investigated objects. Mathematical models is established based on the convection thermal transfer equation of the slag bath, the thermal conduction equation of the ingot, and the melt flowing equation,meanwhile the appropriate electromagnetic field, thermal boundary conditions are applied, The numerical simulation study on influence of process parameters on filling channels between metal pools in electroslag casting process with fixed consumable electrode filling method are performed by using large finite element analysis software ANSYS. Size of casting ingot is 400 × 70 × 400, the research show that when the current density of mobile consumable electrode is greater than or equal to 0.5 A/mm~2, the electrode spacing is less than or equal to 0.15m, and the electrode thickness is greater than or equal to 0.035m, the two metal pools are connected, molten metal of moved consumable electrode casting successfully supply the metal pool of fixed consumable electrode through filling channel, make sure that casting is forming under stable electroslag conditions. the minimum sectional area of filling channel is increased with the increase of current density of the mobile consumable electrode and the cross-sectional area of the consumable electrode.
机译:本研究以易耗电极,渣池和铸锭为研究对象。根据炉渣对流换热方程,铸锭热传导方程和熔体流动方程建立数学模型,同时应用适当的电磁场,热边界条件,对过程影响进行数值模拟研究。采用大型有限元分析软件ANSYS,采用固定消耗电极填充法对电渣铸造过程中金属池之间的填充通道进行了参数设定。铸锭尺寸为400×70×400,研究表明,当移动式消耗电极的电流密度大于或等于0.5 A / mm〜2时,电极间距小于或等于0.15m,并且电极厚度大于或等于0.035m,两个金属熔池相连,移动的易耗电极铸件的熔融金属通过填充通道成功地向固定易熔电极提供了金属池,确保铸件在稳定的电渣条件下形成。填充通道的最小截面积随着可移动消耗电极的电流密度和消耗电极的截面积的增加而增加。

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