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首页> 外文期刊>Metallurgical and Materials Transactions B >Study on the Anode-to-Cathode Distance in an Aluminum Reduction Cell
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Study on the Anode-to-Cathode Distance in an Aluminum Reduction Cell

机译:铝电解槽中阳极到阴极的距离研究

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A two-dimensional (2D) finite element model (FEM) of an anode immersed in an aluminum reduction cell was developed to study the initial current distribution in the anode as a function of anode geometry and electrical anode conductivity gradients. The numerical results of the initial state of the anode electrical current were used to describe analytically how this will affect the variation in the anode-to-cathode distance (ACD) in a steady-state scenario after several hours in the electrolysis bath. The electrical power loss in the anode has also been studied at different anode geometries and material properties. The slot positioning, slot depths, and stub hole dimensions have been considered in the FEM. The anode is implemented as an inhomogeneous orthotropic material with a defined six-parameter equation. The degree of initial inhomogeneous anode current density, which is expressed with a defined parameter k 0, can reach values to cause variations in the ACD typically measured in the aluminum industry. To avoid a variation in the ACD for this case, the defined bath conductivity relation n should be within certain limits for the analyzed industrial reduction cell. The lowest degree of initial inhomogeneous current in the anode is achieved with deeper slots closer to each other and with an electrical current entering the anode in the bottom of the anode stub hole.
机译:开发了浸入铝还原池中的阳极的二维(2D)有限元模型(FEM),以研究阳极中初始电流分布与阳极几何形状和阳极电导率梯度的关系。阳极电流初始状态的数值结果用于分析地描述在电解浴中几个小时后,在稳态情况下这将如何影响阳极到阴极距离(ACD)的变化。还已经在不同的阳极几何形状和材料特性下研究了阳极中的电功率损耗。在FEM中已考虑了槽的位置,槽的深度和短管孔的尺寸。阳极由具有定义的六参数方程的非均质正交各向异性材料实现。初始不均匀阳极电流密度的程度(由定义的参数k 0 表示)可以达到导致铝工业中通常测量的ACD变化的值。为了避免这种情况下ACD的变化,对于分析后的工业还原电解池,定义的镀液电导率关系n应该在一定范围内。阳极中的初始不均匀电流的最低程度是通过彼此靠近的更深的槽以及在阳极短管孔底部进入阳极的电流实现的。

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