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首页> 外文期刊>IEEE Transactions on Industry Applications >On the Design Robustness and Long-Term Performance of the Most Used Electrodes in the Copper Electrowinning Industry
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On the Design Robustness and Long-Term Performance of the Most Used Electrodes in the Copper Electrowinning Industry

机译:电解铜行业中最常用电极的设计稳健性和长期性能

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摘要

Performance in copper electrowinning is directly linked to the electrode's hanger bar designs and plate assembly methods. The actual physical condition of the plate, hanger bar assembly, and the internal resistance of electrodes are critical factors in this process. Internal electrode resistances affect parallel anode-cathode pair resistances. Therefore, it also alters balanced copper deposits, current efficiency, and cell voltage and power consumption of electrowinning cells. This paper summarizes the design characteristics of commercial stainless steel cathodes and cold-rolled lead-alloy anodes. It includes the evaluation of electrode performances under typical operating conditions using 3-D finite-element method analysis. The proposed evaluation of internal electrode resistance comprises nonlinear effects of electrical conduction, heat generation, and electrode position. The analysis of the design robustness of electrodes considers the most important elements, which help to maintain high current efficiency and electrical performance in the long term; that is to say, mechanical strength, inherent straightness, resistance to dissolution of copper coating on hanger bars, galvanic corrosion of weld joints, and hanger bar resistance to annealing. Results are based on industrial measurements, test work by vendors, and tankhouse operating data for benchmarking. The performance evaluation considers internal electrical resistance, contact shape design, contact loading, average contact resistance, and lifetime current efficiency. The results highlight the relationship between the robustness of electrode design and long term performance.
机译:铜电解沉积的性能直接与电极的吊杆设计和板装配方法相关。在此过程中,极板,悬挂杆组件的实际物理状况以及电极的内阻是关键因素。内部电极电阻会影响并联的阳极-阴极对电阻。因此,它还会改变平衡的铜沉积,电流效率以及电解沉积电池的电池电压和功耗。本文总结了商用不锈钢阴极和冷轧铅合金阳极的设计特点。它包括使用3-D有限元方法分析对典型操作条件下的电极性能进行评估。拟议的内部电极电阻评估包括导电,发热和电极位置的非线性影响。电极设计坚固性的分析考虑了最重要的因素,这些因素有助于长期保持高电流效率和电气性能。就是说,机械强度,固有直线度,吊杆上的铜涂层溶解的抵抗力,焊缝的电偶腐蚀和吊杆的退火抵抗力。结果基于工业测量,供应商的测试工作以及用于基准测试的储罐运行数据。性能评估考虑了内部电阻,触点形状设计,触点负载,平均触点电阻和使用寿命电流效率。结果突出了电极设计的坚固性与长期性能之间的关系。

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