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Intercell Busbar Design for Copper Electrowinning

机译:用于铜电解积的单元间母线设计

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The design of intercell bars is of primary relevance to control electrowinning costs. Two intercell technologies for designing these busbars are presently available: current source (CS) or voltage source. For this research project, we selected CS based on tankhouse operational data that consistently show better performance than its counterpart. Both technologies can be implemented in dogbone or central busbar configurations. Dogbone was chosen because of the better contact distance and larger heatsink area. The proposed design ensures hot swapability. Conventional busbars suffer premature aging, corrosion, and contact deterioration. Industrial samples show these phenomena. Multiphysics finite-element method modeling highlights the origin of this accelerated aging. This work provides design guidelines for S-shaped connectors to overcome previous design flaws. For completeness, the paper includes a design example for an industrial site. The resulting design surpasses standard design practices and secures hot-spot free operation.
机译:晶格间棒的设计与控制电解沉积成本至关重要。目前有两种用于设计这些母线的单元间技术:电流源(CS)或电压源。在此研究项目中,我们根据油库运行数据选择了CS,这些数据始终显示出比同类产品更好的性能。两种技术都可以在狗骨头或中央母线配置中实施。之所以选择狗骨头,是因为它具有更好的接触距离和更大的散热片面积。建议的设计可确保热插拔。常规母线会过早老化,腐蚀和接触不良。工业样本表明了这些现象。多物理场有限元方法建模突出了这种加速老化的根源。这项工作为S形连接器提供了设计指南,以克服以前的设计缺陷。为了完整起见,本文包括一个工业现场的设计示例。最终的设计超越了标准设计惯例,并确保了无热点的运行。

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