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Impact of Amperage Creep on Potroom Busbars: Thermal-Mechanical Aspects

机译:蠕变蠕变对电解槽母线的影响:热机械方面

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摘要

The mechanical performance of pot-to-pot busbars is intimately linked to the temperature and thermal expansion of conductors. With amperage creep, busbars are typically running hotter than they were at start-up, so that adequate temperature fields for both standard and bypass conditions must be considered to accurately represent the thermal stresses acting over the system. To assist smelters to evaluate the performances of busbars systems under realistic operating conditions, a methodology was developed using ANSYS™-based numerical simulation, where the temperature field obtained from a thermal-electrical model is applied as a load to a thermal-mechanical model. The bolted connections at the shunting-clamping stations, the weld plates and the contact mechanics between bars are taken into account explicitly. A test case based on a demonstration busbar system is presented and the typical impact of line current and selected operational procedures on thermal-mechanical performance and reliability of specific design features is discussed.
机译:罐对罐母线的机械性能与导体的温度和热膨胀密切相关。由于电流蠕变,母线运行时的温度通常高于启动时的温度,因此必须考虑标准条件和旁路条件下的足够温度场,以准确表示作用在系统上的热应力。为了帮助冶炼厂评估实际运行条件下母线系统的性能,使用基于ANSYS™的数值模拟开发了一种方法,其中将从热电模型获得的温度场用作热机械模型的负载。明确考虑了分流夹紧站的螺栓连接,焊接板和钢筋之间的接触机理。给出了一个基于演示母线系统的测试案例,并讨论了线路电流和所选操作步骤对热机械性能和特定设计功能可靠性的典型影响。

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