首页> 外文会议>The 26th International Conference on Electrical Contacts >Experimental and Numerical Studies of Surface Contamination and Degradation of Aluminium Contacts in Primary Aluminium Smelters
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Experimental and Numerical Studies of Surface Contamination and Degradation of Aluminium Contacts in Primary Aluminium Smelters

机译:一次铝冶炼厂铝触点表面污染和降解的实验和数值研究

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摘要

Primary aluminium smelters utilise many high amperage direct current (DC) electrical contacts. They can be subject to extreme modes of degradation, resulting in high contact resistances and significant unwanted power consumption. It is common that stray alumina is present on the top of the anode beam behind the anode rod and can enter the anode beam to anode rod contact. Alumina in the contact causes physical separation of the two contact surfaces resulting in high joint voltage drop readings in excess of 50 mV. Further, anode rods with raised defects due to arcing damage will prevent the remainder of the anode rod surface from properly contacting the anode beam, thus significantly increasing the contact resistance These damaged rods must be removed from the rodding circuit. Electrical contact resistance values for each of the degradation scenarios mentioned above were experimentally obtained. Accompanying computer modeling studies were seen to add insights to experimentation and showed promise towards helping develop optimum economic criteria for the repair and correction of anode rod contact face.
机译:初级铝冶炼厂利用许多高安培直流(DC)电触点。它们可能会经历极端的退化模式,从而导致较高的接触电阻和明显的无用功耗。通常,杂散氧化铝存在于阳极棒后面的阳极束顶部,并且可以进入阳极束与阳极棒接触。触点中的氧化铝导致两个触点表面的物理分离,从而导致超过50 mV的高接头压降读数。此外,由于电弧损坏而具有升高的缺陷的阳极棒将防止阳极棒表面的其余部分适当地接触阳极束,从而显着增加接触电阻。这些受损的棒必须从焊条电路中移除。通过实验获得了上述每种降级方案的电接触电阻值。伴随着计算机建模研究,可以为实验提供更多见识,并显示出有望帮助开发用于修复和校正阳极棒接触面的最佳经济标准。

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