Background
During the accumulation of cathode copper in the electrolytic cell, local short circuits sometimes occur, which will cause a large amount of power loss and high temperature, seriously affecting the normal production of cathode copper. At present, manual detection and other methods are generally used to detect the occurrence of short circuits, which have problems such as low detection efficiency, high labor intensity of workers, and harm to health. Therefore, timely detection and accurate positioning of the short circuit fault of the plate in the electrolytic cell has become one of the important conditions for electrolytic copper production. It is related to power efficiency and product quality. The traditional operation method is inefficient and has safety hazards. After a short circuit fault occurs in the plate of the electrolytic cell, the temperature rises sharply. By using infrared thermal imaging to fully monitor the electrolytic cell, the short-circuited plate can be accurately detected and located, greatly improving the detection efficiency.
Advantagies
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