Bus configuration method for aluminum electrolysis cell with equidistant current paths
A technology for aluminum electrolytic cell and busbar configuration, which is applied in the field of busbar current configuration around large aluminum electrolytic cells, can solve the problems of electrolytic cell magnetic fluid instability, bias current, electrolytic cell stability damage, etc., and achieve bus consumption saving and high current efficiency effect
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[0014] Embodiment of the present invention: the bus bar of the electrolytic cell 7 includes a soft cathode bus bar 1, a cathode bus bar 2 on the power inlet side, a passing bus bar 3 at the bottom of the tank, a bus bar 4 on the tank side, a cathode bus bar 5 on the power outlet side, and a column bus bar 6 on the downstream tank. 7 ~ 50% of the current flows out through the cathode soft busbar 1 on the power inlet side, respectively flows into the cathode busbar 2 on the power inlet side or the busbar 3 at the bottom of the tank, and then flows into the four column busbars of the downstream tank through the busbar 4 on the tank side 6. The busbar on the power outlet side also flows ~50% of the current through the cathode soft busbar 1 on the power outlet side, and flows into the four column busbars 6 of the downstream tank after passing through the cathode busbar 5 on the power outlet side.
[0015] The cathode busbar on the power inlet side of the electrolytic cell and the bu...
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