Method for testing anode voltage drop of aluminum electrolysis cell
The invention discloses an aluminum electrolysis cell anode voltage drop testing method, and relates to the technical field of anode voltage drop detection. Comprising the following steps: pre-burying a plurality of measuring graphite rods corresponding to the upper surface, the lower surface and di...
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creator | WANG HENG YIN HAOYING ZENG ZHENSHUANG TANG WEI LI DEZAN |
description | The invention discloses an aluminum electrolysis cell anode voltage drop testing method, and relates to the technical field of anode voltage drop detection. Comprising the following steps: pre-burying a plurality of measuring graphite rods corresponding to the upper surface, the lower surface and different depths of an anode carbon block in the anode carbon block, and connecting copper brazing rod measuring points on the upper surface of the anode carbon block; a mica sheet layer is arranged outside the measuring graphite rod; acquiring a pressure drop value of the copper brazing rod measuring point; forming a depth-pressure drop value gradient curve according to the pressure drop value and the corresponding depth of the graphite rod to be measured; and according to the depth-pressure drop value gradient curve, comparing the depth-pressure drop value gradient curve with a stored standard depth-pressure drop value gradient curve to obtain a final pressure drop value of the anode carbon block. The method solves |
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Comprising the following steps: pre-burying a plurality of measuring graphite rods corresponding to the upper surface, the lower surface and different depths of an anode carbon block in the anode carbon block, and connecting copper brazing rod measuring points on the upper surface of the anode carbon block; a mica sheet layer is arranged outside the measuring graphite rod; acquiring a pressure drop value of the copper brazing rod measuring point; forming a depth-pressure drop value gradient curve according to the pressure drop value and the corresponding depth of the graphite rod to be measured; and according to the depth-pressure drop value gradient curve, comparing the depth-pressure drop value gradient curve with a stored standard depth-pressure drop value gradient curve to obtain a final pressure drop value of the anode carbon block. 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Comprising the following steps: pre-burying a plurality of measuring graphite rods corresponding to the upper surface, the lower surface and different depths of an anode carbon block in the anode carbon block, and connecting copper brazing rod measuring points on the upper surface of the anode carbon block; a mica sheet layer is arranged outside the measuring graphite rod; acquiring a pressure drop value of the copper brazing rod measuring point; forming a depth-pressure drop value gradient curve according to the pressure drop value and the corresponding depth of the graphite rod to be measured; and according to the depth-pressure drop value gradient curve, comparing the depth-pressure drop value gradient curve with a stored standard depth-pressure drop value gradient curve to obtain a final pressure drop value of the anode carbon block. 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Comprising the following steps: pre-burying a plurality of measuring graphite rods corresponding to the upper surface, the lower surface and different depths of an anode carbon block in the anode carbon block, and connecting copper brazing rod measuring points on the upper surface of the anode carbon block; a mica sheet layer is arranged outside the measuring graphite rod; acquiring a pressure drop value of the copper brazing rod measuring point; forming a depth-pressure drop value gradient curve according to the pressure drop value and the corresponding depth of the graphite rod to be measured; and according to the depth-pressure drop value gradient curve, comparing the depth-pressure drop value gradient curve with a stored standard depth-pressure drop value gradient curve to obtain a final pressure drop value of the anode carbon block. The method solves</abstract><oa>free_for_read</oa></addata></record> |
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subjects | APPARATUS THEREFOR CHEMISTRY ELECTROLYTIC OR ELECTROPHORETIC PROCESSES MEASURING MEASURING ELECTRIC VARIABLES MEASURING MAGNETIC VARIABLES METALLURGY PHYSICS PROCESSES FOR THE ELECTROLYTIC PRODUCTION, RECOVERY ORREFINING OF METALS TESTING |
title | Method for testing anode voltage drop of aluminum electrolysis cell |
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