High temperature conductive binding material for aluminium electrolysis
A technology of bonding materials and aluminum electrolysis, applied in the direction of conductive adhesives, can solve problems such as the difficulty of connecting metal guide rods, and achieve the effects of eliminating heating equipment, manpower and material resources, reducing environmental pollution, and stabilizing production
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Embodiment 1
[0022] Embodiment 1: A high-temperature conductive bonding material for connecting continuous prebaked anode carbon blocks. The paste formula of the high temperature conductive bonding material is shown in Table 2.
[0023]
[0024] Mix the materials in Table 2 into a paste, connect the continuous prebaked anode carbon blocks, the bond strength between the carbon blocks is 3MPa, which is greater than the tensile strength of the prebaked anode carbon blocks for aluminum electrolysis; with the increase of temperature , the resistivity of the bonding material drops sharply, and the resistivity at 25°C is 5×10 -3 Ωm, the resistivity at 150°C is 3×10 -4 Ωm, the resistivity at 400°C is 4×10 -5 Ωm (equivalent to the resistivity of prebaked anode carbon blocks under the same conditions), the resistivity at 800°C is 1.9×10 -5 Ωm, which is lower than the resistivity of the prebaked anode carbon block under the same conditions; the continuous prebaked anode carbon block ha...
Embodiment 2
[0025] Embodiment 2: A high-temperature conductive bonding material for connecting an inert anode to a metal guide rod.
[0026]
[0027] Mix the materials in Table 3 into a paste and apply it to the NiFe containing 10wt%Ni 2 o 4 The connection between the / Ni cermet inert anode and the stainless steel guide rod has good bonding strength after curing at room temperature for 2 hours; then hang the inert anode sample above the test aluminum electrolytic cell, and place it in the high temperature resistance furnace along with the test electrolytic cell The temperature is raised to 970°C together, during which the binder of the high-temperature conductive bonding material is carbonized; after the electrolyte is melted, the inert anode is inserted into the electrolyte, 1A / cm 2 Power on and electrolyze for 10 hours, and test the cell voltage of the electrolytic cell at the same time. During the whole electrolysis process, the cell voltage was basically constant at 2.7V...
Embodiment 3
[0028] Embodiment 3: A high-temperature conductive bonding material for connecting cathode carbon blocks and cathode steel rods.
[0029]
[0030] Mix the materials in Table 4 into a paste, which is used for the connection of the cathode carbon block and the cathode steel rod. After curing at room temperature for 2 hours, it is used for the masonry of the aluminum electrolytic cell. During the firing start-up and normal production process of the aluminum electrolytic cell, the cathode current is evenly distributed, no redness of the cathode steel rod is seen, and the temperature at the junction of the cathode steel rod and the cathode bus bar is 100-250°C, indicating the conductivity of the high-temperature conductive bonding material used Good, there are no cracks, delamination and other defects inside the material under the conditions of use.
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