Abstract:
A CELL ASSEMBLY FOR ELECTROLYTIC DEPOSITION OF METALS, DESIGNED TO FACILITATE THE ELECTROLYTIC DEPOSITION AND RECOVERY OF ZINC OR OTHER METALS SIMILARLY PROCESSED. THE CELL ASSEMBLY INCLUDES AN IMPROVED CELL BOX COMPRISING A TREATED WOODEN STRUCTURE HAVING A ONE PIECE PROTECTIVE LINER. THE LINER INCLUDES AN INTEGRAL INLET BOX AND OUTLET WEIR TO INSURE CONSISTENT SOLUTION LINE ELEVATION. AN IMPROVED CATHODE STRUCTURE IS UTILIZED, HAVING PROTECTIVE NON-CONDUCTIVE COVERINGS APPLIED THERETO ALONG THE SIDE AND TOP PORTIONS OF THE PLATE ON WHICH METAL IS DEPOSITED.
IMPROVED ANODE ASSEMBLIES INCLUDE STIFFENING PLASTIC GUIDES ATTACHED THERETO WHICH POSITION THE CATHODES RELATIVE TO THE ANODE STRUCTURES IN A CONSTANT SPACED PARALLEL RELATIONSHIP. CONTROL OF THE DEPOSITION OF METAL IS FURTHER ACHIEVED BY AN IMPROVED BUS BAR SUPPORT SYSTEM FOR THE CATHODE AND ANODE UNITS, FACILITATING ACCURATE ADJUSTMENT AND LEVELING OF THE UNITS RELATIVE TO THE ELECTROLYTE.
Abstract:
CATHODE HANDLING EQUIPMENT FOR USE IN CONNECTION WITH ELECTROWINNING OPERATIONS UTILIZING ELECTROLYTIC CELLS WHEREIN METAL IS PERODICALLY DEPOSITED AND REMOVED FROM PLATELIKE CATHODES. THE PRESENT STRUCTURE PROVIDES AN AUTOMATED MECHANISM FOR PULLING AND REPLACING GROUPS OF CATHODE UNITS IN THE CELL, TRANSFERRING CATHODES BETWEEN A CELL AND AN OVERHEAD CONVEYOR. THE CATHODE HANDLING EQUIPMENT IS MOUNTED ON A BRIDGE CAPABLE OF TRAVELLING ALONG THE LENGTH OF THE ROW OF CELLS, BEING PROPERLY INDEXED AT EACH CELL. THE CATHODE HANDILING UNITS CAN BE INDEXED TO HANDLE DIFFERING GROUPS OF CATHODE UNITS WITHIN THE RESPECTIVE CELLS.