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METHOD AND DEVICE FOR ADJUSTING DIFFERENCE OF NUMBER OF REVOLUTION OF TWO STRUCTURE SECTION TURNING AT DIFFERENT NUMBER OF REVOLUTION, PARTICULARLY, CENTRIFUGAL DRUM OF SCREW CENTRIFUGAL MACHINE AND CONVEYOR SCREW
METHOD AND DEVICE FOR ADJUSTING DIFFERENCE OF NUMBER OF REVOLUTION OF TWO STRUCTURE SECTION TURNING AT DIFFERENT NUMBER OF REVOLUTION, PARTICULARLY, CENTRIFUGAL DRUM OF SCREW CENTRIFUGAL MACHINE AND CONVEYOR SCREW
A method and apparatus for regulating the differential rpm of two rotating parts, such as the external drum and internal worm conveyor of a worm centrifuge, undertakes an electronic measurement and sampling of the rotational during the course of operation of a particular device under speeds of each part and supplies this information to a microprocessor which calculates the respective rotational speeds of the parts and relays a signal to the drive device for one of the parts in order to maintain a preselected rpm differential between the rotational speeds of the two parts. Different characteristic curves are stored in the microprocessor for optimum rpm differential during the course of operation of a particular device under different conditions, such as for different sludge consistencies in the case of use with a centrifuge. If deviation of the actual rotational speed of one of the parts from the optimum value is detected, the microprocessor operates to return operation to the optimum values.
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