A cable conveying apparatus for communication engineering, comprising a base (1), bottom plates (2) welded at both the left and right ends of the top surface of the base (1), grooves (4) provided on the top surfaces of the bottom plates (2), threaded rods (5) rotatably connected within the grooves (4), the rear ends of the threaded rods (5) extending beyond the bottom plate (2), electric motors (6) provided at the rear ends of the threaded rods (5) and fixed above the bottom plates (1), the threaded rods (5) being connected to power output ends of the electric motors (6), columnar blocks (7) sleeved on the outer walls of the threaded rods (5), and movable plates (8) slidably connected to the bottom plates (2), the movable plates (8) being welded to the columnar blocks (7). The cable conveying apparatus, by being provided with the threaded rods (5), the electric motors (6), first cable pressing wheels (9), and second cable pressing wheels (11), facilitates a user to convey cables of different cross-section areas, particularly cables having an increased cross-section area difference, and by being provided with a water tank (14), a heater (16), a steam nozzle (18), an air blower (19), and an air outlet ring (21), favors the user to preheat a cable in all directions and to wind same, thus preventing any difficulty in winding the cable due to effects of the temperature or damages to the cable due to forced winding.
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