Bidirectional adjustable cable winder
Technical Field
The invention belongs to the technical field of cable production, and particularly relates to a bidirectional adjustable cable winder.
Background
With the continuous development of national economy, the demand of people for electric power continues to increase, the electric cable is used more and more as the essential material condition in the electric power transmission process, in the production process flow of the electric cable, the electric cable needs to be manufactured into a coiled specification so as to be convenient for carrying and moving in the subsequent installation process, but the rotating shaft of the coil winder at the present stage is fixed in length, only a reel with one specification can be processed, and the function is single; in addition, the coil weight after the end of the coil winding is large, and the coil is inconvenient to be dismounted after the end of the coil winding of the single interval adjustable coil winder.
Disclosure of Invention
The invention aims to provide a spacing-adjustable cable winder which can be adjusted to the distance between supporting frames according to the specification of a reel and is suitable for reels with different specification lengths to perform winding work; after the winding is finished, the coil can be conveniently taken down from the winding machine.
The technical scheme of the invention is as follows: the cable winder comprises a first bearing seat and a second bearing seat, wherein the first bearing seat and the second bearing seat are respectively arranged on a first support frame and a second support frame, a first rotating shaft and a second rotating shaft are respectively arranged on one side of the first support frame and one side of the second support frame, a first support rod and a second support rod are respectively arranged on the first support frame and the second support frame, a motor is arranged on the first support rod, the motor is connected with the first rotating shaft through a belt pulley and a belt, rail wheels A are respectively arranged at the tail ends of the first support frame and the second support frame, and the rail wheels A are arranged in a guide groove; the first bearing seat and the second bearing seat are of track structures with grooves, a walking frame is arranged above the first bearing seat and the second bearing seat, a rope winder is arranged on a cross rod of the walking frame, a lifting hook is arranged at the tail end of a rope, a telescopic structure is arranged in the middle of the cross rod, and a rail wheel B is arranged at the tail end of a vertical rod.
In the bidirectional adjustable cable winder, the rail wheel A passes through the tail ends of the first support frame and the second support frame through the connecting rod and is arranged in the guide groove on the guide rail.
The bidirectional adjustable cable winder is characterized in that a switch is arranged on one side of the travelling frame.
Compared with the prior art, the rail wheels are arranged at the tail ends of the first support frame and the second support frame, and the rail wheels of the rail wheels are arranged in the guide grooves of the guide rails, so that the support frames can move in parallel on the guide rails, the effect of adjustable space between the two support frames is achieved, and the device is suitable for the lengths of the reels with different specifications; in addition, the walking frame can move in parallel through the rail wheel at the tail end, and the wire coil can be taken off from the wire reel by utilizing the wire reel and the hook at the tail end of the rope.
Drawings
FIG. 1 is a schematic diagram of the structure of the present invention;
fig. 2 is a right side view of the present invention.
The marks in the drawings are: 1-a first bearing seat, 2-a second bearing seat, 3-a first support frame, 4-a second support frame, 5-a first support rod, 6-a second support rod, 7-a motor, 8-a first rotating shaft, 9-a second rotating shaft, 10-a belt pulley, the device comprises a belt, a rail wheel A, a guide groove, a connecting rod, a guide rail, a walking frame, a cross rod, a rope, a lifting hook, a telescopic structure, a vertical rod, a rail wheel B, a switch, a rope winder and a rope winder.
Detailed Description
The invention is further illustrated by the following figures and examples, which are not intended to be limiting.
Examples. The bidirectional adjustable cable winder comprises a first bearing seat 1 and a second bearing seat 2, wherein the first bearing seat 1 and the second bearing seat 2 are respectively arranged on a first support frame 3 and a second support frame 4, a first rotating shaft 8 and a second rotating shaft 9 are respectively arranged on one side of the first bearing seat and the second bearing seat, a first support rod 5 and a second support rod 6 are respectively arranged on the first support frame 3 and the second support frame 4, a motor 7 is arranged on the first support rod 5, the motor 7 is connected with the first rotating shaft 8 through a belt pulley 10 and a belt 11, rail wheels A12 are respectively arranged at the tail ends of the first support frame 3 and the second support frame 4, and the rail wheels A12 are arranged in a guide groove 13; the first bearing seat 1 and the second bearing seat 2 are of a track structure with grooves, a walking frame 16 is arranged above the first bearing seat 1 and the second bearing seat 2, a rope winder 24 is arranged on a cross rod 17 of the walking frame 16, a lifting hook 19 is arranged at the tail end of a rope 18, a telescopic structure 20 is arranged in the middle of the cross rod, and a rail wheel B22 is arranged at the tail end of a vertical rod 21.
The rail wheel A12 is arranged in a guide groove 13 on a guide rail 15 through the tail ends of the first support frame 3 and the second support frame 4 by a connecting rod 14.
A switch 23 is arranged on one side of the walking frame 16.
The invention is provided with the first support frame 3 and the second support frame 4, the tail ends of the first support frame 3 and the second support frame 4 are provided with the through holes, the connecting rod 14 passes through the through holes, the rail wheels A12 are arranged at the two ends of the connecting rod 14 and are positioned in the cavities at the two sides of the guide rail, and the rail wheels A12 can slide back and forth, thereby realizing the effect of adjustable space between the support frames and being suitable for the coiling work of the coiling shafts with different specifications. When the wire winding device is used, the distance between the supporting frames is adjusted according to the size of the wire winding shaft, one of the supporting frames is fixed by using a clamping tool, the wire winding shaft is installed on the rotating shaft at the upper end of the fixed supporting frame by using the wire winding device 24 in cooperation with the lifting hook 19, at the moment, the other supporting frame is adjusted to enable the corresponding rotating shaft to extend into the pipe cavity of the wire winding shaft, the wire winding shaft is fixed, the motor 7 is opened, the corresponding rotating shaft is connected through the belt pulley 10 and the belt 11, the wire winding shaft rotates along with the motor 7, and wire winding work is completed. The support rods are arranged between the support frames, so that the whole device can be further reinforced.
The first bearing seat 1 and the second bearing seat 2 are of a track structure with grooves, the tail end of the travelling frame 16 is provided with a rail wheel B, when the winding work is finished, acting force can be manually applied, the travelling frame 16 moves in parallel on the guide rail to move the coil out of the production position, at the moment, the switch 23 is opened, the rope reel 24 puts down the rope 18, the hook 19 at the tail end of the rope 18 is used for fixing the coil, the rope reel 24 is opened again, the rope 18 is shortened, and the coil is taken down. The middle part of the cross bar 17 is provided with the telescopic structure 20, and the telescopic structure 20 correspondingly stretches and shortens when the distance between the support frames is adjusted, so that the feasibility of the whole device is met, and in order to meet the requirement of rigidity, the rope 18 can be made of a steel rope with high strength.