Height-adjustable traction device for inhaul cable production
By using upper and lower parallel and turning to opposite conveyor belt structures in cable production, and adjusting the height of the upper conveyor belt through the lifting assembly, the problems of low manual traction efficiency and cable offset are solved, and a stable and efficient traction effect is achieved.
Patent Information
- Application Number
- CN202422266916.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-18
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-09-18
AI Technical Summary
During the existing cable production process, the manual traction method is inefficient, high cost, and the cable is easily deviated, making it difficult to ensure the stability of the traction process.
A conveyor belt structure is adopted that is parallel and opposite to the upper and lower conveyor belt height is adjusted through the lifting assembly to achieve clamping and traction of the cable.
The stability and efficiency of cable traction are improved, the cable is avoided during the traction process, and the manual operation cost is reduced.
Smart Images

Figure CN223162942U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of cable production equipment, and particularly relates to a traction device with adjustable height for cable production. Background Art
[0002] A cable is a steel cable used to stabilize steel structural members or finished membranes. During the cable production process, a traction device needs to be set at the front end to traction the produced cable to prevent the produced cable from being wound together, affecting subsequent use and reducing the sorting difficulty. However, the current traction device generally uses manual traction with the assistance of a traction groove to traction the cable. This method has a slow operation efficiency, a high labor cost, and cannot ensure that the cable always moves along the traction direction during the traction process. The cable is prone to deviation during the traction process and needs to be corrected multiple times. Content of the Utility Model
[0003] The technical problem to be solved by the utility model is to provide a traction device with adjustable height for cable production, which can quickly and stably traction the produced cable, prevent the cable from deviating from the original direction during the traction process, and improve the traction efficiency.
[0004] To solve the above technical problems, the following technical solutions are adopted in the utility model.
[0005] A traction device with adjustable height for cable production includes a wire guiding groove and a traction frame arranged in sequence; two guiding columns are symmetrically arranged on one side of the traction frame. A lower mounting frame for installing a lower conveyor belt is sleeved on the lower parts of the two guiding columns, and an upper mounting frame for installing an upper conveyor belt is sleeved on the upper parts of the guiding columns; a first motor for driving the upper conveyor belt to act is installed on one side of the upper mounting frame, and a second motor for driving the lower conveyor belt to act is installed on one side of the lower mounting frame; the mutually approaching sides of the upper conveyor belt and the lower conveyor belt form a traction channel for the cable to pass through, and the rotation directions of the upper conveyor belt and the lower conveyor belt are opposite; the tops of the two guiding columns are connected by a cross beam, and a lifting assembly for driving the upper mounting frame to lift is installed on the cross beam.
[0006] In the above traction device with adjustable height for cable production, the lifting assembly includes a lead screw threadedly fitted with the cross beam. The bottom of the lead screw passes through the threaded hole in the center of the cross beam and is rotatably connected to a connecting seat on one side of the upper mounting frame. A rotating wheel for easy operation is installed on the top of the lead screw.
[0007] In the above traction device with adjustable height for cable production, the upper mounting frame includes two symmetrically arranged side plates. Shafts are respectively installed at both ends of the side plates, and belt pulleys for transmitting connection with the upper conveyor belt are installed in the middle of the shafts. One of the shafts is connected to the first motor.
[0008] The above-mentioned traction device with adjustable height for cable production, the lower mounting frame includes two symmetrically arranged side plates, the two ends of the side plates are respectively installed with rotating shafts, the middle of the rotating shafts is installed with pulleys that are connected to the lower conveyor belt for transmission, and one of the rotating shafts is connected to the second motor.
[0009] Due to the adoption of the above technical solutions, the technical progress achieved by the present utility model is as follows.
[0010] The present utility model provides a traction device with adjustable height for cable production, which uses two conveyor belts arranged side by side up and down and rotating in opposite directions to traction the cable, and adjusts the height of the upper conveyor belt through a lifting component, realizing the clamping and traction of the cable, avoiding the deviation of the cable during the traction process, ensuring the stability of the traction, and improving the traction efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Figure 1 It is a schematic structural diagram of the present utility model.
[0012] Wherein: 1. wire groove, 2. traction frame, 3. upper conveyor belt, 4. lower conveyor belt, 5. upper mounting frame, 6. lower mounting frame, 7. first motor, 8. second motor, 9. guide post, 10. cross beam, 11. lead screw, 12. connecting seat, 13. runner. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0013] The present utility model will be further described in detail below in conjunction with the drawings and specific embodiments.
[0014] A traction device with adjustable height for cable production, as Figure 1 shown, includes a wire groove 1 and a traction frame 2 arranged in sequence. On one side of the traction frame 2, two symmetrically arranged guide posts 9 are provided. The lower parts of the two guide posts 9 are sleeved with a lower mounting frame 6 for installing the lower conveyor belt 4, and the upper parts of the guide posts 9 are sleeved with an upper mounting frame 5 for installing the upper conveyor belt 3. On one side of the upper mounting frame 5, a first motor 7 for driving the upper conveyor belt 3 to operate is installed. On one side of the lower mounting frame 6, a second motor 8 for driving the lower conveyor belt 4 to operate is installed.
[0015] The top surface of the lower conveyor belt 4 is flush with the bottom of the wire groove 1. The upper conveyor belt 3 and the lower conveyor belt 4 rotate in opposite directions, and the mutually approaching sides of the upper conveyor belt 3 and the lower conveyor belt 4 form a traction channel for the cable to pass through.
[0016] The upper mounting frame 5 includes two symmetrically arranged side plates. The two ends of the side plates are respectively installed with rotating shafts. The middle of the rotating shafts is installed with pulleys that are connected to the upper conveyor belt 3 for transmission. One of the rotating shafts is connected to the first motor 7.
[0017] The lower mounting bracket 6 includes two symmetrically arranged side plates. Rotating shafts are respectively installed at both ends of the side plates, and a pulley connected to the lower conveyor belt 4 for transmission is installed in the middle of the rotating shaft. One of the rotating shafts is connected to the second motor 8.
[0018] The tops of two guide columns 9 are connected by a cross beam 10, and a lifting assembly for driving the upper mounting bracket 5 to lift is installed on the cross beam 10.
[0019] The lifting assembly includes a lead screw 11 threadedly fitted with the cross beam 10. The bottom of the lead screw 11 passes through the threaded hole in the center of the cross beam 10 and is rotatably connected to a connecting seat 12 on one side of the upper mounting bracket 5.
[0020] A convenient-to-operate rotating wheel 13 is installed at the top of the lead screw 11, and the lead screw 11 is driven to rotate by rotating the rotating wheel 13.
[0021] During use, the cable is led through the traction groove 1 to the space between the upper conveyor belt 3 and the lower conveyor belt 4 on the traction table 2, and then the lower conveyor belt is adjusted according to the size of the cable.
[0022] By rotating the rotating wheel 13 to adjust the position of the upper mounting bracket 5, the bottom end surface of the upper conveyor belt 3 is matched with the top end surface of the lower conveyor belt 4 to clamp the cable, avoiding the deviation of the cable during the traction process.
[0023] Then, the first motor 7 and the second motor 8 are started to make the upper conveyor belt 3 and the lower conveyor belt 4 start to rotate. Since the conveying directions of the two conveyor belts are opposite, the cable can be tractioned by the action of friction.
[0024] The utility model provides a traction device with adjustable height for cable production, which tractiones the cable through two conveyor belts arranged side by side up and down and with opposite rotation directions, and adjusts the height of the upper conveyor belt through a lifting assembly, realizing the clamping and traction of the cable, avoiding the deviation of the cable during the traction process, ensuring the stability of the traction, and improving the traction efficiency.
Claims
1. A traction device with adjustable height for cable production, characterized in that: It includes a wire duct (1) and a traction frame (2) arranged in sequence; two guide columns (9) are symmetrically arranged on one side of the traction frame (2), a lower mounting bracket (6) for installing a lower conveyor belt (4) is sleeved on the lower parts of the two guide columns (9), and an upper mounting bracket (5) for installing an upper conveyor belt (3) is sleeved on the upper parts of the guide columns (9); a first motor (7) for driving the upper conveyor belt (3) to act is installed on one side of the upper mounting bracket (5), and a second motor (8) for driving the lower conveyor belt (4) to act is installed on one side of the lower mounting bracket (6); a traction channel for the cable to pass through is formed on the side where the upper conveyor belt (3) and the lower conveyor belt (4) are close to each other, and the rotation directions of the upper conveyor belt (3) and the lower conveyor belt (4) are opposite; the tops of the two guide columns (9) are connected by a cross beam (10), and a lifting assembly for driving the upper mounting bracket (5) to lift is installed on the cross beam (10).
2. The height-adjustable traction device for cable production according to claim 1, wherein: The lifting assembly includes a lead screw (11) threadedly fitted with the cross beam (10). The bottom of the lead screw (11) passes through the threaded hole at the center of the cross beam (10) and is rotatably connected to a connecting seat (12) on one side of the upper mounting bracket (5), and a rotating wheel (13) convenient for operation is installed on the top of the lead screw (11).
3. The height-adjustable traction device for cable production according to claim 1, wherein: The upper mounting bracket (5) includes two side plates symmetrically arranged. Rotating shafts are respectively installed at both ends of the side plates, and pulleys for transmission connection with the upper conveyor belt (3) are installed in the middle of the rotating shafts, and one of the rotating shafts is connected to the first motor (7).
4. A height-adjustable traction device for cable production according to claim 1, characterized in that: The lower mounting bracket (6) includes two side plates symmetrically arranged. Rotating shafts are respectively installed at both ends of the side plates, and pulleys for transmission connection with the lower conveyor belt (4) are installed in the middle of the rotating shafts, and one of the rotating shafts is connected to the second motor (8).