Cable bundling and limiting structure
By designing a cable winding and limiting structure, using a fixed channel and a motor-driven winding drum, combined with magnet control, the problems of low efficiency and chaotic layout in traditional cable winding are solved, achieving an efficient and orderly cable winding process.
Patent Information
- Application Number
- CN202520581777.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-31
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2035-03-31
AI Technical Summary
Traditional cable winding relies on manual bundling, which is inefficient. Furthermore, the varying tightness of bundling by different operators leads to chaotic cable bundle layouts, making it difficult to meet the needs of mass production and easily causing cable breakage or short circuits.
Design a cable winding and limiting structure, which adopts a fixed channel and a motor-driven winding drum, combined with a magnet to control the rotation of the winding drum, to achieve orderly cable winding. The cable is fixed by the design of the cable channel and the wire end channel, and the rotation and stopping of the winding drum are controlled by the magnet.
It enables the orderly bundling of cables, reduces manual adjustment time, improves winding efficiency, prevents cables from crossing and tangling, and ensures cable stability and transmission efficiency.
Smart Images

Figure CN223823053U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cable auxiliary equipment technology, specifically a cable coiling and limiting structure. Background Technology
[0002] A cable is a bundle of wires composed of insulating materials or metal conductors used to transmit electrical energy or signals. During the cable manufacturing process, the take-up process typically involves extruding the insulation and sheath layers using an extrusion machine, then sending the cable to a take-up machine for winding. The take-up machine rotates, tightly wrapping the metal conductors on the cable to prevent them from loosening or cracking, which could lead to irregularities in the cable's geometry, causing breakage or short circuits. This improves the cable's transmission efficiency and stability. Traditional cable winding relies on manual bundling and arrangement, which is inefficient, especially when winding complex bundles, making it difficult to meet the needs of large-scale production. Furthermore, different operators may use varying degrees of tightness in bundling, potentially causing a chaotic bundle layout, affecting subsequent maintenance or upgrades. Replacing a single cable requires removing the entire bundle, making it extremely inconvenient. Summary of the Invention
[0003] To overcome the shortcomings of the prior art, this utility model provides a cable winding and limiting structure. Through a fixed channel, the cable bundle can be embedded into the channel and fixed in sections. A motor drives the winding drum to rotate, which can wind the cable bundle onto the winding drum. A magnet is used to stop the winding drum from rotating.
[0004] To achieve the above objectives, a cable winding and limiting structure is designed, including a winding drum. The winding drum has terminal blocks on both the left and right sides. A motor is connected to the outside of one terminal block, and a bracket is connected below the motor. A magnet is provided on the outside of the other terminal block. One end of a rotating shaft is connected to the inside of the bracket, and the other end of the rotating shaft passes through the winding drum and is connected to the motor. An anti-rotation magnet is sleeved on the rotating shaft near the bracket, and a push handle is connected to the outside of the anti-rotation magnet.
[0005] The winding drum is provided with a groove on its upper part, which is a groove with an arc.
[0006] The second bracket has a through hole at its top, through which the push handle is connected to the anti-rotation magnet.
[0007] The surface of the winding drum near the port of the second bracket has a wire end groove. The curvature of the wire end groove is the same as that of the wire groove, but the curvature of the wire end groove is deeper than that of the wire groove.
[0008] A fixing component is provided above the wire end slot.
[0009] The fastener is provided with wire holes.
[0010] Compared with the prior art, this utility model can orderly bundle up the cable, preventing the cable from crossing and tangling. The winding drum can tumble and wind the cable, reducing manual adjustment time. At the same time, a magnet is provided to control the winding speed, which improves the efficiency of the winding process. Attached Figure Description
[0011] Figure 1 This is a schematic diagram of the structure of this utility model.
[0012] Figure 2 This is the front view of the present invention.
[0013] Figure 3 This is a top view of the present invention.
[0014] Figure 4 This is a partial enlarged view of the winding drum groove of this utility model.
[0015] See Figures 1 to 4 1 is a winding drum, 2 is a junction box, 3 is a wire groove, 4 is a fixing component, 4.1 is a wire hole, 5 is a wire end groove, 6.1 is bracket one, 6.2 is bracket two, 7 is a rotating shaft, 8 is a motor, 9 is a magnet, 10 is a stop magnet, 11 is a push handle, and 12 is a through hole. Detailed Implementation
[0016] The present invention will be further described below with reference to the accompanying drawings.
[0017] like Figure 1 , 2 As shown in Figure 3, the winding drum 1 has a junction box 2 on both the left and right sides. The junction box 2 serves as a limit switch. The outer side of the junction box 2 on one side is connected to the motor 8. The motor 8 is connected to the bracket 6.1 below it. The outer side of the junction box 2 on the other side is equipped with a magnet 9. The inner side of the bracket 6.2 is connected to one end of the rotating shaft 7. The other end of the rotating shaft 7 passes through the winding drum 1 and is connected to the motor 8. The rotating shaft 7 is fitted with an anti-rotation magnet 10 near the bracket 6.2. The outer side of the anti-rotation magnet 10 is connected to a push handle 11. The motor 8 drives the rotating shaft 7 to rotate the winding drum 1, which can coil the wire. By pushing the handle 11, the anti-rotation magnet 10 can be moved back and forth on the rotating shaft 7. When the anti-rotation magnet 10 is close to the magnet 9, it stops the rotation.
[0018] The top of the winding drum 1 is provided with a wire groove 3, which is a groove with an arc shape, so that the cable can be evenly inserted into the wire groove 3 to prevent the cable from getting tangled together when it is bundled.
[0019] The top of bracket 2 6.2 has a through hole 12, and the push handle 11 passes through the through hole 12 to connect to the anti-rotation magnet 10.
[0020] like Figure 4As shown, the surface of the winding drum 1 is provided with a wire end groove 5 near the port of the bracket 6.2. The curvature of the wire end groove 5 is the same as that of the wire groove 3, but the curvature of the wire end groove 5 is deeper than that of the wire groove 3. A fixing member 4 is provided above the wire end groove 5. The fixing member 4 is provided with a wire hole 4.1. The cable can pass through the fixing hole 4 to fix one end of the wire, which is convenient for winding.
[0021] The specific operation process of this utility model is as follows: one end of the cable is passed through the fixing hole 4 for fixation, the cable is inserted into the wire end groove 5 of the winding drum 1, and the middle section of the cable is inserted into the wire groove 3. The curved groove will initially fix the cable and prevent slippage. Start the motor 8, drive the rotating shaft 7 to drive the winding drum 1 to rotate, and start winding the cable. The technician observes whether the cable is evenly wound in the wire groove 3. If necessary, slow down the speed of the motor 8 and manually adjust the position to ensure neatness. When it is necessary to pause or limit, push the handle 11 inward to make the anti-rotation magnet 10 attract the magnet 9 of the bracket 6.2, forcing the rotating shaft 7 to stop rotating. When resuming winding, pull the handle 11 outward to release the attraction between the anti-rotation magnet 10 and the magnet 9. The rotating shaft 7 will rotate with the motor 8 again. After winding is completed, turn off the motor 8 and check again whether the cable is firmly fixed in the wire groove 3 and the wire end groove 5.
Claims
1. A cable winding and limiting structure, comprising a winding drum, characterized in that: The winding drum (1) is provided with a terminal block (2) on the left and right sides. The outer side of the terminal block (2) on one side is connected to a motor (8). The motor (8) is connected to a bracket (6.1) below it. The outer side of the terminal block (2) on the other side is provided with a magnet (9). The inner side of the bracket (6.2) is connected to one end of a rotating shaft (7). The other end of the rotating shaft (7) passes through the winding drum (1) and is connected to the motor (8). The rotating shaft (7) is fitted with an anti-rotation magnet (10) near the bracket (6.2). The outer side of the anti-rotation magnet (10) is connected to a push handle (11).
2. The cable bundling and limiting structure according to claim 1, characterized in that: The winding spool (1) is provided with a wire groove (3) above it. The wire groove (3) is a groove with an arc.
3. The cable bundling and limiting structure according to claim 1, characterized in that: The bracket 2 (6.2) has a through hole (12) at the top, and the push handle (11) passes through the through hole (12) to connect to the anti-rotation magnet (10).
4. The cable bundling and limiting structure according to claim 1, characterized in that: The surface of the winding drum (1) near the port of the second bracket (6.2) is provided with a wire end groove (5). The curvature of the wire end groove (5) is the same as that of the wire groove (3), and the curvature of the wire end groove (5) is deeper than that of the wire groove (3).
5. The cable bundling and limiting structure according to claim 4, characterized in that: A fixing element (4) is provided above the wire end groove (5).
6. The cable bundling and limiting structure according to claim 5, characterized in that: The fastener (4) is provided with an electrical wire hole (4.1).