Cable winding device
By designing internal support components and external extrusion components, the problem of loose cable winding in the cable winding device is solved, achieving tight cable winding and efficient operation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANDONG CHANGYOU POWER ENG CO LTD
- Filing Date
- 2025-08-27
- Publication Date
- 2026-06-23
AI Technical Summary
In existing cable winding devices, cables are prone to tangling and loosening during the winding process, especially due to poor support tension and compression of the outer and inner layers, which affects the winding effect and subsequent cable unwinding.
The system employs an inner support component and an outer compression component. The inner support component supports the inner layer cable through a lifting drive and a support block, while the outer compression component presses the outer layer cable through a crossbar and a fastening screw, thereby achieving support, tension, and compression fixation of the inner and outer layers of the cable.
It improves the cable winding effect, avoids tangling and loosening, increases work efficiency, and ensures tight cable winding and smooth subsequent cable unwinding.
Smart Images

Figure CN224394277U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of cable winding technology, and specifically relates to a cable winding device. Background Technology
[0002] Cables are wound up using a take-up reel to ensure safe transport and storage. As the reel rotates, the cable gradually winds onto the central winding bar, with two side baffles preventing further winding. During winding, the cable is wound layer by layer onto the reel's winding bar to form a coil. Due to differences in distance between the unwinding area and the take-up reel, as well as differences in unwinding and winding speeds, the cable wound onto the winding bar earlier is prone to loosening, and even the outermost layer is susceptible to loosening. After winding, it becomes impossible to effectively support, tension, and secure the cable from both the inner and outer layers, affecting the winding effect and consequently impacting subsequent unwinding and use. Utility Model Content
[0003] This utility model provides a cable winding device, which improves the cable winding effect and increases work efficiency.
[0004] This utility model provides the following technical solution: it includes a drive support and a positioning frame that moves laterally on the drive support. A take-up reel is engaged between the output shaft of the drive support and the positioning frame. An inner support assembly and an outer extrusion assembly are provided on the inner side of the take-up reel. The inner support assembly includes a lifting drive component and a support block. The support block moves vertically on the inner side of the take-up reel through two lifting drive components. The outer extrusion assembly includes a crossbar, a vertical plate, and fastening screws. The crossbar is screwed and fastened to the inner side of the take-up reel through two vertical plates and two fastening screws.
[0005] The winding reel is fixedly connected to the end of the drive support with a rod inserted into the output shaft of the drive support. The positioning frame is fixedly connected to the side of the winding reel with a connecting rod inserted into the winding reel.
[0006] Two of the lifting drive components are symmetrically fixedly connected to both ends of the winding reel, and the output shafts of the two lifting drive components are respectively fixedly connected to both ends of the support block.
[0007] The winding rod of the winding reel has a groove on its surface, and the support block is engaged and connected inside the groove.
[0008] The winding reel has through holes on both sides of its baffles, which correspond to the lifting drive component. The two ends of the support block are inserted into the two through holes respectively.
[0009] The two vertical plates are fixedly connected to both ends of the horizontal bar, and the two vertical plates are respectively attached to the inner sidewalls of the two side baffles of the winding reel.
[0010] The two fastening screws are respectively screwed into the two vertical plates, and the fastening screws press against the corresponding baffle of the winding reel.
[0011] The beneficial effects of this utility model are:
[0012] This invention utilizes a positioning frame that moves laterally on the drive support to secure the take-up reel between the output shaft of the drive support and the positioning frame. The cable is wound onto the winding rod in the middle of the take-up reel. After winding, the two lifting drives of the inner support assembly activate, controlling the support block to move outward from the inside of the winding rod. This allows the support block to push the cable outward from the innermost layer of the cable to support it. The crossbar of the outer compression assembly moves between the two baffles of the take-up reel, adjusting it to the outermost position of the outermost layer of the cable. The position of the crossbar is fixed by two vertical plates and two fastening screws, allowing the crossbar to press the outermost layer of the cable from the outside. This effectively supports, tensions, and presses the cable from both the inner and outer layers after winding, improving the cable winding effect and increasing work efficiency.
[0013] The parts of the device not covered herein are the same as or can be implemented using existing technologies. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the structure of this utility model;
[0015] Figure 2 This is a structural schematic diagram from another perspective of the present invention;
[0016] Figure 3 This is a top view of the structure of this utility model;
[0017] Figure 4 This is a front view structural diagram of the present utility model;
[0018] Figure 5 This is a frontal cross-sectional view of the present invention.
[0019] In the diagram: 1. Drive support; 11. Positioning frame; 111. Connecting rod; 2. Rewinding reel; 21. Groove; 22. Through hole; 23. Insert rod; 3. Inner support assembly; 31. Lifting drive component; 32. Support block; 4. Outer extrusion assembly; 41. Horizontal bar; 42. Vertical plate; 43. Fastening screw. Detailed Implementation
[0020] Please see Figures 1-5The present invention provides the following technical solution: including a drive support 1 and a positioning frame 11 that moves laterally on the drive support 1. A take-up reel 2 is engaged between the output shaft of the drive support 1 and the positioning frame 11. An inner support assembly 3 and an outer extrusion assembly 4 are provided on the inner side of the take-up reel 2. The inner support assembly 3 includes a lifting drive component 31 and a support block 32. The support block 32 moves vertically on the inner side of the take-up reel 2 through two lifting drive components 31. The outer extrusion assembly 4 includes a crossbar 41, a vertical plate 42 and a fastening screw 43. The crossbar 41 is screwed and fastened to the inner side of the take-up reel 2 through two vertical plates 42 and two fastening screws 43.
[0021] In this implementation scheme: the drive support 1 and the positioning frame 11 cooperate to connect the take-up reel 2. The positioning frame 11 is connected to the opposite side of the output shaft of the drive support 1 via a lateral drive component on the drive support 1. Controlled by the lateral drive component, the positioning frame 11 can move laterally opposite the output shaft of the drive support 1 to adjust its position and change the distance between it and the drive support 1, accommodating the connection of the take-up reel 2 to the drive support 1. A rod 23 is fixedly connected to the end of the take-up reel 2 corresponding to the drive support 1, and the rod 23 is inserted into the output shaft of the drive support 1. A connecting rod 111 is fixedly connected to the side of the positioning frame 11 corresponding to the take-up reel 2, and the connecting rod 111 is inserted into the take-up reel 2, facilitating the fixed-point connection operation of the take-up reel 2 to the drive support 1. When the drive support 1 is activated, the output shaft of the drive support 1 drives the take-up reel 2 to rotate, thereby winding the cable onto the take-up reel 2.
[0022] The inner support assembly 3 consists of lifting drive components 31 and support blocks 32. Two lifting drive components 31 are symmetrically fixedly connected to both ends of the take-up reel 2. The two ends of the support blocks 32 are respectively fixedly connected to the output ends of the two lifting drive components 31, stably connecting the support blocks 32 and the two lifting drive components 31. The surface of the take-up reel 2 has a groove 21, and the support blocks 32 are engaged inside the groove 21, stably connecting the inner support assembly 3 to the take-up reel 2. The lifting drive components 31 can be electric push rods. After the target sends a command, the control module receives the wireless command and controls the DC motor to start, thereby controlling the push rod mechanism to start. After reaching the target position, it automatically stops and provides feedback, so that the support blocks 32 can move outward inside the groove 21 on the surface of the take-up reel 2 through the control of the two lifting drive components 31. This allows the support blocks 32 to be adjusted in position inside the take-up reel 2, ensuring that the take-up reel 2 can smoothly wind and rewind the cable through the take-up rod. Both sides of the winding reel 2 have through holes 22, which correspond to the lifting drive component 31. The two ends of the support block 32 are inserted into the two through holes 22 respectively, providing enough space for the support block 32 to move and improving the stability and smoothness of the support block 32 when it moves inside the winding reel 2.
[0023] The external extrusion assembly 4 consists of a crossbar 41, vertical plates 42, and fastening screws 43. The two vertical plates 42 are fixedly connected to both ends of the crossbar 41. The two vertical plates 42 are respectively attached to the inner sidewalls of the two side baffles of the take-up reel 2. The two fastening screws 43 are respectively screwed into the inside of the two vertical plates 42. The fastening screws 43 press against the corresponding baffles of the take-up reel 2 to facilitate the adjustment and fixing of the position of the crossbar 41 inside the take-up reel 2.
[0024] The positioning frame 11 moves outward on the drive support 1, moving the take-up reel 2 between the output shaft of the drive support 1 and the positioning frame 11. The insertion rod 23 on the take-up reel 2 is inserted into the output shaft of the drive support 1. The positioning frame 11 resets, allowing the connecting rod 111 to be inserted into the other end of the take-up reel 2, clamping and positioning the take-up reel 2 between the output shaft of the drive support 1 and the positioning frame 11. The take-up reel 2 rotates under the control of the drive support 1, allowing the cable to wind onto the winding rod in the middle part of the take-up reel 2. After the cable is wound, the two lifting drive components 31 of the inner support assembly 3 are activated, controlling the support block 32 to move outward from the groove 21 on the winding rod. The outward movement of the support block 32 can push the cable from the innermost cable area. After the support block 32 stops moving, it can lift the cable from the inside of the wound cable to effectively tension the cable. The crossbar 41 of the outer extrusion assembly 4 moves between the two baffles of the winding reel 2. The two vertical plates 42 move against the corresponding baffles to adjust the position of the crossbar 41 between the two baffles, adjusting the crossbar 41 to the outermost position of the outermost cable. By operating the two fastening screws 43, the positions of the two vertical plates 42 and the crossbar 41 are fixed, allowing the crossbar 41 to press the outermost cable from the outside. This can effectively support, tension, and press the cable from the inner and outer layers of the wound cable after winding, improving the winding effect of the cable, increasing work efficiency, avoiding loosening of the wound cable, and ensuring the subsequent unwinding of the cable.
[0025] The working principle and usage process of this utility model are as follows: The positioning frame 11 moves outward on the drive support 1 to expose sufficient space for placing the take-up reel 2. The insertion rod 23 on the take-up reel 2 is inserted into the output shaft of the drive support 1. The positioning frame 11 resets, allowing the connecting rod 111 to be inserted into the other end of the take-up reel 2, thus clamping and positioning the take-up reel 2 between the output shaft of the drive support 1 and the positioning frame 11. The take-up reel 2 rotates to wind the cable onto the winding rod in the middle part of the take-up reel 2. After the cable is wound, the two lifting drive components 31 are activated, and the control support block 32 moves from the winding rod. The groove 21 moves outward, and the support block 32 pushes the cable from the innermost area of the innermost cable. After the support block 32 stops moving, it lifts up from the inner side of the wound cable and tensions the cable. The crossbar 41 moves between the two baffles of the winding reel 2, and the two vertical plates 42 move against the corresponding baffles. The crossbar 41 is adjusted to the outer position of the outermost cable. The two fastening screws 43 are operated to fix the positions of the two vertical plates 42 and the crossbar 41, so that the crossbar 41 presses the outermost cable from the outside. The cable is supported, tensioned and pressed and fixed from the inner and outer areas of the wound cable.
Claims
1. A cable winding device, comprising a drive support (1) and a positioning frame (11) that moves laterally on the drive support (1), characterized in that: The output shaft of the drive support (1) is engaged with the positioning frame (11) and a winding reel (2) is connected. The winding reel (2) is provided with an inner support assembly (3) and an outer extrusion assembly (4) on its inner side. The inner support assembly (3) includes a lifting drive component (31) and a support block (32). The support block (32) moves vertically inside the winding reel (2) through the two lifting drive components (31). The external extrusion assembly (4) includes a crossbar (41), a vertical plate (42), and a fastening screw (43). The crossbar (41) is screwed and fastened to the inside of the take-up reel (2) by two of the vertical plates (42) and two of the fastening screws (43).
2. The cable winding device according to claim 1, characterized in that: The take-up reel (2) is fixedly connected to the end of the drive support (1) with a plug rod (23), which is inserted into the output shaft of the drive support (1). The positioning frame (11) is fixedly connected to the side of the take-up reel (2) with a connecting rod (111), which is inserted into the inside of the take-up reel (2).
3. The cable winding device according to claim 1, characterized in that: The two lifting drive components (31) are symmetrically fixedly connected to both ends of the winding reel (2), and the two ends of the support block (32) are respectively fixedly connected to the output shafts of the two lifting drive components (31).
4. The cable winding device according to claim 1, characterized in that: The winding rod of the winding reel (2) has a groove (21) on its surface, and the support block (32) is engaged with the inside of the groove (21).
5. A cable winding device according to claim 1, characterized in that: Both sides of the winding reel (2) are provided with through holes (22), which correspond to the lifting drive (31). The two ends of the support block (32) are respectively inserted into the two through holes (22).
6. A cable winding device according to claim 1, characterized in that: The two vertical plates (42) are fixedly connected to the two ends of the horizontal bar (41), and the two vertical plates (42) are respectively attached to the inner sidewalls of the two side baffles of the winding reel (2).
7. A cable winding device according to claim 1, characterized in that: The two fastening screws (43) are respectively screwed into the two vertical plates (42), and the fastening screws (43) press against the corresponding baffle of the winding reel (2).