Double-layer multi-group cable winding device

By using a dual-layer, individually driven, multi-group winding drum structure, the problem of not being able to simultaneously wind up multiple groups of cables in existing technologies is solved, achieving efficient cable winding and storage and reducing usage costs.

CN224118452UActive Publication Date: 2026-04-14FUJIAN TENGLI METAL PROD CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FUJIAN TENGLI METAL PROD CO LTD
Filing Date
2025-01-23
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

Existing cable winding devices are typically single winding mechanisms, which cannot efficiently wind multiple sets of cables simultaneously, leading to increased operating costs.

Method used

The system employs a dual-layer, individually driven multi-group winding drum structure, including a first winding drum group and a second winding drum group, which are detachably connected via connecting rods to achieve synchronous winding of multiple cable groups.

Benefits of technology

It improves cable winding efficiency, reduces usage costs, and facilitates cable storage and transportation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a double-layer multi-group cable winding device, and relates to the technical field of winding devices. The cable winding device comprises a first winding drum set and a second winding drum set, the first winding drum set and the second winding drum set are the same in structure, four connecting rods are arranged on the second winding drum set, and the connecting rods are detachably connected with the first winding drum set. And double-layer multi-group cables can be synchronously wound, so that the winding efficiency is effectively improved, and the use cost is further reduced.
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Description

Technical Field

[0001] This utility model relates to a double-layer multi-group cable winding device, and belongs to the technical field of winding device equipment. Background Technology

[0002] During the production and use of cables, winding devices are usually used to wind the cables for easy storage and transportation, thereby improving production and operational efficiency.

[0003] Existing cable winding devices are typically single winding mechanisms, capable of winding only one type of cable. For example, patent CN116281395B discloses a cable winding device and method, comprising: a conductor device adapted to guide the cable; and a winding device disposed on one side of the conductor device, adapted to wind the cable guided by the conductor device, and adapted to adjust the diameter of the innermost coil during cable winding. This allows for adjustment of the innermost winding diameter to wind cables of different diameters, and simultaneously dries water from the cable surface to prevent corrosion. However, this winding device winds a single cable using a single winding mechanism. To wind multiple cables simultaneously, multiple winding devices are required, increasing operating costs. Utility Model Content

[0004] The purpose of this utility model is to address the defects or deficiencies in the existing technology by providing a double-layer multi-group cable winding device. By setting up a double-layer, independently driven multi-group winding drum, it can wind up multiple groups of cables, effectively improving winding efficiency and reducing usage costs.

[0005] To achieve the above objectives, the present invention adopts the following technical solution: it includes a first take-up drum assembly 1 and a second take-up drum assembly 2. The first take-up drum assembly 1 and the second take-up drum assembly 2 have the same structure. The second take-up drum assembly 2 is provided with four connecting rods 3, and the connecting rods 3 are detachably connected to the first take-up drum assembly 1.

[0006] Furthermore, the first take-up drum assembly 1 includes a support 11, a drive motor 12, a bearing seat 13, and a take-up drum 15. The drive motor 12 is located on one side of the bottom of the support 11, and the bearing seat 13 is located on the top of the support 11. Several sets of take-up drums 15 are provided, and a fixed partition 14 is provided between two adjacent take-up drums 15. Fixed partitions 14 are also provided on the outer sides of the take-up drums 15 at both ends. A drive shaft 16 is provided inside the take-up drum 15. The drive shaft 16 passes through and is fixed to the center of the fixed partition 14. Both ends of the drive shaft 16 are connected to the bearing seat 13. The drive motor 12 is connected to the drive shaft 16 for transmission.

[0007] Furthermore, a cable fixing cylinder 103 is provided on the drive shaft 16. The cable fixing cylinder 103 is fixed by a fixing hoop 104, and one end of the cable fixing cylinder 103 is the cable inlet end.

[0008] Furthermore, fastening plates 102 are provided on both sides of the fixed partition 14, and a fastening shaft 101 is provided on the fastening plate 102 near the drive motor 12.

[0009] Furthermore, a drive gear 17 is provided at the output shaft end of the drive motor 12.

[0010] Furthermore, a transmission gear 18 is provided on the side of the transmission shaft 16 near the drive motor 12, which is connected to the drive gear 17 via a chain. A gear cover 4 is provided on the outside of the transmission gear 18 and fixed on the bracket 11. The transmission gear 18 is also connected to the fastening shaft 101.

[0011] Furthermore, an auxiliary shaft 19 is provided on the fixed partition 14. The auxiliary shaft 19 passes through all the fixed partitions 14 and the fastening plate 102, and one end of the auxiliary shaft 19 is connected to the transmission gear 18.

[0012] Furthermore, the winding drum 15 is provided with a limit plate 151 at the inlet end of the cable fixing drum 103.

[0013] After adopting the above technical solution, the beneficial effects of this utility model are as follows: by setting up multiple sets of winding drums with dual-layer independent drives, it is possible to wind up single-layer multiple sets of cables, as well as to wind up double-layer multiple sets of cables simultaneously, which effectively improves winding efficiency and reduces usage costs. Attached Figure Description

[0014] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0015] Figure 1 This is a schematic diagram of the structure of this utility model;

[0016] Figure 2 yes Figure 1 The second angle view;

[0017] Figure 3 This is a schematic diagram of the structure of the first winding drum assembly 1 in this utility model;

[0018] Figure 4 yes Figure 3 The second angle view;

[0019] Figure 5 yes Figure 3 A schematic diagram of the structure after removing the support 11.

[0020] Explanation of reference numerals in the attached drawings: 1. First winding drum assembly; 2. Second winding drum assembly; 3. Connecting rod; 4. Gear cover; 11. Bracket; 12. Drive motor; 13. Bearing seat; 14. Fixed partition plate; 15. Winding drum; 16. Drive shaft; 17. Drive gear; 18. Transmission gear; 19. Auxiliary shaft; 101. Fastening shaft; 102. Fastening plate; 103. Cable fixing cylinder; 104. Fixing clamp; 151. Limiting pressure plate. Detailed Implementation

[0021] See Figures 1-5 As shown, the technical solution adopted in this specific embodiment is as follows: it includes a first winding drum group 1 and a second winding drum group 2. The first winding drum group 1 and the second winding drum group 2 have the same structure. The second winding drum group 2 is provided with four connecting rods 3. The connecting rods 3 are detachably connected to the first winding drum group 1. In the actual production and use of cables, it is often necessary to wind or use multiple groups of cables at the same time. However, the existing winding devices are usually single winding structures, which can only wind one group of cables. Multiple winding devices are required to perform the operation well, and storage is also inconvenient. Therefore, in this embodiment, a two-winding drum group structure is adopted. The two winding drum groups are detachable structures. When there are many cables, the two layers can be stacked or used in a single layer, so as to facilitate selective use according to specific usage needs, improve winding efficiency, and facilitate the storage and transportation of the wound cables.

[0022] More specifically, the first take-up drum assembly 1 includes a support 11, a drive motor 12, a bearing housing 13, and a take-up drum 15. The drive motor 12 is located on one side of the bottom of the support 11, the bearing housing 13 is located on the top of the support 11, and the take-up drum 15 is mounted on the support 11 and connected to the bearing housing 13. The drive motor 12 is connected to the take-up drum 15 in a driving connection. Several sets of take-up drums 15 are provided, with a fixed partition 14 between two adjacent take-up drums 15, and fixed partitions 14 are also provided on the outer sides of the take-up drums 15 at both ends. A drive shaft 16 is provided inside each take-up drum 15. The drive shaft 16 is fixed through the center of the fixed partition 14, and both ends of the drive shaft 16 are connected to the bearing seats 13. In this embodiment, the winding drum is fixed on the fixed partition. Specifically, the fixed partition 14 is provided with fastening plates 102 on both sides. The fastening plate 102 near the drive motor 12 is provided with a fastening shaft 101. The winding drum is first installed on the fastening plate and then fixed on the fixed partition. The drive motor drives the fixed partition to rotate, and the fixed partition then drives the winding drum and the drive shaft to rotate, thereby realizing the winding of the cable. By setting multiple fixed partitions, multiple sets of cables can be wound up at the same time.

[0023] More specifically, the drive shaft 16 is provided with a cable fixing cylinder 103, which is fixed by a fixing hoop 104. One end of the cable fixing cylinder 103 is the cable inlet end. When fixing the cable, it can be inserted into the cable fixing cylinder and tightened by bolts.

[0024] More specifically, the output shaft of the drive motor 12 is provided with a drive gear 17, and the transmission shaft 16 is provided with a transmission gear 18 on the side near the drive motor 12, which is connected to the drive gear 17 by a chain. The transmission gear 18 is provided with a gear cover 4 and fixed on the bracket 11. The transmission gear 18 is also connected to the fastening shaft 101. The fixed partition 14 is provided with an auxiliary shaft 19, which passes through all the fixed partitions 14 and the fastening plate 102. One end of the auxiliary shaft 19 is connected to the transmission gear 18. In this embodiment, after the transmission gear is fixed to the transmission shaft, it mainly drives the transmission shaft. To ensure the driving effect, an auxiliary shaft is provided inside the winding drum and connected to the transmission gear. A fastening shaft is also provided on the fastening plate and connected to the transmission gear. Therefore, when the transmission gear rotates, it drives the transmission shaft and also drives the nearby fixed partition and fastening plate to rotate synchronously, thereby better driving the transmission shaft to rotate for winding operations.

[0025] More specifically, the winding drum 15 is provided with a limiting pressure plate 151 at the inlet end of the cable fixing drum 103. When fixing the cable, the limiting pressure plate is pressed inward to insert the cable into the cable fixing drum. After the cable is fixed, the limiting pressure plate is released, and the limiting pressure plate will press against the cable, thereby achieving auxiliary limiting of the cable and preventing accidental loosening. When removing the cable, simply press the limiting pressure plate again.

[0026] The working principle of this utility model is as follows: When winding the cable, the cable passes through the limiting pressure plate 151 and enters the cable fixing cylinder 103, where it is tightened with bolts. Multiple cables can be wound simultaneously, and the cables can be wound into the first winding cylinder group 1 or winding cylinder group 2 for grouped individual winding or simultaneous winding. During winding, the drive gear 17 drives the transmission gear 18 to rotate, which in turn drives the transmission shaft 16 to rotate, and simultaneously drives the fixed partition plate 14 to rotate. A fastening shaft 101 is provided on the fastening plate 102 near the transmission gear 18 and is connected to the transmission gear 18. One end of the auxiliary shaft 19 is also connected to the transmission gear 18. The transmission gear 18 simultaneously drives the auxiliary shaft 19 to rotate, which increases the stability of the driving force of the transmission gear 18 on the entire winding cylinder group and ensures the winding effect.

[0027] The above description is only used to illustrate the technical solution of this utility model and is not intended to limit it. Any other modifications or equivalent substitutions made by those skilled in the art to the technical solution of this utility model, as long as they do not depart from the spirit and scope of the technical solution of this utility model, should be covered within the scope of the claims of this utility model.

Claims

1. A double-layer multi-group cable winding device, characterized in that: It includes a first take-up drum assembly (1) and a second take-up drum assembly (2). The first take-up drum assembly (1) and the second take-up drum assembly (2) have the same structure. The second take-up drum assembly (2) is provided with four connecting rods (3). The connecting rods (3) are detachably connected to the first take-up drum assembly (1).

2. The double-layer multi-group cable winding device according to claim 1, characterized in that: The first take-up drum assembly (1) includes a bracket (11), a drive motor (12), a bearing seat (13), and a take-up drum (15). The drive motor (12) is located on one side of the bottom of the bracket (11), and the bearing seat (13) is located on the top of the bracket (11). Several sets of take-up drums (15) are provided. A fixed partition (14) is provided between two adjacent take-up drums (15), and a fixed partition (14) is also provided on the outer side of the take-up drums (15) at both ends. A drive shaft (16) is provided inside the take-up drum (15). The drive shaft (16) passes through and is fixed to the center of the fixed partition (14), and both ends of the drive shaft (16) are connected to the bearing seat (13). The drive motor (12) is connected to the drive shaft (16) for transmission.

3. The double-layer multi-group cable winding device according to claim 2, characterized in that: The drive shaft (16) is provided with a cable fixing cylinder (103), which is fixed by a fixing hoop (104). One end of the cable fixing cylinder (103) is the cable inlet end.

4. The double-layer multi-group cable winding device according to claim 2, characterized in that: The fixed partition (14) is provided with fastening plates (102) on both sides, and a fastening shaft (101) is provided on the fastening plate (102) near the drive motor (12).

5. A double-layer multi-group cable winding device according to claim 2, characterized in that: The output shaft end of the drive motor (12) is provided with a drive gear (17).

6. The double-layer multi-group cable winding device according to claim 2, characterized in that: The transmission shaft (16) is provided with a transmission gear (18) on the side near the drive motor (12), which is connected to the drive gear (17) by a chain. The transmission gear (18) is provided with a gear cover (4) and fixed on the bracket (11). The transmission gear (18) is also connected to the fastening shaft (101).

7. A double-layer multi-group cable winding device according to claim 2, characterized in that: An auxiliary shaft (19) is provided on the fixed partition (14). The auxiliary shaft (19) passes through all the fixed partitions (14) and the fastening plate (102), and one end of the auxiliary shaft (19) is connected to the transmission gear (18).

8. A double-layer multi-group cable winding device according to claim 2, characterized in that: The winding drum (15) is provided with a limit pressure plate (151) at the inlet end of the cable fixing drum (103).

Citation Information

Patent Citations

  • A cable winding device and a cable winding method

    CN116281395B