Cable laying reel mover

By designing a cable laying reel mover, the automated collection and stable arrangement of cables are achieved using drive components and lifting and moving structures. This solves the problem of cumbersome cable laying and retraction operations in existing technologies and improves the automation level and operational efficiency of simultaneous laying and retraction of multiple cables.

CN224062222UActive Publication Date: 2026-03-31CANGZHOU JIAOFA ARCHITECTURAL DESIGN CONSULTING CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-08
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

In the current technology, the laying and retrieval of cables during the installation of mobile equipment is cumbersome, involves a lot of manual labor, and makes it difficult to achieve rapid synchronous laying and retrieval and automated connection of multiple cables.

Method used

A cable laying reel mover was designed, comprising a reel base, a collection bracket, a limiting collection structure, and a lifting and moving structure. The drive component and the lifting and moving structure enable automated collection and movement of cables. The limiting collection structure stabilizes the arrangement of cables, and the combination of a compression concave wheel, an elastic band sensor, and an anti-collision layer enhances safety.

Benefits of technology

It enables efficient and orderly collection and stable arrangement of cables, reduces manual labor intensity, supports simultaneous deployment and retraction of multiple cables, and improves operational efficiency and safety.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224062222U_ABST
    Figure CN224062222U_ABST
Patent Text Reader

Abstract

The utility model discloses a cable laying reel mover which comprises a rolling base, a collecting support, a limiting collecting structure and a lifting moving structure, the collecting support is installed on the rolling base, the limiting collecting structure is installed on the rolling base and the collecting support, and the lifting moving structure is installed on the collecting support. The cable laying device relates to the technical field of cable laying, the limiting and collecting structure operates through the driving assembly to drive the collecting roller to rotate and collect cables, and meanwhile, a transmission shaft pipe, a transmission gear set and the like are adjusted and driven to be matched, so that a horizontal concentric-square-shaped block stably, horizontally and circularly stretches out and draws back, and the cable laying efficiency is improved. The limiting wheel set adjusts the cable collecting position, the cables are stably arranged on the collecting roller, the horizontal telescopic shaft limits to guarantee the telescopic stability, the transfer connecting cable is stably connected with the collecting roller, and efficient and orderly collection is achieved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of cable laying technology, specifically to a cable laying reel mover. Background Technology

[0002] During the installation of mobile equipment, the laying and retrieval of control cables, power cables, and other cables between equipment rooms are crucial. Traditional methods mainly rely on multi-layered, multi-coil cable reels, which have significant drawbacks: when connecting cables, each cable must be pulled out of the reel one by one and connected to the equipment at both ends; when retrieving cables, all connections must be disconnected first, and then each cable must be coiled back up one by one. This conventional method not only has a long installation cycle and high manual labor intensity, but also makes it difficult to meet the requirements for rapid, synchronous laying and retrieval of multiple cables and automated connection.

[0003] To address the aforementioned pain points, existing patented technologies have proposed improvement solutions, but they still have limitations:

[0004] Patent 1 (CN201721260073.X) discloses a novel cable reel with motor-assisted cable winding and unwinding, which effectively improves the wiring efficiency of a single cable through power drive. However, this solution has two shortcomings: first, it only supports the winding and unwinding of a single cable at a time, and cannot cope with scenarios where multiple cables are processed in parallel; second, manual connection to the equipment is still required after the cable is laid, and the entire process is not fully automated.

[0005] Patent 2 (CN201820669554) developed a diesel engine cable laying device, which innovatively uses a straightening tube to shape and straighten the cable, and works with an electric motor traction vehicle to achieve mechanized laying. Although this device significantly reduces labor intensity and improves laying efficiency, it is also limited to a single cable operation mode, and manual assistance is required for cable laying during the winding process. It fails to completely solve the automation problem of simultaneous winding and unwinding of multiple cables. In view of this, in-depth research was conducted on the above problems, which led to this case. Utility Model Content

[0006] To achieve the above objectives, this utility model provides the following technical solution: a cable laying reel mover, comprising: a winding base, a collecting bracket, a limiting collecting structure, and a lifting moving structure. The collecting bracket is mounted on the winding base, the limiting collecting structure is mounted on both the winding base and the collecting bracket, and the lifting moving structure is mounted on the winding base. The limiting collecting structure includes: a pair of drive components, a pair of collecting rollers, a transfer connecting cable, a pair of supporting concave limiting blocks, a pair of adjusting drive transmission shafts, a pair of transmission gear sets, two pairs of horizontal telescopic bidirectional threaded rods, two pairs of horizontal telescopic threaded tubes, a pair of horizontal loop blocks, multiple horizontal telescopic shafts, and a pair of limiting wheel sets.

[0007] A pair of supporting concave limiting blocks are installed parallel to the winding base; a pair of collecting rollers are respectively installed on the pair of supporting concave limiting blocks; a pair of adjusting drive transmission shafts are inserted into the pair of supporting concave limiting blocks via bearings; two pairs of horizontal telescopic bidirectional threaded rods are respectively inserted into the pair of supporting concave limiting blocks; a pair of transmission gear sets are respectively fitted onto the pair of adjusting drive transmission shafts and the two pairs of horizontal telescopic bidirectional threaded rods; two pairs of horizontal telescopic threaded tubes are respectively inserted into the pair of horizontal loop blocks, and the two pairs of horizontal telescopic threaded tubes are respectively movably fitted onto the two pairs of horizontal telescopic bidirectional threaded rods; multiple horizontal telescopic shafts are respectively movably inserted into the pair of supporting concave limiting blocks, and multiple horizontal telescopic shafts are respectively movably inserted into the pair of horizontal loop blocks; a pair of limiting wheel sets are respectively installed on the pair of horizontal loop blocks; a pair of driving components are connected to the pair of supporting concave limiting blocks; and the transfer connection cable is connected to the pair of collecting rollers.

[0008] Preferably, the drive assembly includes: a collection drive motor, a collection gearbox, a collection shaft tube, multiple collection pins, a pair of horizontally extending shafts, a pair of horizontally fitted rings, a pair of horizontally ring electromagnets, and a pair of horizontally ring magnets;

[0009] The collecting gearbox is installed on the winding base and is located between a pair of supporting concave limiting blocks. The collecting shaft tube is inserted into the collecting gearbox. The driving end of the collecting drive motor is connected to the collecting gearbox. A pair of lifting extension shafts are movably inserted into the inner ends of the collecting shaft tube. A pair of horizontal sleeve rings are respectively sleeved on a pair of horizontal extension shafts. A pair of horizontal ring electromagnets are respectively installed on a pair of supporting concave limiting blocks. A pair of horizontal ring magnets are respectively installed on a pair of horizontal sleeve rings. A pair of collecting rollers, a pair of adjusting drive transmission shafts, and the collecting shaft tube are respectively provided with pin holes. A pair of horizontal extension shafts are respectively provided with pin grooves. A plurality of collecting pins are respectively installed inside a plurality of pin grooves, and a plurality of collecting pins are respectively movably inserted into the inner sides of a plurality of pin holes.

[0010] Preferably, the lifting and moving structure includes: two pairs of lifting electric push rods, two pairs of moving devices, and two pairs of hydraulic supports;

[0011] Two pairs of lifting electric push rods are installed in parallel on the winding base, two pairs of moving devices are respectively installed on the pushing ends of the two pairs of lifting electric push rods, and two pairs of hydraulic supports are installed on the winding base.

[0012] Preferably, the collecting bracket is provided with two pairs of extrusion concave wheels.

[0013] Preferably, the collection bracket is equipped with an elastic band sensor.

[0014] Preferably, the outer side of the collection bracket is provided with an anti-collision layer.

[0015] Beneficial effects

[0016] This utility model provides a cable laying reel mover. It offers the following advantages: The cable laying reel mover's limiting collection structure, driven by a drive assembly, rotates the collecting drum to collect the cable. Simultaneously, adjustments to the drive transmission shaft and transmission gear set ensure stable horizontal cyclic extension and retraction of the horizontal loop block. The limiting wheel set adjusts the cable collection position, ensuring the cable is stably arranged on the collecting drum. The horizontal extension shaft limits the extension and retraction, ensuring stability. The transfer connection cable is stably connected to the collecting drum, achieving efficient and orderly collection. The drive assembly's collection drive motor rotates the collecting gearbox and collecting shaft. A collecting pin stabilizes the horizontal extension shaft, and the horizontal circular electromagnet and horizontal circular magnet work together to flexibly control the connection between the collecting pin and the collecting drum, adjusting the drive transmission shaft for precise drive transmission. The lifting and moving structure uses a lifting electric push rod to move the mover up and down, allowing for stable switching between running and retracted stationary modes. Two pairs of hydraulic supports provide reliable support. Furthermore, the collecting bracket is equipped with a compression concave wheel, a tension sensor, and an anti-collision layer, further enhancing the device's performance and safety. Attached Figure Description

[0017] Figure 1 This is a front sectional view of a cable laying reel mover according to the present invention.

[0018] Figure 2 This is a top sectional view of the cable laying reel mover described in this utility model.

[0019] Figure 3 This is a partial three-dimensional schematic diagram of a cable laying reel mover according to the present invention.

[0020] In the diagram: 1. Rewinding base; 2. Collecting roller; 3. Supporting concave limiting block; 4. Adjusting drive transmission shaft tube; 5. Transmission gear set; 6. Horizontal telescopic bidirectional threaded rod; 7. Horizontal telescopic threaded tube; 8. Horizontal loop block; 9. Limiting wheel set; 10. Collecting drive motor; 11. Collecting gearbox; 12. Collecting shaft tube; 13. Collecting pin; 14. Horizontal extension shaft; 15. Horizontal sleeve ring; 16. Horizontal ring electromagnet; 17. Horizontal ring magnet. Detailed Implementation

[0021] Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0022] Those skilled in the art should connect all electrical components and their compatible power supplies in this case via wires. Appropriate controllers and encoders should be selected according to the actual situation to meet control requirements. The specific connection and control sequence should refer to the working principle described below, where the electrical components are connected in sequence. The detailed connection methods are well-known in the art. The following mainly introduces the working principle and process, and will not describe the electrical control further.

[0023] Example

[0024] like Figure 1-3 As shown in the collecting roller, the collecting bracket is installed on the winding base 1, the limiting collecting structure is installed on the winding base 1 and the collecting bracket, and the lifting and moving structure is installed on the winding base 1. The limiting collecting structure includes: a pair of drive components, a pair of collecting rollers 2 winding base, a transfer connecting cable, a pair of supporting concave limiting blocks 3 collecting rollers, a pair of adjusting drive transmission shaft tubes 4 supporting concave limiting blocks, a pair of transmission gear sets 5 adjusting drive transmission shaft tubes, two pairs of horizontal telescopic bidirectional threaded rods 6 transmission gear sets, two pairs of horizontal telescopic threaded tubes 7 horizontal telescopic bidirectional threaded rods, a pair of horizontal loop blocks 8 horizontal telescopic threaded tubes, multiple horizontal telescopic shafts, and a pair of limiting wheel sets 9 horizontal loop blocks.

[0025] Specifically, a pair of supporting concave limiting blocks 3 collecting rollers are installed parallel to the winding base 1; a pair of collecting rollers 2 winding bases are respectively installed on the pair of supporting concave limiting blocks 3 collecting rollers; a pair of adjusting drive transmission shaft tubes 4 supporting concave limiting blocks are inserted into the pair of supporting concave limiting blocks 3 collecting rollers via bearings; two pairs of horizontal telescopic bidirectional threaded rods 6 transmission gear sets are respectively inserted into the pair of supporting concave limiting blocks 3 collecting rollers; a pair of transmission gear sets 5 adjusting drive transmission shaft tubes are respectively fitted onto the pair of adjusting drive transmission shaft tubes 4 supporting concave limiting blocks and the two pairs of horizontal telescopic bidirectional threaded rods 6 transmission gear sets; and two pairs of horizontal telescopic threaded tubes 7 horizontally telescopic bidirectional threaded rods... The threaded rods are respectively inserted into a pair of horizontal telescopic threaded tubes of the horizontal loop blocks 8, and the two pairs of horizontal telescopic threaded tubes 7 are respectively movably fitted onto the two pairs of horizontal telescopic double-threaded rods 6 transmission gear sets. The multiple horizontal telescopic shafts are respectively movably inserted into a pair of supporting concave limiting blocks 3 collecting rollers, and the multiple horizontal telescopic shafts are respectively movably inserted into a pair of horizontal loop blocks 8 horizontal telescopic threaded tubes. The pair of limiting wheel sets 9 horizontal loop blocks are respectively installed on a pair of horizontal loop blocks 8 horizontal telescopic threaded tubes. The pair of drive components are connected to a pair of supporting concave limiting blocks 3 collecting rollers. The transfer connection cable is connected to a pair of collecting rollers 2 winding bases.

[0026] It should be noted that, as described above, the operation of the drive assembly on the winding base 1 drives the pair of collecting rollers 2 and the pair of adjusting drive transmission shaft tubes 4 supporting concave limiting blocks one by one. The rotation of the collecting rollers 2 and the winding bases thus rotates and collects the cable. Simultaneously, the adjusting drive transmission shaft tubes 4 supporting concave limiting blocks drive the transmission gear set 5 on them to rotate. The adjustment of the drive transmission shaft tubes by the transmission gear set 5 drives the pair of horizontal telescopic bidirectional threaded rods 6 on them to rotate, thus transmitting the cable... The gear set drives the horizontal telescopic threaded tube 7 and the horizontal telescopic double-threaded rod on it. The horizontal telescopic threaded tube 7 and the horizontal telescopic double-threaded rod drive the horizontal loop block 8 on it to perform stable horizontal cyclic telescopic extension and retraction. At the same time, the limit wheel set 9 on the horizontal loop block 8 adjusts the collection position of the cable, so that the cable is stably arranged on the winding base of the collecting roller 2. The horizontal telescopic shaft limits the horizontal extension and retraction of the horizontal loop block 8. The transfer connection cable stably connects the two winding bases of the collecting roller 2.

[0027] like Figure 1-3As shown in the collecting roller, the drive assembly includes: a collecting drive motor 10, a limiting wheel set; a collecting gearbox 11, a collecting drive motor; a collecting shaft tube 12, a collecting gearbox winding base; multiple collecting pins 13, collecting shaft tubes and collecting rollers; a pair of horizontally extending shafts 14, collecting pins supporting concave limiting blocks; a pair of horizontally fitted rings 15, horizontally extending shafts adjusting drive transmission shaft tubes; a pair of horizontally fitted ring electromagnets 16, horizontally fitted ring transmission gear sets; and a pair of horizontally fitted ring magnets.

[0028] Specifically, the collecting gearbox 11 and the collecting drive motor are installed on the winding base 1, and the collecting gearbox 11 and the collecting drive motor are located between a pair of supporting concave limiting blocks 3 and collecting rollers. The collecting shaft tube 12 and the collecting gearbox winding base are inserted into the collecting gearbox 11 and the collecting drive motor. The driving end of the limiting wheel group of the collecting drive motor 10 is connected to the collecting gearbox 11 and the collecting drive motor. A pair of lifting extension shafts are movably inserted into the inner ends of the collecting shaft tube 12 and the collecting gearbox winding base. A pair of horizontally mounted rings 15 and the horizontally extended shaft adjusting drive transmission shaft tubes are respectively mounted on a pair of horizontally extended shafts 14 and the collecting pin supporting concave limiting blocks. A pair of horizontally mounted electromagnetic rings... The horizontal ring transmission gear set of iron 16 is respectively installed on a pair of supporting concave limiting blocks 3 collecting rollers. The pair of horizontal ring magnets are respectively installed on a pair of horizontal extension shaft rods adjusting drive transmission shaft tubes of horizontal ring 15. The pair of collecting rollers 2 winding bases, the pair of adjusting drive transmission shaft tubes 4 supporting concave limiting blocks and the collecting shaft tube 12 collecting gear box winding base are respectively provided with pin holes. The pair of horizontal extension shaft rods 14 collecting pin supporting concave limiting blocks are respectively provided with pin grooves. The multiple collecting pins 13 collecting shaft tubes collecting rollers are respectively installed on the inner side of the multiple pin grooves, and the multiple collecting pins 13 collecting shaft tubes collecting rollers are respectively movably inserted into the inner side of the multiple pin holes.

[0029] It should be noted that, as described above, the operation of the limit wheel assembly of the collecting drive motor 10 drives the collecting gearbox 11 on the drive end of the limit wheel assembly, which in turn drives the collecting shaft tube 12 and the collecting gearbox winding base inside the collecting drive motor 10 to rotate stably vertically. The collecting shaft tube 12 and the collecting gearbox winding base then drive the collecting pin 13 on the concave limit block of the horizontal extension shaft 14 to rotate, thereby ensuring the stable rotation of the concave limit block supported by the collecting pin 14. Simultaneously, the horizontal circular electromagnet 16 on the collecting drive motor of the collecting gearbox 11... When the horizontal ring transmission gear set is energized, it magnetically repels or attracts the horizontal ring magnet on the horizontal ring transmission gear set opposite the horizontal ring electromagnet 16. This causes the horizontal ring magnet to drive the horizontal extension shaft 15 on the horizontal ring set to adjust the drive transmission shaft tube. The horizontal extension shaft 15 on the horizontal ring set 15 then drives the horizontal extension shaft 14 on the horizontal extension shaft to collect the pin support concave limiting block. This allows the collecting pin 13 on the collecting shaft tube of the collecting shaft 14 to be movably inserted into the pin groove on the winding base of the collecting roller 2, thus achieving stable rotational drive transmission.

[0030] like Figure 1-3 As shown in the collecting drum, the lifting and moving structure includes: two pairs of lifting electric push rods, two pairs of movers, and two pairs of hydraulic supports;

[0031] Two pairs of lifting electric push rods are installed in parallel on the winding base 1, two pairs of moving devices are respectively installed on the pushing ends of the two pairs of lifting electric push rods, and two pairs of hydraulic supports are installed on the winding base 1.

[0032] It should be noted that, as described above, the extension and retraction of the electric push rod drives the moving device on it to move up and down stably, thereby stabilizing the entire device between the running moving mode and the retracted stationary mode. At the same time, the entire device is stably supported by two pairs of hydraulic supports.

[0033] As a preferred embodiment, the collection bracket is further provided with two pairs of extrusion concave wheels.

[0034] As a preferred option, the collection bracket is further equipped with an elastic band sensor.

[0035] As a preferred embodiment, the outer side of the collection bracket is provided with an anti-collision layer.

[0036] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A cable lay reel mover comprising: The winding base, the collection support, the limiting collection structure and the lifting moving structure are characterized in that the limiting collection structure comprises a pair of driving assemblies, a pair of collection cylinders, a transfer connecting cable, a pair of supporting concave limiting blocks, a pair of adjusting driving transmission shaft pipes, a pair of transmission gear sets, two pairs of horizontal telescopic bidirectional threaded rods, two pairs of horizontal telescopic threaded pipes, a pair of horizontal back-shaped blocks, a plurality of horizontal telescopic shafts and a pair of limiting wheel sets. A pair of the supporting concave limiting blocks are installed in parallel on the winding base, a pair of the collection cylinders are installed on a pair of the supporting concave limiting blocks respectively, a pair of the adjusting driving transmission shaft pipes are inserted into a pair of the supporting concave limiting blocks through bearings, two pairs of the horizontal telescopic bidirectional threaded rods are inserted into a pair of the supporting concave limiting blocks respectively, a pair of the transmission gear sets are sleeved on a pair of the adjusting driving transmission shaft pipes and two pairs of the horizontal telescopic bidirectional threaded rods respectively, two pairs of the horizontal telescopic threaded pipes are inserted into a pair of the horizontal back-shaped blocks respectively and are movably sleeved on two pairs of the horizontal telescopic bidirectional threaded rods respectively, a plurality of the horizontal telescopic shafts are movably inserted into a pair of the supporting concave limiting blocks and a pair of the horizontal back-shaped blocks respectively, a pair of the limiting wheel sets are installed on a pair of the horizontal back-shaped blocks respectively, a pair of the driving assemblies are connected to a pair of the supporting concave limiting blocks, and the transfer connecting cable is connected to a pair of the collection cylinders.

2. A cable lay reel mover according to claim 1, wherein, The driving assembly comprises a collection driving machine, a collection gear box, a collection shaft pipe, a plurality of collection pins, a pair of horizontal expansion shafts, a pair of horizontal sleeved rings, a pair of horizontal ring electromagnets and a pair of horizontal ring magnets. The collection gear box is installed on the winding base and located between a pair of the supporting concave limiting blocks, the collection shaft pipe is inserted into the collection gear box, the driving end of the collection driving machine is connected to the collection gear box, a pair of the lifting expansion shafts are movably inserted into the inner sides of both ends of the collection shaft pipe, a pair of the horizontal sleeved rings are sleeved on a pair of the horizontal expansion shafts respectively, a pair of the horizontal ring electromagnets are installed on a pair of the supporting concave limiting blocks respectively, a pair of the horizontal ring magnets are installed on a pair of the horizontal sleeved rings respectively, a pair of the collection cylinders, a pair of the adjusting driving transmission shaft pipes and the collection shaft pipe are respectively provided with pin holes, a pair of the horizontal expansion shafts are respectively provided with pin grooves, a plurality of the collection pins are respectively installed in the inner sides of a plurality of the pin grooves and are movably inserted into the inner sides of a plurality of the pin holes.

3. A cable lay reel mover according to claim 2, wherein, The lifting moving structure comprises two pairs of lifting electric push rods, two pairs of movers and two pairs of hydraulic supporters. Two pairs of the lifting electric push rods are installed in parallel on the winding base, two pairs of the movers are installed on the pushing ends of the two pairs of lifting electric push rods respectively, and two pairs of the hydraulic support devices are installed on the winding base.

4. A cable lay reel mover according to claim 3, wherein, Two pairs of extrusion concave wheels are arranged on the collecting support.

5. A cable lay reel mover according to claim 4, wherein, An elastic band sensor is arranged on the collecting support.

6. A cable lay reel mover according to claim 5, wherein, An anti-collision layer is arranged on the outer side of the collecting support.

Citation Information

Patent Citations

  • Novel cable reel

    CN207361541U

  • Diesel engine cable laying device

    CN208062677U