Rapid butt joint device for 5G mobile communication pipeline

By using a servo motor to drive the threaded rod and an electric push rod winding shaft system, rapid docking and stable support of communication pipelines are achieved, solving the problem of low docking efficiency in existing technologies and improving operational convenience and stability.

CN224255212UActive Publication Date: 2026-05-19SHANDONG QIJIE OPTOELECTRONICS TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANDONG QIJIE OPTOELECTRONICS TECHNOLOGY CO LTD
Filing Date
2025-06-26
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

In existing technologies, communication pipeline docking devices need to be moved along the communication pipeline to the end for removal, which affects docking efficiency and ease of operation.

Method used

A servo motor drives the threaded rod to rotate, which in turn moves the moving seat and support rod synchronously to achieve V-shaped docking support. Stability and easy movement are enhanced by an electric push rod and a winding shaft system.

Benefits of technology

It improves the operational efficiency and convenience of communication pipeline docking, enhances support stability, and reduces tilting and shaking during the docking process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a rapid butt joint device for 5G mobile communication pipelines, and particularly relates to the technical field of communication facilities, the rapid butt joint device comprises a supporting piece used for supporting the communication pipelines, and the supporting piece limits the communication pipelines through a fixing piece; the supporting piece comprises a supporting plate, a groove is formed in the bottom of the supporting plate, a threaded rod movably connected through a bearing is installed in the groove, the thread directions of the threads at the two ends of the threaded rod are opposite, and the exteriors of the two ends of the threaded rod are in threaded connection with movable seats with T-shaped sections. The servo motor drives the threaded rod to rotate, the threaded rod drives the two moving seats to drive the corresponding supporting rods to synchronously move inwards, the two supporting rods are spliced into a V shape to conduct butt joint supporting on the communication pipeline, and when the threaded rod rotates reversely, the moving seats can drive the supporting rods to be separated from the communication pipeline. And therefore, a worker can conveniently lift the supporting piece and move the supporting piece to other communication pipelines needing to be butted, and the operation efficiency and the operation convenience are improved.
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Description

Technical Field

[0001] This utility model relates to the field of communication facilities technology, and more specifically to a rapid docking device for 5G mobile communication pipelines. Background Technology

[0002] With the large-scale commercialization of 5G mobile communication technology, the density of base stations has increased significantly. As a crucial carrier for fiber optic and power transmission between base stations, the construction and maintenance efficiency of communication pipeline networks directly impacts the deployment cost and operational stability of 5G networks. Because cables are electrified, they need to be placed in conduits when directly burying them underground. However, after connecting two conduits, the central axis of the conduits can easily deviate. Therefore, a connection device is needed for assistance.

[0003] As shown in the prior art published in CN218698126U, although this prior art, by setting up a pipe clamping structure, can satisfy the vertical displacement pressing movement of the pipe clamping structure based on the expansion and contraction paths provided by the first and second expansion grooves, thus, under the effect of the pipe limiting structure facilitating the erection of communication pipes of multiple diameters, the pipe clamping structure can effectively press communication pipes of different diameters to meet the stability of docking communication pipes in the pipe limiting structure, thereby giving the communication pipe docking the advantages of high controllability and convenient operation. However, this prior art is entirely fitted outside the communication pipe, which means that when docking with other communication pipes, it is necessary to move along the communication pipe to the end to remove it, which will affect the docking efficiency and thus affect the convenience of operation. Utility Model Content

[0004] To overcome the aforementioned deficiencies in the prior art, this utility model provides a rapid docking device for 5G mobile communication pipelines. A servo motor drives a threaded rod to rotate, which in turn drives two movable seats to move corresponding support rods inward synchronously. The two support rods assemble into a V-shape to dock and support the communication pipeline. When the threaded rod reverses direction, the movable seats can separate the support rods from the communication pipeline, facilitating the lifting of the support components and their movement to other communication pipelines requiring docking. This improves operational efficiency and convenience, thus solving the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a rapid docking device for 5G mobile communication pipelines, including a support member for supporting the communication pipeline, wherein the support member limits the communication pipeline by means of a fixing member;

[0006] The support includes a support plate with a groove at the bottom. A threaded rod is installed inside the groove and is movably connected by a bearing. The threads at both ends of the threaded rod are opposite in direction. Both ends of the threaded rod are threaded to a T-shaped movable seat. The bottom of the two movable seats is supported by multiple sets of rods to support the communication pipe.

[0007] Each set of rods includes two V-shaped support rods, with the tops of the two support rods fixed to the bottoms of the two movable seats respectively.

[0008] In a preferred embodiment, the fixing member includes two fixing frames respectively installed on both sides of the support plate, and an electric push rod for shifting pressure plate is installed at the bottom top of the fixing frame. Multiple pressure rods for limiting the communication pipe are installed between the two pressure plates, and the pressure rods are located between two adjacent sets of rods.

[0009] In a preferred embodiment, a servo motor for driving the threaded rod is mounted on one end of the support plate, and the servo motor is located inside the top of one of the fixing frames.

[0010] In a preferred embodiment, the top cross-section and the groove cross-section of the movable seat are both rectangular, and the outside of the movable seat is in contact with the inner wall of the groove.

[0011] In a preferred embodiment, a box is installed on the side of the two fixed frames that are far apart from each other. The bottom of the inner cavity of the box is provided with a movable plate, and two rollers that penetrate the box and extend to the bottom of the box are installed on the bottom of the movable plate. Two telescopic rods for connecting to the top of the inner cavity of the box are installed on the top of the movable plate, and springs are sleeved on the bottom of the telescopic rods.

[0012] In a preferred embodiment, a fixed cylinder is installed on the top of the support plate, and a winding shaft is installed inside the fixed cylinder via a bearing. Connecting ropes are installed on both sides of the winding shaft, and the end of the connecting rope away from the winding shaft passes through the fixed cylinder and the box in sequence and is fixed together with the top of the movable plate.

[0013] A drive motor is installed at the top of the fixed cylinder, and the output shaft of the drive motor passes through the fixed cylinder and is fixed together with the top of the winding shaft.

[0014] The technical effects and advantages of this utility model are as follows:

[0015] 1. The servo motor drives the threaded rod to rotate, which in turn drives two moving seats to move the corresponding support rods inward synchronously. The two support rods are joined together to form a V-shape to connect and support the communication pipe. When the threaded rod reverses, the moving seats can separate the support rods from the communication pipe, making it easier for the staff to lift the support and move it to other communication pipes that need to be connected, thereby improving the efficiency and convenience of operation.

[0016] 2. The drive motor rotates the winding shaft to achieve the winding and unwinding of the connecting rope. When the connecting rope is wound up, the rollers on the movable plate are stored inside the box, thereby increasing the contact surface and ensuring the support stability of the support component. When the connecting rope is released, the movable plate uses the tension of the spring to drive the rollers to contact the ground, thereby enabling the support component to be moved easily. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0018] Figure 2 This is a cross-sectional view of the support plate of this utility model;

[0019] Figure 3 For the present utility model Figure 2 Enlarged view of section A in the middle;

[0020] Figure 4 This is a sectional view of the box body of this utility model;

[0021] Figure 5 This is a schematic diagram of the support rod after adjustment according to this utility model.

[0022] The attached diagram is labeled as follows: 1. Support plate; 2. Groove; 3. Threaded rod; 4. Movable seat; 5. Support rod; 6. Fixing frame; 7. Pressure plate; 8. Pressure rod; 9. Servo motor; 10. Housing; 11. Movable plate; 12. Roller; 13. Telescopic rod; 14. Spring; 15. Fixing cylinder; 16. Winding shaft; 17. Connecting rope; 18. Drive motor; 19. Electric push rod. Detailed Implementation

[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0024] Refer to the instruction manual appendix Figure 1 -Appendix Figure 5This utility model provides a quick docking device for 5G mobile communication pipelines, including a support component for supporting the communication pipeline; the support component includes a support plate 1, the bottom of the support plate 1 has a groove 2, a threaded rod 3 connected by bearings is installed inside the groove 2, and the threads at both ends of the threaded rod 3 have opposite directions. Both ends of the threaded rod 3 are threaded to the outside of a T-shaped movable seat 4, and the bottom of the two movable seats 4 is supported by multiple sets of rods; each set of rods includes two V-shaped support rods 5, the top ends of the two support rods 5 are fixed to the bottom of the two movable seats 4 respectively.

[0025] When using the aforementioned support to connect two communication pipes, a servo motor 9 for driving the threaded rod 3 is installed at one end of the support plate 1. The servo motor 9 is located inside the top of one of the fixed brackets 6, allowing the operator to start the servo motor 9 to drive the threaded rod 3 to rotate. Since the top section of the movable seat 4 and the section of the groove 2 are both rectangular, and the outside of the movable seat 4 contacts the inner wall of the groove 2, the threaded rod 3 can drive the two movable seats 4, which are limited by the groove 2, to move inward synchronously. This allows the two movable seats 4 to drive the corresponding support rods 5 to contact each other. The two support rods 5, when joined together, form a V-shape, thus supporting the communication pipe and placing the communication pipe at the bottom of the rod, thereby ensuring that the axes of the two communication pipes are aligned. After the connection is completed, the servo motor 9 can be started to drive the threaded rod 3 to reverse, allowing the movable seat 4 to drive the support rods 5 to separate from the communication pipe. This makes it easier for the operator to lift the support and move it to other communication pipes that need to be connected.

[0026] After locating the communication channel, it is necessary to limit its movement, such as... Figure 1 , Figure 3 and Figure 5 As shown, the support member limits the communication pipe through the fixing member; the fixing member includes two fixing frames 6 respectively installed on both sides of the support plate 1, and the bottom and top of the fixing frame 6 are equipped with electric push rods 19 for shifting pressure plates 7. Multiple pressure rods 8 for limiting the communication pipe are installed between the two pressure plates 7. The pressure rods 8 are located between two adjacent sets of rods. The electric push rods 19 drive the pressure plates 7 to move down, and the pressure plates 7 then drive the pressure rods 8 to move down and contact the communication pipe. In this way, the pressure rods 8 can squeeze and fix the communication pipe, thereby ensuring the stability of the communication pipe when it is connected.

[0027] Meanwhile, to facilitate moving the aforementioned support components to a suitable position, a housing 10 is installed on the side of each of the two fixed frames 6 with their bottom ends facing away from each other. The bottom of the inner cavity of each housing 10 is provided with a movable plate 11, and two rollers 12 are installed at the bottom of the movable plate 11, penetrating the housing 10 and extending to its bottom. Two telescopic rods 13 are installed at the top of the movable plate 11 for connecting to the top of the inner cavity of the housing 10, and springs 14 are sleeved on the outer side of the bottom of the telescopic rods 13. A fixed cylinder 15 is installed at the top of the support plate 1, and a winding shaft 16 is installed inside the fixed cylinder 15, movably connected by bearings. Connecting ropes 17 are installed on both sides of the winding shaft 16. The end away from the take-up shaft 16 passes through the fixed cylinder 15 and the housing 10 in sequence and is fixed to the top of the movable plate 11; the top of the fixed cylinder 15 is equipped with a drive motor 18, and the output shaft of the drive motor 18 passes through the fixed cylinder 15 and is fixed to the top of the take-up shaft 16, so that the operator can start the drive motor 18 to drive the take-up shaft 16 to rotate, and the take-up shaft 16 will wind and wind the two connecting ropes 17, thereby causing the connecting ropes 17 to drive the movable plate 11 to move upward and store the rollers 12 on the movable plate 11 inside the housing 10. This can increase the contact area between the fixed frame 6 and the ground, thereby ensuring the support stability of the fixed frame 6 and avoiding tilting and swaying.

[0028] When the support needs to be moved, the drive motor 18 drives the take-up shaft 16 to reverse, and the take-up shaft 16 releases the two connecting ropes 17. The spring 14 then pushes the movable plate 11 down and makes the rollers 12 on the movable plate 11 contact the ground. The rollers 12 support the fixed frame 6, allowing the staff to move the support conveniently.

[0029] Finally: The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A rapid docking device for 5G mobile communication pipelines, characterized in that: Includes support components for supporting communication conduits, and the support components limit the movement of the communication conduits through fasteners; The support includes a support plate (1), the bottom of the support plate (1) is provided with a groove (2), a threaded rod (3) is installed inside the groove (2) and is movably connected by a bearing, and the threads at both ends of the threaded rod (3) are opposite in direction, and both ends of the threaded rod (3) are threaded to a movable seat (4) with a T-shaped cross section, and the bottom of the two movable seats (4) is supported by multiple sets of rods; Each set of rods includes two V-shaped support rods (5), the tops of which are fixed to the bottoms of two movable seats (4).

2. The rapid docking device for 5G mobile communication pipelines according to claim 1, characterized in that: The fastener includes two fixing frames (6) respectively installed on both sides of the support plate (1), and an electric push rod (19) for a displacement pressure plate (7) is installed at the bottom top of the fixing frame (6). Multiple pressure rods (8) for limiting the communication pipe are installed between the two pressure plates (7), and the pressure rods (8) are located between two adjacent sets of rods.

3. The rapid docking device for 5G mobile communication pipelines according to claim 2, characterized in that: The support plate (1) is equipped with a servo motor (9) for driving the threaded rod (3) to operate at one end, and the servo motor (9) is located inside the top of one of the fixing frames (6).

4. The rapid docking device for 5G mobile communication pipelines according to claim 1, characterized in that: The top section of the movable seat (4) and the section of the groove (2) are both rectangular, and the outside of the movable seat (4) is in contact with the inner wall of the groove (2).

5. The rapid docking device for 5G mobile communication pipelines according to claim 2, characterized in that: Two fixed frames (6) are each equipped with a box (10) on the side of their bottom ends that are far apart. The bottom of the inner cavity of the box (10) is provided with a movable plate (11), and two rollers (12) are installed at the bottom of the movable plate (11) that penetrate the box (10) and extend to the bottom of the box (10). Two telescopic rods (13) for connecting the top of the inner cavity of the box (10) are installed at the top of the movable plate (11), and springs (14) are sleeved on the outside of the bottom end of the telescopic rods (13).

6. The rapid docking device for 5G mobile communication pipelines according to claim 5, characterized in that: A fixed cylinder (15) is installed on the top of the support plate (1). A winding shaft (16) is installed inside the fixed cylinder (15) and is movably connected by a bearing. A connecting rope (17) is installed on both sides of the winding shaft (16). The end of the connecting rope (17) away from the winding shaft (16) passes through the fixed cylinder (15) and the box (10) in sequence and is fixed together with the top of the movable plate (11). The top of the fixed cylinder (15) is equipped with a drive motor (18), and the output shaft of the drive motor (18) passes through the fixed cylinder (15) and is fixed together with the top of the winding shaft (16).