Network cabling construction device

By designing a network cabling construction device with cable conduits and climbing machine feet, and utilizing servo motors to drive rubber tracks and silicone clamps, the problem of difficult network cable cabling in long tunnels was solved, achieving efficient and stable tunnel cabling construction.

CN223912169UActive Publication Date: 2026-02-13ZHONGCHENG TIMES CO LTD
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Patent Information

Application Number
CN202520208605.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-11
Publication Date
2026-02-13
Estimated Expiration
2035-02-11

AI Technical Summary

Technical Problem

In existing technologies, it is difficult to lay network cables in long tunnels, and they are difficult to pass through smoothly, especially when crossing buildings, which requires tunnel excavation and leads to construction difficulties.

Method used

A network cabling construction device was designed, which includes a cable conduit and climbing feet. A servo motor drives a rubber track, which, together with a cable groove and silicone retaining ring, enables the traction and fixation of the network cable in the tunnel.

Benefits of technology

It enables smooth cabling in long tunnels, avoiding the difficulties of manual tunnel excavation, and can carry multiple network cables at once, improving construction efficiency and stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a network cabling construction device which comprises a network cable tunnel construction mechanism, and the network cable tunnel construction mechanism comprises a wired pipeline, 12-16 wired grooves fixed in an inner cavity of the wired pipeline in an annular array mode, and three groups of climbing machine legs hinged to the surface of the outer ring of the wired pipeline in an annular array mode. According to the scheme, the three groups of climbing machine legs in an annular array are used as the frame, the movable connecting rods on the inner sides of the three groups of climbing machine legs are matched, so that the wiring device can drill into wiring tunnels with different inner diameters, and the wiring device can carry a network cable to penetrate through the wiring tunnels in a manner of driving the crawler belt by the servo motor; the problem that manual wiring is inconvenient when a wiring tunnel is long is solved. By arranging the wire slots in the annular array mode, the effect of carrying a plurality of network cables for wiring at a time is achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the network cable construction equipment technical field, concretely relates to a network cabling construction device. BACKGROUND

[0002] Network cabling refers to all the communication network infrastructure in the building is connected to each other through the network cable as a medium, such as in the building's weak electricity well is arranged network cable, so that the whole building's communication network infrastructure is connected to each other. At present, if the communication network infrastructure is relatively short between each other, then directly in the indoor slotting mode is carried out to pull the network cable, and if the communication network infrastructure is relatively far apart, even appears the situation of crossing the building, the construction personnel need to dig the weak electricity tunnel and lay the pipeline for the network cable to carry out the cabling, or excavate the tunnel on the wall of the building, and this need to excavate the tunnel cabling mode has some difficulties: such as the tunnel length is longer, is subject to the network cable has a certain softness, and the cabling personnel is difficult to smoothly pass the network cable from the tunnel. According to the actual cabling situation provided, the technical scheme of the network cabling construction device is proposed by the person skilled in the art to solve the problem. SUMMARY

[0003] The utility model discloses a network cabling construction device technical scheme to solve the deficiency in the background art. In order to solve the drawbacks and defects described in the background art, the technical scheme has the following contents:

[0004] Including network cable tunnel construction mechanism, the network cable tunnel construction mechanism contains the line pipe, 12-16 line grooves in annular array are fixed in the inner chamber of the line pipe, and three groups of climbing feet are hingedly connected on the outer surface of the line pipe in annular array;

[0005] The climbing foot includes a strip-shaped shell, a servo motor fixed in the inner chamber of the strip-shaped shell, and a gear fixed on the output shaft of the servo motor through a shaft coupling, 2-3 guide wheels are rotatably connected in the inner chamber of the strip-shaped shell, and a rubber track is arranged on the outer ring of the gear and the guide wheel and located in the middle region of the outer surface of the strip-shaped shell;

[0006] The bottom surface of the strip-shaped shell is rotatably connected with 4 connecting rods on the front side and the rear side, the middle region of the bottom surface of the strip-shaped shell is rotatably connected with 2 hollow pipes, the inside of the hollow pipe is inserted with a movable rod, and the outer ring surface of the movable rod is sleeved with a tension spring;

[0007] One end of the connecting rod away from the strip-shaped shell is hingedly connected with the outer surface of the line pipe, and one end of the movable rod away from the hollow pipe is hingedly connected with the outer surface of the line pipe.

[0008] The wire belt channel comprises a wire tube, a bayonet on the side wall of the wire tube away from the wire belt channel, and 20-30 silica gel clamps fixed in a linear array on the side wall of the inner cavity of the wire tube.

[0009] As a preferred scheme of the utility model, the outer surface of the outer ring of the wire belt channel is fixedly connected with a triangular support frame on the front side, and the end of the movable rod away from the hollow tube is hingedly connected with the three edge surfaces of the triangular support frame through a shaft pin.

[0010] As a preferred scheme of the utility model, the outer surface of the outer ring of the wire belt channel is fixedly connected with a triangular support frame on the front side, and the end of the movable rod away from the hollow tube is hingedly connected with the three edge surfaces of the triangular support frame through a shaft pin.

[0011] As a preferred scheme of the utility model, the inner side wall of the rubber track is equally spaced and provided with a plurality of tooth grooves engaged with the gear teeth.

[0012] As a preferred scheme of the utility model, the inner side wall of the rubber track is equally spaced and provided with a plurality of tooth grooves engaged with the gear teeth.

[0013] As a preferred scheme of the utility model, the inner side wall of the rubber track is equally spaced and provided with a plurality of tooth grooves engaged with the gear teeth.

[0014] As a preferred scheme of the utility model, the inner side wall of the rubber track is equally spaced and provided with a plurality of tooth grooves engaged with the gear teeth.

[0015] As a preferred scheme of the utility model, the inner side wall of the rubber track is equally spaced and provided with a plurality of tooth grooves engaged with the gear teeth.

[0016] As a preferred scheme of the utility model, the inner side wall of the rubber track is equally spaced and provided with a plurality of tooth grooves engaged with the gear teeth.

[0017] In the above technical scheme, the utility model provides technical effects and advantages:

[0018] 1、In the scheme, three groups of climbing feet in an annular array are used as a frame, and the movable connecting rods on the inner sides of the three groups of climbing feet are used, so that the wiring device can be drilled into wiring tunnels with different inner diameters, and the wiring device can carry the network cable through the wiring tunnel by driving the track through the servo motor, thereby solving the problem of inconvenient manual wiring when the wiring tunnel is long.

[0019] 2. The scheme is provided with 12-16 wire grooves in the wire pipeline, 20-30 silica gel clamps are arranged in the wire grooves to hold the network cable, so that the network cable is not easy to fall off during wiring, and the wire grooves are arranged in a ring array, so that multiple network cables can be carried at one time for wiring. BRIEF DESCRIPTION OF DRAWINGS

[0020] In order to more clearly explain the technical solutions in the embodiments of the present application or the prior art, the drawings needed in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments described in the present application, and other drawings can also be obtained according to these drawings for those skilled in the art.

[0021] Figure 1 It is a schematic diagram of the overall structure of the network cable tunnel construction mechanism.

[0022] Figure 2 It is a schematic diagram of the disassembled climbing foot.

[0023] Figure 3 It is a schematic diagram of the wire pipeline.

[0024] Figure 4 It is a schematic diagram of the wire groove.

[0025] Explanation of reference signs:

[0026] 1. Wire pipeline; 2. Triangular support frame; 3. Climbing foot; 31. Bar-shaped shell; 32. Gear; 33. Servo motor; 34. Guide wheel; 35. Rubber track; 36. Tooth groove; 37. Connecting rod; 38. Hollow pipe; 39. Tension spring; 310. Movable rod; 4. Lugs; 5. Wire groove; 51. Wire pipe; 52. Silica gel clamps; 53. Bayonet. DETAILED DESCRIPTION

[0027] In order to more clearly explain and illustrate the technical solutions and implementation modes of the present application, the following introduces several preferred specific embodiments for implementing the technical solutions of the present application.

[0028] The following description is merely exemplary in nature and is not intended to limit the present disclosure, application and uses. It should be understood that throughout the drawings, the same or like reference numerals are used to depict the same or like components and features. The various drawings are schematic illustrations only and are not necessarily drawn to scale. Certain portions of the drawings can be shown exaggerated in size, or in somewhat schematic form and, to the extent permitted, the various publications, patents and published patent specifications referred to herein are hereby incorporated by reference in their entirety. The embodiments of the present application will be described below with reference to the accompanying drawings, which show, by way of example, the principles of the application. It is to be understood that the application is not limited to the embodiments described herein, which are presented as examples.

[0029] Embodiment, a better technical scheme of network cabling construction device, comprising:

[0030] Referring to the drawings accompanying Figure 1 The drawings show that the network cable tunnel construction mechanism includes a cable pipe 1, 12-16 cable grooves 5 fixed in the inner cavity of the cable pipe 1 in the form of annular array, and three groups of climbing feet 3 hinged on the outer surface of the cable pipe 1 in the form of annular array.

[0031] Referring to the drawings accompanying Figure 2 The drawings show that the climbing feet 3 include a strip-shaped shell 31, a servo motor 33 fixed in the inner cavity of the strip-shaped shell 31, and a gear 32 fixed on the output shaft of the servo motor 33 through a shaft coupling. The inner cavity of the strip-shaped shell 31 is rotatably connected with 2-3 guide wheels 34, and the outer rings of the gear 32 and the guide wheels 34 are provided with rubber tracks 35 located in the middle region of the outer surface of the strip-shaped shell 31.

[0032] Referring to the drawings accompanying Figure 2 The drawings show that the bottom surface of the strip-shaped shell 31 is rotatably connected with 4 connecting rods 37 at the front and rear sides, and the middle region of the bottom surface of the strip-shaped shell 31 is rotatably connected with 2 hollow pipes 38. The inside of the hollow pipe 38 is inserted with a movable rod 310, and the outer surface of the movable rod 310 is sleeved with a tension spring 39.

[0033] Referring to the drawings accompanying Figure 2 The drawings show that the end of the connecting rod 37 away from the strip-shaped shell 31 is hinged to the outer surface of the cable pipe 1, and the end of the movable rod 310 away from the hollow pipe 38 is hinged to the outer surface of the cable pipe 1.

[0034] Referring to the drawings accompanying Figure 4 The drawings show that the cable grooves 5 each include a cable pipe 51, a bayonet 53 provided on the side wall of the cable pipe 51 away from the cable pipe 1, and 20-30 silica gel clamping rings 52 fixed in the inner cavity of the cable pipe 51 in the form of linear array.

[0035] Referring to the drawings Figure 3 As shown: the outer surface of the front side and the middle area of the band line pipe 1 are both annularly arranged with two groups of 6 protrusions 4, the far end of the connecting rod 37 from the strip-shaped shell 31 is hingedly connected with the protrusions 4 through a shaft pin, the front and rear end faces of the band line pipe 1 are both open for the network cable to pass through from the inside of the band line pipe 1, the outer surface of the front side of the band line pipe 1 is fixedly connected with a triangular support frame 2, the far end of the movable rod 310 from the hollow tube 38 is hingedly connected with the 3 edge faces of the triangular support frame 2 through a shaft pin.

[0036] Referring to the drawings Figure 2 As shown: the inner side wall of the rubber track 35 is equally spaced to be provided with a plurality of tooth grooves 36 engaged with the teeth of the gear 32. The inside of the hollow tube 38 is provided with a chamber for the far end of the movable rod 310 from the band line pipe 1 to be inserted. The side sections of the movable rod 310 and the hollow tube 38 close to each other are fixedly connected with the head ends of the tension springs 39 at the two ends. The inner cavity of the strip-shaped shell 31 is rotatably connected with a tensioning wheel in contact with the inner side surface of the rubber track 35.

[0037] Referring to the drawings Figure 4 As shown: the bayonet 53 is in a state of penetrating through the whole line pipe 51 from front to back for the network cable to be clamped into the inner cavity of the line pipe 51 at the position of the bayonet 53, the inner side wall of the inner ring of the silica gel clasp 52 is in clamping contact with the outer surface of the network cable.

[0038] According to the above-mentioned preferred technical scheme, the working process of the technical scheme is described:

[0039] The network cable to be passed through the wiring tunnel is inserted from the front end face or the rear end face of the band line pipe 1, and the two ends of the network cable are gripped to be clamped into the inside of the line pipe 51 at the position of the bayonet 53, while the silica gel clasp 52 is used to hoop the outer surface of the network cable to stabilize the posture of the network cable and prevent it from falling off during the wiring pulling process, and a plurality of band line grooves 5 are used to realize the effect of carrying multiple network cables at one time. Then, the three climbing feet 3 are pressed to be contracted towards the band line pipe 1, and after the climbing feet 3 and the band line pipe 1 are put into the wiring tunnel, the elastic potential energy of the tension springs 39 forces the hollow tube 38 and the movable rod 310 to move away from each other, so that the strip-shaped shell 31 expands outwardly until the outer surface of the rubber track 35 is in contact with the inner wall of the tunnel, and then the servo motor 33 is controlled by the remote controller to drive the gear 32 to rotate, thereby driving the rubber track 35 to rotate and driving the band line groove 5 with the network cable clamped in the inside of the band line pipe 1 to pull the network cable from the head end of the tunnel to the tail end.

[0040] The above has only described certain exemplary embodiments of the present application by way of illustration, and it is needless to say that the described embodiments can be modified in various ways without departing from the spirit and scope of the present application for those skilled in the art. Therefore, the above drawings and descriptions are illustrative in nature, and should not be understood as limiting the scope of protection of the claims of the present application.

Claims

1. A network cabling construction apparatus comprising a network cable tunnel construction mechanism, characterized by: The net line tunnel construction mechanism contains a line pipe (1), 12-16 line grooves (5) fixed in the inner cavity of the line pipe (1) in a ring array, and three groups of climbing feet (3) hinged on the outer surface of the line pipe (1) in a ring array. The climbing feet (3) include a strip-shaped shell (31), a servo motor (33) fixed in the inner cavity of the strip-shaped shell (31), and a gear (32) fixed on the output shaft of the servo motor (33) through a shaft coupling, 2-3 guide wheels (34) are rotatably connected in the inner cavity of the strip-shaped shell (31), and a rubber track (35) is arranged on the outer rings of the gear (32) and the guide wheels (34) and located in the middle region of the outer surface of the strip-shaped shell (31). The bottom surface of the strip-shaped shell (31) is rotatably connected with 4 connecting rods (37) on the front side and the rear side, the middle region of the bottom surface of the strip-shaped shell (31) is rotatably connected with 2 hollow pipes (38), the inside of the hollow pipe (38) is inserted with a movable rod (310), and the outer surface of the movable rod (310) is sleeved with a tension spring (39). The end of the connecting rod (37) away from the strip-shaped shell (31) is hinged with the outer surface of the line pipe (1), and the end of the movable rod (310) away from the hollow pipe (38) is hinged with the outer surface of the line pipe (1). The line groove (5) includes a line pipe (51), a bayonet (53) arranged on the side wall of the line pipe (51) away from the line pipe (1), and 20-30 silica gel clamping rings (52) fixed on the inner cavity side wall of the line pipe (51) in a linear array.

2. A network cabling installation device according to claim 1, wherein: The outer surface of the line pipe (1) is fixed with two groups of a total of 6 protrusions (4) in a ring array on the front side and the middle region, and the end of the connecting rod (37) away from the strip-shaped shell (31) is hinged with the protrusions (4) through shaft pins.

3. A network cabling installation device according to claim 1, wherein: The outer surface of the line pipe (1) is fixedly connected with a triangular support frame (2) on the front side, and the end of the movable rod (310) away from the hollow pipe (38) is hinged with the 3 edge surfaces of the triangular support frame (2) through shaft pins.

4. A network cabling installation device according to claim 1, wherein: The inner side wall of the rubber track (35) is equally spaced apart and provided with a plurality of tooth grooves (36) engaged with the teeth of the gear (32).

5. A network cabling installation device according to claim 1, wherein: The inside of the hollow pipe (38) is provided with a cavity for inserting the end of the movable rod (310) away from the line pipe (1).

6. A network cabling installation device according to claim 1, wherein: The side sections of the movable rod (310) and the hollow pipe (38) are fixedly connected with the head ends of the tension spring (39) at the two ends.

7. A network cabling installation device according to claim 1, wherein: The inner cavity of the strip-shaped shell (31) is rotatably connected with a tensioning wheel in contact with the inner surface of the rubber track (35).

8. A network cabling installation device according to claim 1, wherein: The front and rear end faces of the line pipe (1) are in an open state for the network line to pass through the inner cavity of the line pipe (1) from front to back.

9. A network cabling installation device according to claim 1, wherein: The bayonet (53) is in a state of penetrating through the line pipe (51) from front to back, for the network line to be clamped into the inner cavity of the line pipe (51) from the position of the bayonet (53), and the inner cavity side wall of the silica gel clamping ring (52) is clamped in contact with the outer skin of the network line.