Wiring pipeline mounting assembly for signal facility construction

By using a processing body and cable tray to adjust the cable path inside the cable well, combined with the pipe hole design and well cover sealing structure, the problems of cable entanglement and water accumulation were solved, achieving stable cable laying and safe maintenance.

CN223843466UActive Publication Date: 2026-01-27SICHUAN YIXUN LIGHTING TECH CO LTD
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Patent Information

Application Number
CN202423302748.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-01-27
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Inside cable manholes, cables may pile up or become tangled in different directions during installation. In particular, cables of varying thicknesses are at risk of being crushed, affecting subsequent installation and maintenance.

Method used

The system employs a processing body and cable tray structure. The cable tray adjusts the cable path, and combined with the design of pipe holes of different thicknesses, it ensures that the cables have their own paths in the manhole. The system also prevents water accumulation through clamping holes and a manhole cover sealing structure.

Benefits of technology

It effectively avoids cable tangling, improves cable stability and safety, saves space, reduces the risk of cable damage, and ensures dryness and safety inside the manhole.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of wire laying inspection wells, and particularly relates to a wiring pipeline installation assembly for signal facility construction, which comprises a processing body which is used for being placed in an inner cavity of a well body and laying a wiring pipeline, and is characterized in that the processing body is formed by more than four side walls in a surrounding mode, the outer wall of the processing body is attached to the inner wall of the well body, and the inner wall of the processing body is connected with the wiring pipeline. The purpose of the utility model is that through the arrangement of the wire arrangement plates, when a cable penetrates into a certain side wall of the processing body, an installation worker can pass the cable through any wire arrangement plate on two sides of the side wall, so that the path of the cable is changed, and the cable extends to the adjacent side wall along the guiding direction of the wire arrangement plate, and therefore, the trend of the cable in the processing body is effectively controlled; and direct contact and winding between cables in different directions are avoided. In addition, the arrangement of the wiring board allows the cable to be tightly attached to the side wall of the processing body during laying, so that the internal space is saved. And meanwhile, the wiring board also has a function of clamping the cable, so that the stability of the cable is enhanced.
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Description

Technical Field

[0001] This utility model belongs to the field of cable laying manhole technology, specifically relating to a cable laying pipe installation component for signal facility construction. Background Technology

[0002] Cable manholes are underground structures used to connect cable tunnels and for cable maintenance. They function as relay stations for underground cables, facilitating cable installation and regular inspections.

[0003] In existing technology, cables often need to be laid in different directions in the manhole. Therefore, when a large number of cables need to be laid, there may be stacking or tangling between cables facing different directions, which is not conducive to subsequent cable laying or maintenance. At the same time, due to the different thicknesses of the cables, some thinner cables are at risk of being crushed when they are stacked and tangled with thicker cables. Utility Model Content

[0004] In view of this, the present invention provides a cable conduit installation component for signal facility construction, the purpose of which is to reduce the contact between cables in different directions by restricting the cable laying path, thereby reducing the situation of cables in different directions getting tangled together.

[0005] The technical solution adopted in this utility model is as follows:

[0006] A cable routing conduit installation assembly for signal facility construction includes a processing body for placement within a manhole cavity and laying of cable routing conduits. The processing body is surrounded by four or more side walls, with the outer wall of the processing body adhering to the inner wall of the manhole. The side walls of the processing body have coarse pipe holes and fine pipe grooves; both the coarse pipe holes and fine pipe grooves are used for laying conduits.

[0007] A cable board is disposed between the side walls of two adjacent processing bodies and is used to adjust the pipe path. The cable board is bent toward the side wall of the processing body and its two folded edges are respectively fixed to the adjacent side walls.

[0008] As a preferred technical solution, the two folded edges of the ribbon cable board are provided with a first ribbon cable groove and a second ribbon cable groove, wherein the first ribbon cable groove and the second ribbon cable groove are arranged sequentially along the length direction of the ribbon cable board.

[0009] Furthermore, there are multiple coarse tube holes, which are arranged in a row on the side wall of the processed body, and the fine tube groove is placed between two coarse tube holes.

[0010] Furthermore, the cross-sectional width of the first cable tray is wider than the cross-sectional width of the second cable tray.

[0011] Furthermore, a plurality of clamping holes are provided on the inner wall of the thin tube groove, wherein the clamping holes extend and are distributed along the length direction of the thin tube groove.

[0012] Furthermore, both the coarse tube hole and the clamping hole are elliptical or oblong holes.

[0013] Furthermore, it also includes a manhole cover disposed on the top of the sidewall, wherein the top of the sidewall is provided with a sealing gasket that fits into the manhole cover.

[0014] Furthermore, the bottom of the sidewall is provided with a drainage groove, and the drainage groove slopes from the bottom of the sidewall toward the ground.

[0015] In summary, due to the adoption of the above technical solution, the beneficial effects of this utility model are:

[0016] By using cable trays, when a cable enters from one side wall of the workpiece, installers can pass the cable through either cable tray on either side of that side wall, thus changing the cable's path and guiding it along the tray's direction to the adjacent side wall. This effectively controls the cable's routing within the workpiece, preventing direct contact and tangling between cables traveling in different directions. Furthermore, the cable trays allow cables to be laid close to the side walls of the workpiece, saving internal space. Additionally, the cable trays also function as cable clamps, enhancing cable stability.

[0017] The design of coarse tube holes and fine tube grooves helps to separate cables of different thicknesses, allowing them to have their own paths within the processing body. This not only reduces mutual interference between cables but also lowers the risk of damage caused by cable stacking. Attached Figure Description

[0018] This utility model will be described by way of example and with reference to the accompanying drawings, wherein:

[0019] Figure 1 This is a schematic diagram of the structure of a wiring conduit installation assembly for signal facility construction provided by this utility model;

[0020] Figure 2 This is a schematic diagram of the internal structure of the manhole provided by this utility model;

[0021] Figure 3 This utility model provides Figure 2 A magnified structural diagram of point A in the middle.

[0022] Processing body-1; coarse pipe hole-2; fine pipe groove-3; well cover-4; sealing gasket-5; drainage groove-6; cable tray-7; first cable groove-8; second cable groove-9; clamping hole-10. 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] Example 1

[0025] In existing technologies, when laying cables in manholes, it is often necessary to lay them according to different directions. Therefore, when a large number of cables need to be laid, cables in different directions may overlap or become tangled, which not only hinders subsequent cable laying work but also causes inconvenience for maintenance. In addition, due to the different thicknesses of the cables, thinner cables are at risk of being crushed when they are stacked or tangled with thicker cables.

[0026] Therefore, to address the problem of cables becoming tangled and intertwined during the installation of cabling conduits in existing manholes, hindering subsequent maintenance, and to achieve the functions of reducing cable tangling and separating thick and thin cables, this utility model discloses a cabling conduit installation component for signal facility construction. (See reference...) Figures 1-3 The system includes a processing body 1, which is placed inside the well body and used to lay pipelines. Specifically, the processing body 1 is surrounded by four or more side walls. The outer wall of the processing body 1 is attached to the inner wall of the well body. The side walls of the processing body 1 have coarse pipe holes 2 and fine pipe grooves 3. Both the coarse pipe holes 2 and the fine pipe grooves 3 are used to lay pipelines. A wiring plate 7 is set between two adjacent side walls of the processing body 1 and is used to adjust the pipeline path. The wiring plate 7 is bent toward the side wall of the processing body 1, and the two bent edges of the wiring plate 7 are respectively fixed to the adjacent side walls.

[0027] When laying cables inside the processing body 1, the installer can introduce cables of corresponding thickness into the processing body 1 through the thick pipe hole 2 or the thin pipe groove 3 according to the thickness of the cable. After the cable enters the processing body 1, the installer can pass the cable through the cable tray 7 so that the cable can be stretched to another side wall and pass out of the processing body 1 through the thick pipe hole 2 or the thin pipe groove 3 on the side wall.

[0028] For example, see Figure 2 The interior of the processing body 1 is a rectangular structure with four side walls. When a cable enters the interior of the processing body 1 from one side wall and the cable needs to be laid towards the side wall directly opposite the current side wall, the existing technology usually straightens the cable and extends it into the opposite side wall. However, in the subsequent laying process, the cable laid towards the adjacent direction of the current side wall may overlap or entangle with the above cable.

[0029] By using the cable tray 7, when a cable enters the processing body 1 from one side wall, the installer can pass the cable through either of the cable trays 7 on either side of the current side wall, thereby changing the cable's path and extending it to the adjacent side wall along the guiding direction of the cable tray 7. In this way, the cable's direction inside the processing body 1 is effectively controlled, avoiding direct contact and tangling between cables in different directions. Secondly, the cable tray 7 allows the cable to be laid close to the side wall of the processing body 1, saving internal space. At the same time, the cable tray 7 can also clamp the cable, improving its stability.

[0030] Furthermore, the arrangement of the coarse tube hole 2 and the fine tube groove 3 helps to separate the thick and thin cables, allowing cables of different thicknesses to have their own paths inside the processing body 1. This not only reduces mutual interference between cables, but also reduces the risk of damage caused by cable stacking.

[0031] In this embodiment, in order to allow the cable to pass smoothly through the cable tray 7, the cable tray 7 is provided with a first cable tray 8 and a second cable tray 9 on both folded edges, wherein the first cable tray 8 and the second cable tray 9 are arranged sequentially along the length direction of the cable tray 7.

[0032] In addition, there are multiple coarse tube holes 2, which are arranged in a row on the side wall of the processing body 1, and the fine tube groove 3 is placed between two coarse tube holes 2.

[0033] Furthermore, the cross-sectional width of the first cable tray 8 is wider than that of the second cable tray 9. This arrangement allows for adaptive guidance of cables of different thicknesses. Specifically, thicker cables can pass through the cable tray 7 via the first cable tray 8, while thinner cables can pass through the cable tray 7 via the second cable tray 9. This arrangement facilitates smooth cable laying within the processing body 1, further improving the flexibility and safety of cable laying.

[0034] Example 2

[0035] Based on Example 1, in order to improve the stability of the cable within the narrow tube groove 3, refer to... Figure 2 and Figure 3 The present invention also includes clamping holes 10 for clamping cables. Specifically, a plurality of clamping holes 10 are provided on the inner wall of the thin tube groove 3, wherein the clamping holes 10 extend and are distributed along the length direction of the thin tube groove 3.

[0036] In this embodiment, the clamping hole 10 is circular in shape, with a diameter slightly larger than the outer diameter of the cable, so that the cable can be smoothly inserted into it. Secondly, each clamping hole 10 has an elastic material, such as silicone or rubber, on its inner edge to ensure that the cable can be properly clamped after insertion, preventing it from sliding in the thin tube groove 3, and further enhancing the fixing effect on the cable.

[0037] Furthermore, it is understood that the thin tube groove 3 and the clamping hole 10 are also provided with corresponding openings on the outer wall of the processing body 1, so that the operator can easily insert or remove the cable from the outside. In practical applications, the installer only needs to insert the cable into the corresponding clamping hole 10 one by one to achieve stable fixation of the cable in the thin tube groove 3.

[0038] In summary, by opening clamping holes 10 on the inner wall of the thin tube groove 3 and using elastic materials, this utility model helps to improve the stability and ease of maintenance of cables in the thin tube groove 3.

[0039] In this embodiment, in order to improve the adaptability of the processing body 1 to the cable, both the coarse tube hole 2 and the clamping hole 10 are elliptical holes or oblong holes.

[0040] Example 3

[0041] Based on Example 1, in order to avoid water accumulation inside the processed body 1 during rainy weather, refer to... Figure 1 The present invention also includes a manhole cover 4 and a sealing gasket 5, as well as a drainage trough 6 for draining accumulated water. Specifically, it also includes a manhole cover 4 set on the top of the side wall, wherein the top of the side wall is provided with a sealing gasket 5 that fits with the manhole cover 4, and the bottom of the side wall is provided with a drainage trough 6, and the drainage trough 6 is inclined from the bottom of the side wall toward the ground.

[0042] In this embodiment, the manhole cover 4 can cover the top opening of the processing body 1, preventing a large amount of rainwater from entering the processing body 1. At the same time, the surface of the manhole cover 4 is designed with anti-slip texture to improve the safety of pedestrians and vehicles. In addition, the edge of the manhole cover 4 fits tightly with the sealing gasket 5 to form a good sealing effect, preventing rainwater from seeping into the processing body from the joint between the manhole cover and the side wall.

[0043] Furthermore, the sealing gasket 5 is made of aging-resistant and corrosion-resistant rubber material, and its surface has a certain degree of elasticity and flexibility, which can adapt to the expansion and contraction of the material caused by temperature changes. The shape of the sealing gasket 5 matches the edge of the manhole cover 4, ensuring that the sealing gasket can bear the pressure evenly when the manhole cover is closed, thereby achieving a good sealing effect.

[0044] In this embodiment, during rainy weather, some rainwater will seep into the processing body 1 from the edge of the manhole cover 4. The drainage trough 6 allows the accumulated water inside the processing body 1 to drain smoothly. The inclined angle of the drainage trough 6 helps to quickly drain the water and prevents it from accumulating inside the processing body. The bottom of the drainage trough 6 has drainage holes that connect to the municipal drainage system, ensuring that the accumulated water can be smoothly discharged into the urban drainage network.

[0045] In summary, in conjunction with embodiments one through three, when using this cable routing conduit installation assembly for signal facility construction, the cables are first introduced into the processing body 1 through the coarse pipe hole 2 or the fine pipe groove 3 according to their thickness. Then, the cable routing plate 7 changes the cable path to avoid conflict and tangling. The cable routing plate 7 not only improves the flexibility and safety of cable laying but also saves internal space in the processing body 1. Through the coarse pipe hole 2 and the fine pipe groove 3, cables of different thicknesses can be separated, reducing mutual interference and the risk of crushing.

[0046] In this process, the stability of the cable in the narrow tube groove 3 is further improved by setting the clamping hole 10. The installer can insert the cable into the clamping hole 10 so that the cable is not easy to slip in the narrow tube groove 3, thereby enhancing the fixing effect of the cable.

[0047] Next, the manhole cover 4 is closed on top of the processing body 1. The sealing gasket 5 ensures that the inside of the processing body 1 is dry and safe, preventing rainwater from seeping in. In case of severe weather, the drainage channel 6 can effectively drain the water inside the processing body 1, avoiding damage to the cables and ensuring the stable operation of the signal facilities.

[0048] The various embodiments in this specification are described in a progressive manner, with each embodiment focusing on the differences from other embodiments. The same or similar parts between the various embodiments can be referred to each other.

[0049] The above description of the disclosed embodiments enables those skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A cable installation assembly for signal facility construction, comprising a processing body (1), said processing body (1) being placed inside a well body and used to lay cable conduits, characterized in that, The processing body (1) is surrounded by four or more side walls. The outer wall of the processing body (1) is attached to the inner wall of the well body. The side walls of the processing body (1) have coarse pipe holes (2) and fine pipe grooves (3). Both the coarse pipe holes (2) and the fine pipe grooves (3) are used for laying pipes. A wiring board (7) is disposed between the side walls of two adjacent processing bodies (1) and is used to adjust the pipe path. The wiring board (7) is bent toward the side wall of the processing body (1) and the two folded edges of the wiring board (7) are respectively fixed to the adjacent side walls.

2. The wiring conduit installation assembly for signal facility construction according to claim 1, characterized in that, The cable board (7) has a first cable groove (8) and a second cable groove (9) on both folded edges, wherein the first cable groove (8) and the second cable groove (9) are arranged sequentially along the length of the cable board (7).

3. The wiring conduit installation assembly for signal facility construction according to claim 1, characterized in that, There are multiple coarse tube holes (2), which are arranged in a row on the side wall of the processing body (1), and the fine tube groove (3) is placed between two coarse tube holes (2).

4. The wiring conduit installation assembly for signal facility construction according to claim 2, characterized in that, The cross-sectional width of the first cable tray (8) is wider than the cross-sectional width of the second cable tray (9).

5. The wiring conduit installation assembly for signal facility construction according to claim 1, characterized in that, The inner wall of the thin tube groove (3) is provided with a plurality of clamping holes (10), wherein the clamping holes (10) are distributed along the length direction of the thin tube groove (3).

6. The wiring conduit installation assembly for signal facility construction according to any one of claims 1 or 5, characterized in that, Both the coarse tube hole (2) and the clamping hole (10) are elliptical or oblong holes.

7. The wiring conduit installation assembly for signal facility construction according to claim 1, characterized in that, It also includes a manhole cover (4) disposed on the top of the side wall, wherein the top of the side wall is provided with a sealing gasket (5) that fits against the manhole cover (4).

8. The wiring conduit installation assembly for signal facility construction according to claim 7, characterized in that, The bottom of the sidewall is provided with a drainage groove (6), and the drainage groove (6) slopes from the bottom of the sidewall toward the ground.