Single-cabin comprehensive pipe gallery deformation joint stabilizing device

By installing a combination device of component plates and anti-leakage sealing gaskets in a single-cabin integrated pipe corridor, the water leakage problem caused by unstable deformation joints is solved, the stability and sealing of deformation joints are enhanced, and the equipment is protected.

CN223176787UActive Publication Date: 2025-08-01ZHENGZHOU MUNICIPAL ENG CORP
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Patent Information

Application Number
CN202422695314.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-06
Publication Date
2025-08-01
Estimated Expiration
2034-11-06

AI Technical Summary

Technical Problem

The unstability of the deformation joints of the single-cabin comprehensive pipe corridor leads to waterproof failure, which in turn leads to water leakage, damages the life of the equipment and increases the risk of equipment corrosion.

Method used

The stability device consisting of the first component plate and the second component plate is installed on the inner wall of the pipe corridor through hinging and clamping, and is fixed with anti-leakage sealing gasket and expansion bolts to enhance the stability and sealing of the deformation joint.

Benefits of technology

It achieves stability of deformation joints, prevents water leakage, protects the equipment from damage, and improves the service life and waterproof performance of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a single-cabin comprehensive pipe gallery deformation joint stabilizing device which comprises a first assembly plate and a second assembly plate. In the circumferential direction of the single-cabin comprehensive pipe gallery, the first assembly plate is provided with a hinged end and a clamping groove end, and the second assembly plate is provided with a hinged end and a clamping block end. The first assembly plates and the second assembly plates are sequentially and alternately connected along the inner wall of the single-cabin comprehensive pipe gallery, and any first assembly plate is connected with two second assembly plates in the circumferential direction of the single-cabin comprehensive pipe gallery. The hinge state of a first assembly plate and a second hinge plate of the plane part of the single-cabin comprehensive pipe gallery is a plane state; the hinged state of the first assembly plate and the second hinged plate of the corner part of the single-cabin comprehensive pipe gallery is a vertical state. The single-cabin comprehensive pipe rack is simple in structure, is provided with only two components, is convenient to manufacture and install, and can be matched with the single-cabin comprehensive pipe racks with more than one section size, so that the deformation joints of the single-cabin comprehensive pipe racks are more stable, and the waterproof performance is better.
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Description

Technical Field

[0001] The utility model relates to the technical field of single - chamber engineering, in particular to the deformation joint stabilization technology of single - chamber utility tunnels. Background Art

[0002] The deformation joints of single - chamber utility tunnels are an important concept in architecture. It is the general term for expansion joints, settlement joints and seismic joints. These joints are reserved in buildings mainly to cope with deformations caused by external factors (such as temperature changes, humidity changes, earthquakes, etc.) to prevent the building from cracking or even being damaged. Therefore, it is of great significance to stabilize the deformation joints of single - chamber utility tunnels.

[0003] The deformation of the deformation joints of single - chamber utility tunnels may lead to the failure of waterproofing. As a result, surface water may leak into the tunnel through the deformation joints, causing corrosion of the equipment installed in the tunnel (such as fans, lighting, distribution boxes, metal brackets, etc.), reducing their service life. When the deformation joints of single - chamber utility tunnels are not effectively supported, the displacement distance between the two sides of the tunnel will continuously increase, causing the water - stop belt to break and water to invade the single - chamber utility tunnel. For this reason, we propose a stabilization device for the deformation joints of single - chamber utility tunnels to solve the above - mentioned possible problems. Summary of the Utility Model

[0004] The purpose of the utility model is to provide a stabilization device for the deformation joints of single - chamber utility tunnels, which can be conveniently installed at the deformation joints of single - chamber utility tunnels to achieve the purpose of stabilizing the deformation joints of single - chamber utility tunnels.

[0005] To achieve the above purpose, a stabilization device for the deformation joints of single - chamber utility tunnels of the utility model includes a first component plate and a second component plate;

[0006] In the circumferential direction of the single - chamber utility tunnel, the first component plate has a hinged end and a clamping groove end, and the second component plate has a hinged end and a clamping block end;

[0007] The first component plate and the second component plate are alternately connected in sequence along the inner wall of the single - chamber utility tunnel. Any first component plate is connected to two second component plates in the circumferential direction of the single - chamber utility tunnel;

[0008] The hinged end of the first component plate is hinged to the hinged end of the adjacent second component plate, and the clamping groove end of the first component plate is clamped to the clamping block end of the adjacent second component plate;

[0009] The hinged state of the first component plate and the second hinged plate in the planar part of the single - chamber utility tunnel is a planar state;

[0010] The hinged state of the first component plate and the second hinged plate in the corner part of the single - chamber utility tunnel is a vertical state.

[0011] A number of first bolt holes are provided on the first component board, and a number of second bolt holes are provided on the second component board; both the first bolt holes and the second bolt holes are used to be connected to the inner wall surface of the single-compartment integrated pipe gallery through expansion bolts.

[0012] Leakage-proof gaskets are pasted on the outer wall surfaces of the first component board and the second component board, and the leakage-proof gaskets are used to be pasted on the inner wall surface of the single-compartment integrated pipe gallery.

[0013] Third bolt holes corresponding to the first bolt holes and the second bolt holes are provided on the leakage-proof gaskets, and the sizes and layouts of the first bolt holes are the same as those of the second bolt holes and the third bolt holes.

[0014] The utility model has the following advantages:

[0015] The structure of the utility model is simple and convenient for installation. Since the utility model is composed of multiple first component boards and second component boards, the size of each component board is much smaller than the cross-section of the single-compartment integrated pipe gallery, so each component board can be conveniently placed into the single-compartment integrated pipe gallery and then assembled together. Since there are only two types of component boards, namely the first component board and the second component board, it is convenient for production and manufacturing, and different numbers of component boards can be assembled in the circumferential direction to adapt to single-compartment integrated pipe galleries with various cross-section sizes, which is flexible and convenient to use.

[0016] By adopting the utility model, the first component board and the second component board can rotate relative to each other at the end connected by a hinge, and have a state of planar connection and a state of right-angle connection. Therefore, it can be installed on the planar wall surface part of the single-compartment integrated pipe gallery or at the corner of the single-compartment integrated pipe gallery, and the installation and use are very convenient. The utility model can be installed on the inner wall surface of the single-compartment integrated pipe gallery at the deformation joint, effectively enhancing the stability of the deformation joint and improving the waterproof performance at the deformation joint.

[0017] The leakage-proof gasket can enhance the sealing performance at the deformation joint of the single-compartment integrated pipe gallery, prevent water from entering the interior of the single-compartment integrated pipe gallery, and prevent water from damaging the equipment installed in the single-compartment integrated pipe gallery.

[0018] The sizes and layouts of the bolt holes at each location are the same, which is convenient for aligning the third bolt hole with the first bolt hole or the second bolt hole, and then fixing the first component board and the second component board on the inner wall surface of the single-compartment integrated pipe gallery through expansion bolts. Description of the Drawings

[0019] Figure 1 It is a schematic structural view of the first component board and the second component board being alternately connected into a ring that circumferentially matches the inner wall of the single-compartment integrated pipe gallery.

[0020] Figure 2It is a schematic structural view when the hinged state of the first component plate and the second component plate is in a planar state. In this state, the first component plate and the second component plate are used to match the straight part of the single-compartment integrated pipe gallery.

[0021] Figure 3 It is a schematic structural view when the hinged state of the first component plate and the second component plate is in a vertical state. In this state, the first component plate and the second component plate are used to match the corner of the single-compartment integrated pipe gallery. Specific implementation manner

[0022] As Figures 1 to 3 shown, the present utility model provides a deformation joint stabilizing device for a single-compartment integrated pipe gallery, including a first component plate 1 and a second component plate 2;

[0023] In the circumferential direction of the single-compartment integrated pipe gallery, the first component plate 1 has a hinged end 3 and a card slot end 4, and the second component plate 2 has a hinged end 3 and a card block end 5; the card block end 5 and the card slot end 4 are adapted to each other.

[0024] The first component plate 1 and the second component plate 2 are sequentially and alternately connected along the inner wall of the single-compartment integrated pipe gallery. Any one of the first component plates 1 is connected to two second component plates 2 in the circumferential direction of the single-compartment integrated pipe gallery;

[0025] The hinged end 3 of the first component plate 1 is hinged to the hinged end 3 of the adjacent second component plate 2, and the card slot end 4 of the first component plate 1 is clamped to the card block end 5 of the adjacent second component plate 2;

[0026] The hinged state of the first component plate 1 and the second hinged plate in the planar part of the single-compartment integrated pipe gallery is in a planar state;

[0027] The hinged state of the first component plate 1 and the second hinged plate in the corner part of the single-compartment integrated pipe gallery is in a vertical state (that is, the first component plate 1 and the second hinged plate are perpendicular to each other).

[0028] The structure of the present utility model is simple and convenient for installation. Since the present utility model is composed of multiple first component plates 1 and second component plates 2, and the size of each component plate is much smaller than the cross-section of the single-compartment integrated pipe gallery, each component plate can be conveniently placed into the single-compartment integrated pipe gallery and then assembled together. Since there are only two types of components, namely the first component plate 1 and the second component plate 2, it is convenient for production and manufacturing, and can adapt to single-compartment integrated pipe galleries with various cross-section sizes by assembling different numbers of component plates in the circumferential direction, and is flexible and convenient to use.

[0029] With the adoption of the present utility model, the first component plate 1 and the second component plate 2 can rotate relative to each other at the hinged ends and have a state of planar connection and a state of right-angle connection. Therefore, they can be installed on the planar wall surface part of the single-compartment integrated pipe gallery or at the corner of the single-compartment integrated pipe gallery, and the installation and use are very convenient. The present utility model can be installed on the inner wall surface of the single-compartment integrated pipe gallery at the deformation joint, and effectively enhances the stability of the deformation joint.

[0030] A number of first bolt holes 6 are provided on the first component plate 1, and a number of second bolt holes 7 are provided on the second component plate 2; both the first bolt holes 6 and the second bolt holes 7 are used to connect with the inner wall surface of the single-compartment integrated pipe gallery through expansion bolts.

[0031] Leakage-proof gaskets 8 are pasted on the outer wall surfaces of the first component plate 1 and the second component plate 2, and the leakage-proof gaskets 8 are used to be pasted on the inner wall surface of the single-compartment integrated pipe gallery.

[0032] The leakage-proof gaskets 8 can enhance the sealing performance at the deformation joint of the single-compartment integrated pipe gallery, prevent water from infiltrating into the interior of the single-compartment integrated pipe gallery, and prevent water from damaging the equipment installed in the single-compartment integrated pipe gallery.

[0033] Third bolt holes 9 corresponding to the first bolt holes 6 and the second bolt holes 7 are provided on the leakage-proof gaskets 8, and the sizes and layouts of the first bolt holes 6 are the same as those of the second bolt holes 7 and the third bolt holes 9.

[0034] The sizes and layouts of the bolt holes at each place are the same, which is convenient for aligning the third bolt holes 9 with the first bolt holes 6 or the second bolt holes 7, and then fixing the first component plate 1 and the second component plate 2 on the inner wall surface of the single-compartment integrated pipe gallery through expansion bolts.

[0035] In the present utility model, the first component plate 1 and the second component plate 2 can be made according to the inner wall contour of the single-compartment integrated pipe gallery. Of course, after being made, the first component plate 1 and the second component plate 2 can be circumferentially spliced to form square contours of different sizes, not only adapting to a single-compartment integrated pipe gallery with a specific cross-sectional size.

[0036] Then, holes are drilled on the inner wall surface at the deformation joint of the connection between two single-compartment integrated pipe galleries, and the drilling positions correspond to the positions of the predetermined first bolt holes 6 and second bolt holes 7.

[0037] Then, the leakage-proof gaskets 8 are pasted on the inner wall surface of the single-compartment integrated pipe gallery, and attention should be paid to making the third bolt holes 9 on the leakage-proof gaskets 8 correspond to the bolt holes on the inner wall surface of the single-compartment integrated pipe gallery.

[0038] Next, the first component board 1 and the second component board 2 are assembled in sequence, so that the first component board 1 is respectively clamped and hinged to the second component boards 2 at its circumferential two ends. Expansion bolts are respectively inserted through the first bolt holes 6 of the first component board 1 and the second bolt holes 7 of the second component board 2, and the expansion bolts extend into the bolt holes on the inner wall surface of the single-compartment integrated pipe gallery after passing through the third bolt holes 9, thereby fixing each first component board 1 and each second component board 2 on the inner wall of the single-compartment integrated pipe gallery to complete the installation. After installation, it can play a stabilizing role in the deformation joint of the single-compartment integrated pipe gallery and prevent the water stop belt from breaking. When one single-compartment integrated pipe gallery moves first and drives the other connected single-compartment integrated pipe gallery to move, water is likely to enter at the deformation joint of the two single-compartment integrated pipe galleries during the movement. At this time, the anti-leakage gasket 8 can effectively prevent water from infiltrating into the interior of the single-compartment integrated pipe gallery and prevent the equipment installed in the single-compartment integrated pipe gallery from being damaged by water.

[0039] The above embodiments are only used to illustrate rather than limit the technical solutions of the present invention. Although the present invention has been described in detail with reference to the above embodiments, those of ordinary skill in the art should understand that: the present invention can still be modified or equivalently replaced, and any modification or partial replacement without departing from the spirit and scope of the present invention shall be covered by the scope of the claims of the present invention.

Claims

1. A stable device for deformation joints of a single - compartment integrated pipe gallery, characterized in that: It includes a first component plate and a second component plate; In the circumferential direction of the single-compartment integrated pipe gallery, the first component plate has a hinged end and a clamping groove end, and the second component plate has a hinged end and a clamping block end; The first component plate and the second component plate are sequentially and alternately connected along the inner wall of the single-compartment integrated pipe gallery, and any first component plate is connected to two second component plates in the circumferential direction of the single-compartment integrated pipe gallery; The hinged end of the first component plate is hinged to the hinged end of the adjacent second component plate, and the clamping groove end of the first component plate is clamped to the clamping block end of the adjacent second component plate; The hinged state of the first component plate and the second hinged plate in the plane part of the single-compartment integrated pipe gallery is a plane state; The hinged state of the first component plate and the second hinged plate in the corner part of the single-compartment integrated pipe gallery is a vertical state.

2. The stable device for the deformation joint of a single-compartment integrated pipe gallery according to claim 1, characterized in that: A number of first bolt holes are provided on the first component plate, and a number of second bolt holes are provided on the second component plate; both the first bolt holes and the second bolt holes are used to connect to the inner wall surface of the single-compartment integrated pipe gallery through expansion bolts.

3. The stable device for the deformation joint of a single - compartment integrated pipe gallery according to claim 1, wherein: Leakage-proof gaskets are pasted on the outer wall surfaces of the first component plate and the second component plate, and the leakage-proof gaskets are used to be pasted on the inner wall surface of the single-compartment integrated pipe gallery.

4. A single-compartment integrated pipe gallery deformation joint stabilizing device according to claim 3, characterized in that: Third bolt holes corresponding to the first bolt holes and the second bolt holes are provided on the leakage-proof gasket, and the size and layout of the first bolt holes are the same as those of the second bolt holes and the third bolt holes.