Ceiling assembly type integrated equipment belt

By pre-embedding concrete beams or I-beams on the structural beams, and connecting the square tubes to the main body of the equipment belt, the problem of inconvenient installation of the integrated equipment belt is solved, achieving stable installation and shortening the construction cycle, while improving aesthetics and corrosion resistance.

CN224187026UActive Publication Date: 2026-05-01CHINA RAILWAY CONSTR GROUP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHINA RAILWAY CONSTR GROUP CO LTD
Filing Date
2025-05-28
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

The existing integrated equipment belts are inconvenient to install due to the lack of connectors at the top, which delays the construction period, especially in large-span public spaces.

Method used

The ceiling-mounted prefabricated design uses pre-embedded concrete beams or I-beams on the structural beams to connect square tubes and fix them to the main body of the equipment, forming a stable support structure, providing installation space and shortening the construction period.

Benefits of technology

The integrated equipment belt was installed stably, the construction cycle was shortened, the construction efficiency was improved, and the aesthetics and corrosion resistance were enhanced by the fluorocarbon paint layer.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224187026U_ABST
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Abstract

The utility model discloses a suspended ceiling assembly type integrated equipment belt, belongs to the technical field of equipment belts, and solves the problem that an existing integrated equipment belt is inconvenient to install due to the fact that no connecting piece is arranged at the top. The integrated equipment belt comprises an integrated equipment belt body, at least one connecting square pipe is arranged at the top of the integrated equipment belt body in the length direction, and the top of each connecting square pipe is fixedly connected with the bottom of a concrete beam or an I-shaped steel beam pre-buried in a structural beam. According to the utility model, the concrete beam or the I-shaped steel beam is pre-buried on the structural beam in advance, so that when the integrated equipment belt main body is mounted, a certain mounting space is formed between the integrated equipment belt main body and the top of the structural beam, and the problem of inconvenient construction caused by no connecting piece for reserving the mounting space at the top of the traditional equipment belt is solved; and meanwhile, the connecting square pipes provide stable bearing support for the integrated equipment belt body, the integrated equipment belt is particularly suitable for modular rapid installation in a large-span public space, and the construction period is shortened.
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Description

Ceiling-mounted integrated equipment belt Technical Field

[0001] This utility model relates to the field of equipment belt technology, specifically to a ceiling-mounted integrated equipment belt. Background Technology

[0002] The integrated equipment belt is a multifunctional consolidation of terminal equipment such as fire sprinklers, smoke detectors, heat detectors, sirens, point light sources, etched light guide plates, wireless communication coverage, monitors, infrared detectors, sensor data acquisition points, intelligent controllers, and control switch boxes within the equipment belt or indoor space. It not only maximizes the optimization of top-level functionality but also allows for free combination and integration according to user needs, and new sub-functional modules can be added at any time, offering unlimited scalability.

[0003] Existing integrated equipment strips are typically bolted directly to the ceiling, such as the magnetic double-slot integrated equipment strip disclosed in patent CN212562252U. Because the top of the integrated equipment strip lacks connectors, it sits flush against the ceiling, leaving no space for installation and causing construction difficulties. In open public spaces, such as railway platform canopies, airport overpasses, and covered walkways, the integrated equipment strip is often long and divided into multiple sections. Multiple sections that are difficult to install will delay the construction schedule. Summary of the Invention

[0004] To address the aforementioned problems in the prior art, this utility model provides a ceiling-mounted integrated equipment belt, which solves the problem of inconvenient installation caused by the lack of connecting parts at the top of the existing integrated equipment belt.

[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows:

[0006] A ceiling-mounted integrated equipment belt is provided, including an integrated equipment belt body. At least one connecting square tube is provided on the top of the integrated equipment belt body along the length direction. The top of each connecting square tube is fixedly connected to the bottom of a concrete beam or I-beam pre-embedded in a structural beam.

[0007] The beneficial effects of this solution are that by pre-embedding concrete beams or I-beams on the structural beams, a certain installation space is created between the integrated equipment belt body and the top of the structural beams when installing the integrated equipment belt body. This solves the construction inconvenience caused by the lack of connecting parts to reserve installation space at the top of traditional equipment belts. At the same time, the connecting square tubes provide stable load-bearing support for the integrated equipment belt body, making it particularly suitable for modular and rapid installation in large-span public spaces, thus shortening the construction cycle.

[0008] Furthermore, the integrated equipment body is rectangular in shape, including two horizontal square tubes welded to both ends of a connecting square tube. Side square tubes are welded to both sides of each horizontal square tube, and a U-shaped equipment support plate is fixed to the bottom of each side square tube. A grid plate, fixed in the middle of the two horizontal square tubes, is placed between the two equipment support plates. The horizontal and side square tubes are welded to form a rigid frame, the equipment support plates provide standardized equipment mounting positions, and the grid plate facilitates wiring and heat dissipation, meeting the integration needs of multi-functional equipment.

[0009] Furthermore, the top of the outer side panels of the two equipment trays are fixedly connected to two side square tubes, and the inner side panels of the two equipment trays are fixedly connected to two inner square tubes. The top of each inner square tube is welded to two horizontal square tubes. Through the double fixation of the inner square tubes and the equipment trays, a three-dimensional support system is formed.

[0010] Furthermore, each equipment tray has a first angle aluminum plate bolted to both its outer and inner side panels. These two first angle aluminum plates are respectively bolted to the side square tube and the inner square tube. The bolted connection of the first angle aluminum plates allows for detachable assembly of the equipment tray and the frame. This ensures connection strength while facilitating future equipment maintenance or tray replacement, thus reducing maintenance costs.

[0011] Furthermore, two second angle aluminum plates are bolted to both ends of the grid panel, and each of the two second angle aluminum plates is bolted to one of the two horizontal square tubes. The second angle aluminum plates serve as transitional connectors between the grid panel and the horizontal square tubes, allowing the grid panel to be quickly installed and positioned.

[0012] Furthermore, each equipment tray has an inverted U-shaped groove on its bottom surface near the outer side panel. The inverted U-shaped groove can separate the cables inside the equipment tray.

[0013] Furthermore, the concrete beam includes a pre-embedded steel plate embedded in the top of the structural beam, with connecting square tubes welded to the bottom ends of the pre-embedded steel plate, and the two connecting square tubes are respectively welded to the top ends of a connecting square tube.

[0014] Furthermore, the I-beam includes a steel beam with an upper flange embedded in the top of the structural beam, and the lower flange of the steel beam is welded to two connecting square tubes on both sides.

[0015] Furthermore, the I-beam includes two steel beams symmetrically arranged on the structural beam, and the lower flanges of the two steel beams are respectively welded to two connecting square tubes.

[0016] Furthermore, a fluorocarbon paint layer is applied to the outer surface of each connecting square tube, each horizontal square tube, each side square tube, each inner square tube, each first corner aluminum plate, and each second corner aluminum plate. This fluorocarbon paint layer not only improves corrosion resistance and weather resistance, but also has high gloss and a good surface texture, enhancing aesthetics. Attached Figure Description

[0017] Figure 1 is a schematic diagram of the concrete beam connection of the prefabricated integrated equipment for ceiling installation;

[0018] Figure 2 is a schematic diagram of the connection of the I-beams in the prefabricated integrated ceiling equipment;

[0019] Figure 3 is a schematic diagram of the concrete beam connection of the prefabricated integrated equipment belt in the ceiling;

[0020] Figure 4 is a three-dimensional view of the integrated device with its main body;

[0021] Among them: 100, integrated equipment with main body; 11, horizontal square tube; 12, side square tube; 13, equipment support plate; 131, first corner aluminum plate; 132, inverted U-shaped channel; 14, inner square tube; 15, grid plate; 151, second corner aluminum plate; 200, connecting square tube; 300, concrete beam; 400, I-beam. Detailed Implementation

[0022] The specific embodiments of this utility model are described below to enable those skilled in the art to understand this utility model. However, it should be understood that this utility model is not limited to the scope of the specific embodiments. For those skilled in the art, as long as various changes are within the spirit and scope of this utility model as defined and determined by the appended claims, these changes are obvious. All utility model creations utilizing the concept of this utility model are within the scope of protection.

[0023] Example 1

[0024] In the prior art, traditional equipment belts lack connecting parts at the top to reserve installation space, resulting in inconvenient construction. To solve this problem, this application provides a ceiling-mounted prefabricated integrated equipment belt, which includes a concrete beam 300 or an I-beam 400 pre-embedded in the top of a structural beam. By pre-embedding the concrete beam 300 or the I-beam 400 in the structural beam, a certain installation space is provided between the integrated equipment belt body 100 and the top of the structural beam when installing the integrated equipment belt body 100, making installation more convenient and shortening the construction cycle.

[0025] Referring to Figures 1 and 2, the ceiling-mounted integrated equipment belt includes an integrated equipment belt body 100. At least one connecting square tube 200 is provided on the top of the integrated equipment belt body 100 along the length direction. The top of each connecting square tube 200 is fixedly connected to the bottom of a concrete beam 300 or an I-beam 400 embedded in the structural beam.

[0026] The specific structure of the integrated equipment with main body 100 can be seen in Figures 1 and 4. The integrated equipment with main body 100 is cuboid in shape, including two horizontal square tubes 11 welded to both ends of the connecting square tube 200. Side square tubes 12 are welded to both sides of the two horizontal square tubes 11. A U-shaped equipment support plate 13 is fixed to the bottom of each of the two side square tubes 12. A grid plate 15 is fixed between the two equipment support plates 13 and fixed in the middle of the two horizontal square tubes 11. The horizontal square tubes 11 and the side square tubes 12 are welded to form a rigid frame. The equipment support plate 13 provides a standardized equipment mounting position, and the grid plate 15 facilitates wiring and heat dissipation, meeting the needs of multi-functional equipment integration.

[0027] The top of the outer side plates of the two equipment trays 13 are fixedly connected to the two side square tubes 12, and the inner side plates of the two equipment trays 13 are fixedly connected to the two inner square tubes 14. The top of each of the two inner square tubes 14 is welded to the two horizontal square tubes 11. Through the double fixation of the inner square tubes 14 and the equipment trays 13, a three-dimensional support system is formed.

[0028] Each equipment tray 13 has a first angle aluminum plate 131 bolted to both its outer and inner side panels. The two first angle aluminum plates 131 are respectively bolted to the side square tube 12 and the inner square tube 14. The bolted connection of the first angle aluminum plates 131 allows for detachable assembly of the equipment tray 13 to the frame. This ensures connection strength while facilitating future equipment maintenance or tray replacement, thus reducing maintenance costs.

[0029] Each equipment tray 13 has an inverted U-shaped groove 132 on its bottom surface near the outer side plate. The inverted U-shaped groove 132 can separate the cables inside the equipment tray 13.

[0030] Two second angle aluminum plates 151 are bolted to both ends of the grid plate 15, and the two second angle aluminum plates 151 are respectively bolted to the two horizontal square tubes 11. The second angle aluminum plates 151 serve as transitional connectors between the grid plate 15 and the horizontal square tubes 11, allowing the grid plate 15 to be quickly installed and positioned.

[0031] In this embodiment, a fluorocarbon paint layer is provided on the outer surface of each connecting square tube 200, each horizontal square tube 11, each side square tube 12, each inner square tube 14, each first corner aluminum plate 131, and each second corner aluminum plate 151. The fluorocarbon paint layer not only improves corrosion resistance and weather resistance, but also has high gloss and a good surface texture, enhancing aesthetics. Furthermore, each connecting square tube 200, each horizontal square tube 11, each side square tube 12, and each inner square tube 14 is made of galvanized square tube.

[0032] Example 2

[0033] This embodiment is based on Embodiment 1 with further limitations. The specific improvement is in providing the specific structure of the concrete beam 300. Other parts not mentioned refer to Embodiment 1 or the prior art.

[0034] Referring to Figure 1, the concrete beam 300 includes a pre-embedded steel plate embedded in the top of the structural beam. The bottom ends of the pre-embedded steel plate are respectively welded with connecting square tubes 200, and the two connecting square tubes 200 are respectively welded to the top ends of one connecting square tube 200.

[0035] Example 3

[0036] This embodiment is based on Embodiment 1 with further limitations. The specific improvement is in providing the specific structure of the I-beam 400. Other parts not mentioned refer to Embodiment 1 or the prior art.

[0037] Referring to Figure 2, the I-beam 400 includes a steel beam with an upper flange embedded in the top of the structural beam, and the lower flange of the steel beam is welded to two connecting square tubes 200 on both sides.

[0038] Example 4

[0039] This embodiment is based on Embodiment 1 with further limitations. The specific improvement is in providing the specific structure of the I-beam 400. Other parts not mentioned refer to Embodiment 1 or the prior art.

[0040] Referring to Figure 3, the I-beam 400 includes two steel beams symmetrically arranged on the structural beam, and the lower flanges of the two steel beams are welded to two connecting square tubes 200 respectively.

[0041] Although the specific embodiments of the utility model have been described in detail with reference to the accompanying drawings, this should not be construed as limiting the scope of protection of this patent. Various modifications and variations that can be made by those skilled in the art without inventive effort within the scope described in the claims still fall within the scope of protection of this patent.

Claims

1. A prefabricated integrated ceiling assembly line, characterized in that: The device includes an integrated equipment belt body (100), and at least one connecting square tube (200) is provided on the top of the integrated equipment belt body (100) along the length direction. The top of each connecting square tube (200) is fixedly connected to the bottom of a concrete beam (300) or an I-beam (400) embedded in the structural beam.

2. The ceiling assembly integrated equipment strip of claim 1, wherein, The integrated equipment belt body (100) is rectangular in shape, including two horizontal square tubes (11) welded to both ends of the connecting square tube (200). Side square tubes (12) are welded to both sides of the two horizontal square tubes (11). A U-shaped equipment support plate (13) is fixed to the bottom of the two side square tubes (12). A grid plate (15) fixed in the middle of the two horizontal square tubes (11) is provided between the two equipment support plates (13).

3. The ceiling assembly integrated equipment strip of claim 2, wherein, The top of the outer side plates of the two equipment trays (13) are fixedly connected to the two side square tubes (12), and the inner side plates of the two equipment trays (13) are fixedly connected to the two inner square tubes (14). The top ends of the two inner square tubes (14) are welded to the two horizontal square tubes (11).

4. The ceiling-mounted integrated equipment belt according to claim 3, characterized in that, Each of the equipment trays (13) has a first angle aluminum plate (131) bolted to its outer and inner sides, and the two first angle aluminum plates (131) are bolted to the side square tube (12) and the inner square tube (14) respectively.

5. The ceiling assembly integrated equipment strip of claim 4, wherein, Both ends of the grid plate (15) are bolted with second angle aluminum plates (151), and the two second angle aluminum plates (151) are bolted to the two horizontal square tubes (11) respectively.

6. The ceiling assembly integrated equipment strip of claim 2, wherein, Each of the equipment trays (13) has an inverted U-shaped groove (132) on its bottom surface near the outer side plate.

7. The prefabricated integrated equipment belt for ceiling installation according to claim 1, characterized in that, The concrete beam (300) includes a pre-embedded steel plate embedded in the top of the structural beam. The bottom ends of the pre-embedded steel plate are respectively welded with connecting square tubes (200), and the two connecting square tubes (200) are respectively welded to the top ends of one connecting square tube (200).

8. The ceiling assembly integrated equipment strip of claim 2, wherein, The I-beam (400) includes a steel beam with an upper flange embedded in the top of the structural beam, and the lower flange of the steel beam is welded to two connecting square tubes (200) on both sides respectively.

9. The ceiling assembly integrated equipment strip of claim 2, wherein, The I-beam (400) includes two steel beams symmetrically arranged on the structural beam, and the lower flanges of the two steel beams are respectively welded to the two connecting square tubes (200).

10. The prefabricated integrated equipment belt for ceiling installation according to claim 5, characterized in that, A fluorocarbon paint layer is provided on the outer surface of each of the connecting square tubes (200), each of the transverse square tubes (11), each of the side square tubes (12), each of the inner square tubes (14), each of the first angle aluminum plates (131), and each of the second angle aluminum plates (151).

Citation Information

Patent Citations

  • Magnetic type double-light-groove integrated equipment belt

    CN212562252U