Container building top slope surface structure facilitating pipeline connection

By integrating pipelines and using small slope keels to construct the roof slope of the container building, the problem of water accumulation and space occupation caused by no slope on the roof of traditional container building is solved, and the overall thickness of the roof is reduced and the indoor net height is improved. At the same time, it is convenient for transportation and installation, beautiful without inclined edges.

CN222879022UActive Publication Date: 2025-05-16SHANGHAI HUJI CONSTR TECH CO LTD
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Patent Information

Application Number
CN202421894946.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-07
Publication Date
2025-05-16
Estimated Expiration
2034-08-07

AI Technical Summary

Technical Problem

The slope of the roof of traditional container buildings causes water accumulation, and the traditional slope roof occupies a large space, affecting transportation; while cement mortar slope search layer uses to increase the amount of wet work, affecting construction period, and prone to cracking during transportation.

Method used

Design a top slope structure of container building that is convenient for pipeline connection. By integrating the pipeline into the structural layer, a slope of 2%-3% is achieved, and a small slope keel is used to construct the roof slope for easy installation and transportation.

Benefits of technology

The overall thickness of the roof is reduced, the indoor height is improved, and the transportation and installation is convenient, and subsequent interior decoration is avoided. The roof is beautiful and there are no inclined sides, which solves the problem of water accumulation.

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Abstract

The utility model discloses a container building top slope surface structure convenient for pipeline connection, which belongs to the field of container buildings, and comprises a top frame, a ceiling keel, a pipeline keel, a slope finding keel and a pipeline, the top frame consists of a long span beam, a short span beam and a corner post, and the corner post is arranged between the long span beam and the short span beam; the ceiling joists are uniformly arranged in the top frame; the pipeline keel is transversely arranged above the ceiling keel and divides the top frame into two areas, the side, close to the long-span beam, of the pipeline keel is a transversely-arranged pipeline area, and the other side of the pipeline keel is a slope area. The plurality of slope-finding keels are welded and connected close to the ceiling keel and are arranged in the slope surface area; and the pipeline is arranged in the top frame. The height size between the highest point of the roof and the suspended ceiling is reduced, the gradient of 2%-3% is achieved, pipeline connection is fast, transportation and installation are convenient, and the water accumulation problem is solved.
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Description

Technical Field

[0001] The utility model relates to the field of container buildings, in particular to a top slope structure of a container building which is convenient for pipeline connection. Background Art

[0002] As the most common form of modular construction in the early days, container construction has gradually developed into a mature and independent branch of modular construction. The top of the traditional container is made of welded steel plates, which has a fast production speed and a high cost advantage.

[0003] However, the top of the traditional construction container has no slope, and the deflection of the top plate during normal use will cause water accumulation and shorten the service life of the building. On the other hand, the traditional slope roof will take up a large space, affecting the transportation of the construction container. The use of cement mortar slope leveling will increase the amount of wet work, affect the construction period, and the large area of ​​cement mortar layer is prone to cracking during transportation. Utility Model Content

[0004] The purpose of the utility model is to provide a container building top slope structure that is convenient for pipeline connection to solve the above-mentioned problems. By integrating the pipelines in the structural layer, the height dimension between the highest point of the roof and the ceiling is reduced to the greatest extent, a slope of 2% to 3% is achieved, and convenient pipeline connection between modules is provided.

[0005] Technical solution: The utility model provides a top slope structure of a container building which is convenient for pipeline connection, comprising: a top frame, a ceiling keel, a pipeline keel, a slope keel, and a pipeline. The top frame is composed of a long span beam, a short span beam, and a corner column, and a corner column is arranged between the long span beam and the short span beam; the ceiling keel is evenly arranged in the top frame, and both ends of the ceiling keel are connected to the long span beam; the pipeline keel is horizontally placed above the ceiling keel to divide the top frame into two areas, one of the long span beams is sunken, and the side of the pipeline keel close to the higher long span beam is the horizontal pipeline area, and the other side of the sunken long span beam is the slope area; there are several slope keels, which are welded and connected close to the ceiling keel, arranged in the slope area, one end of which is connected to the long span beam, and the other end is connected to the pipeline keel; the pipeline is arranged in the top frame. The pipelines are pre-set and integrated in the ceiling, which reduces the height from the highest point of the roof to the ceiling, achieving a slope of 2%-3%. It is beautiful and solves the problem of water accumulation. Smaller slope keels are used to construct the roof slope, which is easy to install and transport.

[0006] Furthermore, in the above-mentioned container building top slope structure that is convenient for pipeline connection, the long span beam is sunken when connected to the corner column in the slope area, and is flush with the upper surface of the corner column in the horizontal pipeline area.

[0007] Furthermore, in the above-mentioned container building top slope structure that is convenient for pipeline connection, the ceiling keel is horizontally arranged between the long span beams on both sides, and the upper surface of the ceiling keel is flush with the upper surface of the sunken long span beam.

[0008] Furthermore, in the above-mentioned container building top slope structure that is convenient for pipeline connection, the pipeline keel height is less than or equal to the long span beam height minus the sinking height, and the upper surface of the pipeline keel is flush with the upper surface of the long span beam in the horizontal pipeline area.

[0009] Furthermore, in the above-mentioned container building top slope structure that is convenient for pipeline connection, the short span beam is flush with the upper surface of the corner columns at both ends, and forms a structure with a height difference on one side and a horizontal side on the other side with the long span beams on both sides. The roof slope area is embedded in the roof, and the connecting surfaces at both ends are flat, so that there will be no inclined edges from the perspective of the building facade, which is more beautiful without affecting drainage.

[0010] Furthermore, in the above-mentioned container building top slope structure that is convenient for pipeline connection, the pipeline includes: a main pipe and a branch pipe. The main pipe is arranged in the horizontal pipeline area and installed above the ceiling keel. Several branch pipes are arranged in the slope area, between the slope keel and the set ceiling board, and one end is connected to the main pipe. The convenient pipeline connection is arranged in an integrated manner, which reduces the thickness of the roof and increases the indoor net height. The branch pipe descends in the horizontal pipeline area and then horizontally penetrates into the slope area from the lower side of the pipeline keel. In this way, any position of the slope area can be covered.

[0011] Furthermore, in the container building top slope structure that facilitates pipeline connection, the two ends of the main pipe are bent downward, pass through the bottom of the top frame ceiling surface, and enter the building interior, thereby avoiding additional interior decoration work after pipeline connection.

[0012] Furthermore, the above-mentioned top slope structure of the container building which is convenient for pipeline connection also includes a roof structure surface layer, and the roof structure surface layer covers the outside of the top frame, ceiling keel, pipeline keel, and slope keel.

[0013] It can be seen from the above technical scheme that the utility model has the following beneficial effects: the utility model described in the utility model is a container building top slope structure that is convenient for pipeline connection, the pipeline is integrated in the structural layer, and a smaller size of slope keel is used to find the slope on the roof, so that the overall thickness of the roof is reduced, the net height of the room is improved, and it is convenient for transportation and installation. The pipeline directly passes through the ceiling into the room, avoiding subsequent additional interior decoration work. The roof slope area is embedded in the middle of the roof, so that the building will not have an inclined edge when viewed from the facade, which is more beautiful and also solves the problem of water accumulation on the top of the container building. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 This is a schematic diagram of the top slope structure of a container building that is convenient for pipeline connection in the utility model;

[0015] Figure 2 This is a schematic diagram of the slope keel connection of the utility model;

[0016] Figure 3 It is a schematic diagram of the surface layer of the roof structure of the utility model.

[0017] In the figure: top frame 1, ceiling keel 2, pipeline keel 3, slope keel 4, pipeline 5, roof structure surface layer 6, long span beam 11, short span beam 12, corner column 13, horizontal pipeline area 31, slope area 32, main pipe 51, branch pipe 52. DETAILED DESCRIPTION

[0018] Example 1

[0019] like Figure 1-2 A container building top slope structure for convenient pipeline connection shown in FIG. 1 includes: a top frame 1, a ceiling keel 2, a pipeline keel 3, a slope keel 4, and a pipeline 5. The top frame 1 is composed of a long span beam 11, a short span beam 12, and a corner column 13. The corner column 13 is arranged between the long span beam 11 and the short span beam 12; the ceiling keel 2 is evenly arranged in the top frame 1, and the two ends of the ceiling keel 2 are connected to the long span beam 11; the pipeline keel 3 is horizontally placed on the ceiling keel 2 The top frame 1 is divided into two areas. The long span beam 11 is sunken, and the side of the pipeline keel 3 close to the long span beam 11 with a higher setting is the horizontal pipeline area 31, and the other side of the long span beam 11 sunken is the slope area 32; there are several slope keels 4, which are welded close to the ceiling keel 2 and set in the slope area 32, one end of which is connected to the long span beam 11, and the other end is connected to the pipeline keel 3; the pipeline 5 is set in the top frame 1. The pipeline 5 is pre-set and integrated in the ceiling in advance, which reduces the height dimension between the highest point of the roof and the ceiling, and achieves a slope of 2%-3%, which is beautiful and solves the problem of water accumulation. The smaller slope keels 4 are used to construct the roof slope, which is convenient for installation and transportation.

[0020] In this embodiment, the pipeline 5 includes: a main pipe 51 and a branch pipe 52. The main pipe 51 is arranged in the horizontal pipeline area 31 and installed above the ceiling keel 2. Several branch pipes 52 are arranged in the slope area 32, between the slope keels 4, and one end is connected to the main pipe 51. Convenient pipeline connection is arranged in an integrated manner, which reduces the thickness of the roof and increases the indoor net height. The branch pipe 52 descends in the horizontal pipeline area 31 and then horizontally penetrates into the slope area 32 from the lower side of the pipeline keel 3. In this way, any position of the slope area 32 can be covered.

[0021] In this embodiment, the two ends of the main pipe 51 are bent downward, passing through the bottom of the ceiling surface of the top frame 1 and entering the interior of the building, thereby avoiding additional interior decoration work after the pipeline 5 is connected.

[0022] like Figure 3 The top slope structure of a container building shown here is convenient for pipeline connection and also includes a roof structure surface layer 6, which covers the outside of the top frame 1, the ceiling keel 2, the pipeline keel 3, and the slope keel 4.

[0023] Example 2

[0024] On the basis of Example 1, in this example, Figure 1-2 A container building top slope structure is shown, which is convenient for pipeline connection. The long span beam 11 is sunken when connected to the corner column 13 in the slope area 32, and is flush with the upper surface of the corner column 13 in the transverse pipeline area 31; the ceiling keel 2 is horizontally arranged between the long span beams 11 on both sides, and the upper surface of the ceiling keel 2 is flush with the upper surface of the sunken long span beam 11; the height of the pipeline keel 3 is less than or equal to the height of the long span beam 11 minus the sunken height, and the upper surface of the pipeline keel 3 is flush with the upper surface of the long span beam 11 in the transverse pipeline area 31.

[0025] In this embodiment, the short span beam 12 is flush with the upper surfaces of the corner columns 13 at both ends, and forms a structure with a height difference on one side and a horizontal side on the other side with the long span beams 11 on both sides. The roof slope area is embedded in the roof, and the connecting surfaces at both ends are flat, so that there will be no inclined edges from the perspective of the building facade, which is more beautiful without affecting drainage.

[0026] It should be noted that the above is only a technical solution of the utility model and is not a limitation. Although the utility model is described in detail with reference to the preferred embodiments, a person skilled in the art should understand that the technical solution of the utility model can be modified or replaced by equivalents without departing from the scope of the technical solution of the utility model, which should be included in the scope of the claims of the utility model.

Claims

1. A top slope structure of a container building that facilitates pipeline connection, characterized in that: include: A top frame (1), the top frame (1) being composed of a long span beam (11), a short span beam (12), and a corner column (13), wherein the corner column (13) is arranged between the long span beam (11) and the short span beam (12); A ceiling keel (2), wherein the ceiling keel (2) is evenly arranged in the top frame (1), and both ends of the ceiling keel (2) are connected to the long span beam (11); A pipeline keel (3), wherein the pipeline keel (3) is horizontally placed above the ceiling keel (2) to divide the top frame (1) into two areas, wherein one of the long span beams (11) is sunken, and the side of the pipeline keel (3) close to the higher long span beam (11) is a horizontal pipeline area (31), and the other side of the sunken long span beam (11) is a slope area (32); A plurality of slope keels (4) are provided. The slope keels (4) are welded close to the ceiling keel (2) and arranged in the slope area (32). One end of the slope keel is connected to the long span beam (11) and the other end is connected to the pipeline keel (3). A pipeline (5), wherein the pipeline (5) is arranged in the top frame (1).

2. The top slope structure of a container building that facilitates pipeline connection according to claim 1, characterized in that: The long span beam (11) is sunken when connected to the corner column (13) in the slope area (32), and is flush with the upper surface of the corner column (13) in the transverse pipeline area (31).

3. The top slope structure of a container building that facilitates pipeline connection according to claim 1, characterized in that: The ceiling keel (2) is horizontally arranged between the long span beams (11) on both sides, and the upper surface of the ceiling keel (2) is flush with the upper surface of the long span beam (11) that is sunken.

4. The top slope structure of a container building that facilitates pipeline connection according to claim 1, characterized in that: The height of the pipeline keel (3) is less than or equal to the height of the long span beam (11) minus the sinking height, and the upper surface of the pipeline keel (3) is flush with the upper surface of the long span beam (11) in the transverse pipeline area (31).

5. The top slope structure of a container building that facilitates pipeline connection according to claim 1, characterized in that: The short span beam (12) is flush with the upper surfaces of the corner columns (13) at both ends, and together with the long span beams (11) on both sides, forms a structure with a height difference on one side and a horizontal side on the other side.

6. The top slope structure of a container building that facilitates pipeline connection according to claim 1, characterized in that: The pipeline (5) comprises a main pipe (51) and a branch pipe (52). The main pipe (51) is arranged in the horizontal pipeline area (31) and installed above the ceiling keel (2). A plurality of branch pipes (52) are arranged in the slope area (32) between the slope keel (4) and the ceiling board, and one end of the branch pipes (52) is connected to the main pipe (51).

7. The top slope structure of a container building that facilitates pipeline connection according to claim 6, characterized in that: The two ends of the main pipe (51) are bent downward, passing through the bottom of the ceiling surface of the top frame (1) and entering the interior of the building.

8. The top slope structure of a container building that facilitates pipeline connection according to claim 1, characterized in that: It also comprises a roof structure surface layer (6), wherein the roof structure surface layer (6) covers the outer sides of the top frame (1), the ceiling keel (2), the pipeline keel (3), and the slope keel (4).