Auxiliary connecting structure of container house

By using a container house auxiliary connection structure, which consists of a connector made up of a base plate, beams, adjustment seats, and connecting columns, the problem of unstable side wall fixation when connecting the container house to the underlying building is solved, achieving higher installation stability and security.

CN224259607UActive Publication Date: 2026-05-19PETROCHINA JINBO NEW ENERGY TECHNOLOGY (HENAN) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
PETROCHINA JINBO NEW ENERGY TECHNOLOGY (HENAN) CO LTD
Filing Date
2025-05-26
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

When existing container houses are connected to the underlying buildings, there is a lack of effective restraint and fixation on the side walls of the container houses, resulting in poor fixation.

Method used

The connector consists of a base plate, beam plate, adjusting seat, connecting sleeve, connecting column and support plate. The base plate is fixed by expansion bolts, and the support plate is supported by the beam plate, adjusting seat and connecting column to support the bottom and side walls of the container house. The side plates and mounting screws are used for limiting and fixing, and the reinforcing ribs are combined to improve the structural strength and stability.

Benefits of technology

This improves the installation strength and stability between the container house and the underlying building, reduces the installation difficulty and precision requirements, and ensures the safety and stability of the connection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of container house assembly, and discloses a container house auxiliary connecting structure which comprises a bottom layer building, a container house body arranged above the bottom layer building and four connectors used for connecting and reinforcing the bottom layer building and the container house body. The base plate is fixedly installed on the outer wall of a bottom-layer building through expansion bolts, and the beam plate is welded to the side, away from the bottom-layer building, of the base plate. According to the auxiliary connecting structure of the container house, the bottom-layer building and the container house body are connected and reinforced through the connectors, when the connectors are used, the base plates are fixedly installed on the outer wall of the bottom-layer building through expansion bolts, then the supporting plates are supported through the beam plates, the adjusting bases and the connecting columns, and the bottom of the container house body is supported through the supporting plates; and the first side plates and the second side plates are used for abutting against and limiting the side walls of the box room body, and therefore the firmness and stability of installation between the bottom-layer building and the box room body are improved.
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Description

Technical Field

[0001] This utility model relates to the field of container house assembly technology, and more specifically to an auxiliary connection structure for container houses. Background Technology

[0002] Container houses are another architectural system that is making waves in the fashion world. They can be moved to various locations anytime, anywhere, bringing people a more convenient and comfortable life. Currently, in order to quickly expand their living space, people often place container houses directly on top of a brick-walled building, and then use connecting structures to connect and fix the container houses to the building.

[0003] Currently, when using connecting structures to connect container houses and the underlying buildings, the structures typically used are simple triangular braces that support the bottom of the container house on the top side. This lacks the effect of limiting and fixing the side walls of the container house, resulting in poor fixing performance during use.

[0004] In view of this, the present invention proposes an auxiliary connection structure for container houses. Utility Model Content

[0005] In order to overcome the above-mentioned defects of the prior art, the present invention provides an auxiliary connection structure for container houses to solve the problems existing in the background art.

[0006] This utility model provides the following technical solution: an auxiliary connection structure for a container house, including a ground floor building, a container house body installed above the ground floor building, and four connectors for connecting and reinforcing the ground floor building and the container house body. Each connector includes a base plate, which is fixedly installed on the outer wall of the ground floor building by expansion bolts. A beam plate is welded to the side of the base plate away from the ground floor building. An adjustment seat is provided on the upper surface of the beam plate. A connecting sleeve is provided on the top of the adjustment seat. A connecting column is provided on the top of the connecting sleeve. A support plate is provided on the top of the connecting column. The upper surface of the support plate abuts against the bottom side of the container house body. A first side plate is welded to one end of the support plate, which abuts against the side of the container house body. A second side plate is welded to the front of the support plate, which abuts against the front of the container house body.

[0007] Furthermore, a reinforcing rib is welded to the bottom end of the beam plate, and the other end of the reinforcing rib is welded and fixed to the surface of the base plate.

[0008] As a further description of the above technical solution: by setting reinforcing ribs, the structural strength and support stability of the beam and slab can be improved.

[0009] Furthermore, the adjusting seat is movably connected to the beam plate, and a first limiting slide groove is longitudinally opened on the upper surface of the beam plate. The adjusting seat slides inside the first limiting slide groove. A first locking screw is threadedly connected to the left side of the adjusting seat. The end of the first locking screw abuts against the inner wall of the first limiting slide groove. A plurality of first positioning holes are opened on the inner wall of the first limiting slide groove for the first locking screw to be inserted.

[0010] As a further description of the above technical solution: the beam plate can be moved back and forth by adjusting the seat and the beam plate, so that the second side plate is pressed against the front or back of the container body, which can adapt to container bodies with different longitudinal spacing. After adjustment, the first locking screw is used to lock it.

[0011] Furthermore, the top of the connecting sleeve is provided with a telescopic groove, the connecting column is vertically slidably connected inside the telescopic groove, and a height adjustment component is provided between the connecting sleeve and the connecting column. The height adjustment component includes a first inclined plate fixedly installed at the bottom end of the connecting column, an adjusting screw rotatably connected to the surface of the connecting sleeve, a second inclined plate threadedly connected to the surface of the adjusting screw, the second inclined plate being slidably connected to the inner wall of the telescopic groove, the surfaces of the first and second inclined plates slidingly contacting each other, and a T-shaped groove being provided on the surface of the second inclined plate, a T-shaped slider being fixedly installed on the surface of the first inclined plate, and the T-shaped slider being slidably connected to the T-shaped groove.

[0012] As a further description of the above technical solution: by setting a height adjustment component, the first inclined plate and the second inclined plate are slid by rotating the adjustment screw, thereby adjusting the height of the connecting column and the support plate, thereby reducing the requirements of the substrate for the installation height and reducing the installation difficulty. Furthermore, the T-shaped slider and the T-shaped groove are used for sliding connection to prevent the first inclined plate and the second inclined plate from separating from each other.

[0013] Furthermore, the support plate and the connecting column are movably connected. The top of the connecting column is provided with a second limiting groove. The support plate is slidably connected inside the second limiting groove. The front of the connecting column is threadedly connected with a second locking screw. The threaded end of the second locking screw abuts against the surface of the support plate. The surface of the support plate is provided with a plurality of second positioning holes for the second locking screw to be inserted.

[0014] As a further description of the above technical solution: by movably connecting the support plate and the connecting column, the position of the support plate can be slid left and right as needed to adapt and adjust the position of the first side plate, thereby reducing the accuracy requirements during substrate installation. After the adjustment is completed, the second locking screw is used to lock it.

[0015] Furthermore, the surface of the first side plate is provided with a first mounting screw for connecting and fixing to the side wall of the container body.

[0016] As a further description of the above technical solution: by setting the first mounting screw, the purpose of fixing the first side plate to the container body can be achieved.

[0017] Furthermore, a second mounting screw for connecting to the outer wall of the container body is inserted into the surface of the second side plate.

[0018] As a further description of the above technical solution: by setting a second mounting screw, the purpose of fixing the second side panel to the container body can be achieved.

[0019] The technical effects and advantages of this utility model are as follows:

[0020] 1. Compared with the prior art, the auxiliary connection structure of this container house uses connectors to connect and reinforce the bottom building and the container house body. When the connectors are used, the base plate is fixed to the outer wall of the bottom building using expansion bolts. Then, the support plate is supported by beams, adjusting seats and connecting columns. The support plate supports the bottom of the container house body. The first side plate and the second side plate are used to tighten and limit the side walls of the container house body, thereby improving the firmness and stability of the installation between the bottom building and the container house body.

[0021] 2. Compared with existing technologies, this auxiliary connection structure for container houses, through the addition of reinforcing ribs, can improve the structural strength and support stability of the beams and slabs; the adjustable seat, movably connected to the beams and slabs, allows the beams and slabs to be moved back and forth, so that the second side plate abuts against the front or back of the container body, accommodating container bodies with different longitudinal spacings. After adjustment, the first locking screw is used for locking; by incorporating a height adjustment component, rotating the adjusting screw causes the first and second inclined plates to slide, adjusting the height of the connecting columns and support plates, thereby reducing the installation height requirements of the base plate and reducing installation difficulty. Furthermore, the T-shaped slider and T-slot sliding connection prevent the first and second inclined plates from detaching from each other; the support plate and connecting column are movably connected, allowing the support plate to slide left and right as needed to adjust the position of the first side plate, thereby reducing the precision requirements during base plate installation. After adjustment, the second locking screw is used for locking; the first mounting screw is used to fix the first side plate to the container body; the second mounting screw is used to fix the second side plate to the container body. Attached Figure Description

[0022] Figure 1 This is a schematic diagram of the installation structure of this utility model;

[0023] Figure 2 This is a three-dimensional structural diagram of the connector of this utility model;

[0024] Figure 3This is a schematic diagram of the beam-slab cross section of this utility model;

[0025] Figure 4 This is a side sectional view of the connecting sleeve of this utility model.

[0026] The attached figures are labeled as follows: 1. Connector; 2. Ground floor structure; 3. Container house body; 4. Base plate; 5. Expansion bolt; 6. Beam plate; 7. Adjusting seat; 8. Connecting sleeve; 9. Connecting column; 10. Support plate; 11. First side plate; 12. Second mounting screw; 13. Second side plate; 14. Reinforcing rib; 15. First locking screw; 16. First inclined plate; 17. Adjusting screw; 18. Second inclined plate; 19. T-slot; 20. T-slider; 21. Second locking screw; 22. First mounting screw. Detailed Implementation

[0027] The technical solution of this utility model will be clearly and completely described below with reference to the accompanying drawings. In addition, the forms of the various structures described in the following embodiments are merely illustrative. The auxiliary connection structure for container houses involved in this utility model is not limited to the structures described in the following embodiments. All other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0028] Reference Figures 1 to 4 This utility model provides an auxiliary connection structure for a container house, including a ground floor structure 2, a container house body 3 disposed above the ground floor structure 2, and four connectors 1 for connecting and reinforcing the ground floor structure 2 and the container house body 3. Each connector 1 includes a base plate 4, which is fixedly installed on the outer wall of the ground floor structure 2 by expansion bolts 5. A beam plate 6 is welded and installed on the side of the base plate 4 away from the ground floor structure 2. An adjustment seat 7 is provided on the upper surface of the beam plate 6. A connecting sleeve 8 is provided on the top of the adjustment seat 7. A connecting column 9 is provided on the top of the connecting sleeve 8. A support plate 10 is provided on the top of the connecting column 9. The upper surface of the support plate 10 abuts against the bottom side of the container house body 3. A first side plate 11 is welded to one end of the support plate 10, which abuts against the side of the container house body 3. A second side plate 13 is welded to the front of the support plate 10, which abuts against the front of the container house body 3.

[0029] The auxiliary connection structure of this container house uses connector 1 to connect and reinforce the bottom building 2 and the container house body 3. When connector 1 is in use, expansion bolts 5 are used to fix the base plate 4 to the outer wall of the bottom building 2. Then, the beam plate 6, the adjusting seat 7 and the connecting column 9 are used to support the support plate 10. The support plate 10 is used to support the bottom of the container house body 3, and the first side plate 11 and the second side plate 13 are used to tighten and limit the side walls of the container house body 3, thereby improving the firmness and stability of the installation between the bottom building 2 and the container house body 3, and ensuring the safety of the container house during use.

[0030] The surface of the first side plate 11 is provided with a first mounting screw 22 for connecting and fixing to the side wall of the container body 3.

[0031] The surface of the second side plate 13 is provided with a second mounting screw 12 for connecting to the outer wall of the container body 3.

[0032] By setting the first mounting screw 22, the first side plate 11 can be fixed to the container body 3. By setting the second mounting screw 12, the second side plate 13 can be fixed to the container body 3.

[0033] A reinforcing rib 14 is welded to the bottom end of the beam plate 6, and the other end of the reinforcing rib 14 is welded and fixed to the surface of the base plate 4.

[0034] By setting the reinforcing ribs 14, the structural strength and support stability of the beam slab 6 can be improved.

[0035] The adjusting seat 7 is movably connected to the beam plate 6. The upper surface of the beam plate 6 is longitudinally provided with a first limiting slide groove. The adjusting seat 7 slides inside the first limiting slide groove. The left side of the adjusting seat 7 is threadedly connected with a first locking screw 15. The end of the first locking screw 15 abuts against the inner wall of the first limiting slide groove. The inner wall of the first limiting slide groove is provided with several first positioning holes for the first locking screw 15 to be inserted.

[0036] The adjusting seat 7 is movably connected to the beam plate 6, allowing the beam plate 6 to be moved back and forth during installation so that the second side plate 13 abuts against the front or back of the container body 3, adapting to container bodies 3 with different longitudinal spacings. After adjustment, the first locking screw 15 is used to lock it.

[0037] It is worth noting that after installation, an external welding machine can be used to weld and fix the adjusting seat 7 and the beam plate 6 together to enhance the firmness.

[0038] The top of the connecting sleeve 8 is provided with a telescopic groove, the connecting post 9 is vertically slidably connected inside the telescopic groove, and a height adjustment component is provided between the connecting sleeve 8 and the connecting post 9.

[0039] The height adjustment assembly includes a first inclined plate 16 fixedly installed at the bottom of the connecting column 9, an adjusting screw 17 rotatably connected to the surface of the connecting sleeve 8, a second inclined plate 18 threadedly connected to the surface of the adjusting screw 17, the second inclined plate 18 slidably connected to the inner wall of the telescopic groove, the surfaces of the first inclined plate 16 and the second inclined plate 18 slidingly contacting each other, and a T-slot 19 is provided on the surface of the second inclined plate 18, and a T-slider 20 is fixedly installed on the surface of the first inclined plate 16, and the T-slider 20 is slidably connected to the T-slot 19.

[0040] By setting up a height adjustment component, rotating the adjusting screw 17 causes the first inclined plate 16 and the second inclined plate 18 to slide, thereby adjusting the height of the connecting column 9 and the support plate 10, reducing the installation height requirements of the base plate 4, reducing the installation difficulty, and using the T-shaped slider 20 and the T-shaped groove 19 to slide and connect, preventing the first inclined plate 16 and the second inclined plate 18 from separating from each other.

[0041] It is worth noting that after installation, an external welding machine can be used to weld and fix the connecting column 9 and the connecting sleeve 8 to enhance the firmness.

[0042] The support plate 10 and the connecting column 9 are movably connected. The top of the connecting column 9 is provided with a second limiting groove. The support plate 10 is slidably connected inside the second limiting groove. The front of the connecting column 9 is threadedly connected with a second locking screw 21. The threaded end of the second locking screw 21 abuts against the surface of the support plate 10. The surface of the support plate 10 is provided with a number of second positioning holes for the second locking screw 21 to be inserted.

[0043] The support plate 10 is movably connected to the connecting column 9, and the position of the support plate 10 can be slid left and right as needed to adapt and adjust the position of the first side plate 11, thereby reducing the accuracy requirements when installing the base plate 4. After the adjustment is completed, the second locking screw 21 is used to lock it.

[0044] It is worth noting that after installation, an external welding machine can be used to weld and fix the support plate 10 and the connecting column 9 to enhance the firmness.

[0045] Finally, it should be noted that the accompanying drawings of the embodiments disclosed in this utility model only involve the structures involved in the embodiments disclosed in this utility model. Other structures can refer to the general design. In the absence of conflict, the same embodiment and different embodiments of this utility model can be combined with each other.

Claims

1. A container house auxiliary connection structure, comprising a ground floor structure (2), a container house body (3) disposed above the ground floor structure (2), and four connectors (1) for connecting and reinforcing the ground floor structure (2) and the container house body (3), characterized in that: The connector (1) includes a base plate (4), which is fixedly installed on the outer wall of the ground floor building (2) by expansion bolts (5). A beam plate (6) is welded to the side of the base plate (4) away from the ground floor building (2). An adjustment seat (7) is provided on the upper surface of the beam plate (6). A connecting sleeve (8) is provided on the top of the adjustment seat (7). A connecting column (9) is provided on the top of the connecting sleeve (8). A support plate (10) is provided on the top of the connecting column (9). The upper surface of the support plate (10) abuts against the bottom side of the container house body (3). A first side plate (11) is welded to one end of the support plate (10). The first side plate (11) abuts against the side of the container house body (3). A second side plate (13) is welded to the front of the support plate (10). The second side plate (13) abuts against the front of the container house body (3).

2. The auxiliary connection structure for a container house according to claim 1, characterized in that: The bottom end of the beam (6) is welded with a reinforcing rib (14), and the other end of the reinforcing rib (14) is welded and fixed to the surface of the base plate (4).

3. The auxiliary connection structure for a container house according to claim 1, characterized in that: The adjusting seat (7) is movably connected to the beam plate (6). The upper surface of the beam plate (6) is longitudinally provided with a first limiting slide groove. The adjusting seat (7) slides inside the first limiting slide groove. The left side of the adjusting seat (7) is threadedly connected with a first locking screw (15). The end of the first locking screw (15) abuts against the inner wall of the first limiting slide groove. The inner wall of the first limiting slide groove is provided with several first positioning holes for the first locking screw (15) to be inserted.

4. The auxiliary connection structure for a container house according to claim 1, characterized in that: The top of the connecting sleeve (8) is provided with a telescopic groove, the connecting column (9) is vertically slidably connected inside the telescopic groove, and a height adjustment component is provided between the connecting sleeve (8) and the connecting column (9).

5. The auxiliary connection structure for a container house according to claim 4, characterized in that: The height adjustment assembly includes a first inclined plate (16) fixedly installed at the bottom of the connecting column (9), an adjusting screw (17) rotatably connected to the surface of the connecting sleeve (8), a second inclined plate (18) threadedly connected to the surface of the adjusting screw (17), the second inclined plate (18) slidingly connected to the inner wall of the telescopic groove, the surfaces of the first inclined plate (16) and the second inclined plate (18) slidingly contacting each other, and a T-groove (19) is provided on the surface of the second inclined plate (18), and a T-slider (20) is fixedly installed on the surface of the first inclined plate (16), and the T-slider (20) slidingly connected to the T-groove (19).

6. The auxiliary connection structure for a container house according to claim 1, characterized in that: The support plate (10) and the connecting column (9) are movably connected. The top of the connecting column (9) is provided with a second limiting groove. The support plate (10) is slidably connected inside the second limiting groove. The front of the connecting column (9) is threadedly connected with a second locking screw (21). The threaded end of the second locking screw (21) abuts against the surface of the support plate (10). The surface of the support plate (10) is provided with several second positioning holes for the second locking screw (21) to be inserted.

7. The auxiliary connection structure for a container house according to claim 1, characterized in that: The surface of the first side plate (11) is provided with a first mounting screw (22) for connecting and fixing to the side wall of the container body (3).

8. The auxiliary connection structure for a container house according to claim 1, characterized in that: The surface of the second side plate (13) is provided with a second mounting screw (12) for connecting to the outer wall of the container body (3).