Container type house frame column

By incorporating pleats and inserts on the outer side of the container house's outer tubes, the health hazards of welding and the insufficient strength of metal tubes are resolved, resulting in greater structural stability and better protection of internal items.

CN224200030UActive Publication Date: 2026-05-05HEBEI XINHENG INTEGRATED HOUSING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HEBEI XINHENG INTEGRATED HOUSING CO LTD
Filing Date
2025-04-02
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

The welding process used in existing container houses is harmful to workers' health, and the conventional metal pipes have low strength and cannot effectively protect the contents inside.

Method used

The structure employs a reinforced outer edge structure and a plug connection method. The reinforcement of the outer tube is increased by the folds, and the connection is achieved by using reinforcing rods and connecting blocks, reducing welding and improving the stability and strength of the overall frame.

Benefits of technology

It enhances the overall strength of container houses, protects workers' health, reduces the harm of welding to the human body, and effectively prevents damage to internal items.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of container house accessories, and discloses a container type house frame column which comprises an outer pipe, two connecting parts are arranged in the outer pipe, a reinforcing part is connected between the two connecting parts, the reinforcing part can be attached to the inner wall of the outer pipe, each connecting part comprises an inserting block, each inserting block comprises an attaching face, and end faces are arranged on the two sides of the outer pipe. The inserting block further comprises an inserting face, the inserting face is located on the side opposite to the attaching face, the inserting face can be inserted into the outer pipe, a ruffle protruding outwards is arranged at the bottom of the left side of the outer pipe, the reinforcing part comprises a reinforcing rod, and the reinforcing rod and the inserting block are relatively fixed. The strength of the outer pipe body is enhanced through the ruffles on the outer side of the outer pipe, the outer pipe bears more extrusion force, the overall strength of the container type house is improved, the reinforcing rods can support the inner wall of the outer pipe, the connecting parts are convenient to connect so that different frame columns can be connected together, and welding of the outer pipe is reduced.
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Description

Technical Field

[0001] This utility model relates to the technical field of container house accessories, and in particular to the frame columns of container houses. Background Technology

[0002] Container houses, also known as container converted houses or container residences, are houses that use discarded or new shipping containers as building foundations and are designed and modified to have residential or office functions. This type of housing has gradually become popular around the world in recent years, especially in the fields of temporary housing, rapid construction needs, and creative architectural design.

[0003] Existing container houses typically use welded metal tubes to form a frame, which is then covered with a skin and waterproofed. This welding method usually requires manual welding, which can easily cause health problems for workers in the long hours of welding. In addition, conventional metal tubes have low strength, making it easy for the contents of the container house to be damaged when subjected to heavy impacts from hurricanes. Utility Model Content

[0004] In order to overcome the problems of welding processes used in existing container houses being detrimental to human health, and conventional metal pipes having low strength and failing to adequately protect the items inside the container houses.

[0005] The technical solution of this utility model is as follows: a container house frame column, including an outer tube, two connecting parts inside the outer tube, and a reinforcing part connected between the two connecting parts. The reinforcing part can fit against the inner wall of the outer tube. The connecting part includes a plug, and the plug includes a fitting surface. The outer tube has end faces on both sides, and the fitting surface can fit against the end faces of the outer tube. The plug also includes an insertion surface, which is located on the side opposite to the fitting surface and can be inserted into the interior of the outer tube. The bottom left side of the outer tube has an outwardly protruding pleated edge. The reinforcing part includes a reinforcing rod, which is fixed relative to the plug. A connecting block can be inserted into the interior of the plug, and the connecting block can connect different plugs together.

[0006] Preferably, a flat-head screw is provided on the side of the outer tube with pleats. The flat-head screw can pass through the outer tube and connect to the insert block. The raw material for processing the outer tube is a round tube.

[0007] Preferably, the mating surface of the insert block is provided with a through-hole three, into which a connecting block can be inserted. The top of the connecting block is provided with two threaded holes, the top of the insert block is provided with a through hole corresponding to the threaded holes, and the top of the outer tube is provided with a clearance hole corresponding to the through hole.

[0008] Preferably, when the end faces of the two outer tubes are in contact, the two threaded holes of the connecting block can correspond to the clearance holes of the two outer tubes respectively, and the distance between the two clearance holes when the end faces of the two outer tubes are in contact is equal to the distance between the two threaded holes on the connecting block.

[0009] Preferably, the top of the plug has a countersunk hole corresponding to the position of the through hole, but the countersunk hole cannot penetrate into the socket.

[0010] Preferably, the plug has a through-hole two on the left side and the outer tube has a through-hole one on the left side. The cross-sections of the three plugs and the two plugs are the same, and the connecting block can be inserted into the two plugs.

[0011] Preferably, the top and bottom of the insert block are provided with limiting grooves, the limiting grooves cannot pass through the mating surface, and a reinforcing rod is inserted in the limiting groove. The limiting groove is a dovetail groove structure, and the reinforcing rod is a dovetail block structure.

[0012] The beneficial effects of this utility model are as follows: Compared with the container house frame structure made of ordinary metal pipes, the outer pipe body is strengthened by the pleats on the outside of the outer pipe, so that the outer pipe itself can withstand more compressive force, increasing the overall strength of the container house. The reinforcing rod can support the inner wall of the outer pipe, reducing the possibility of the outer pipe being bent or even broken. The connection part is easy to connect, so that different frame columns can be connected together, reducing the welding of the outer pipe and protecting the health of the assembly personnel. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0014] Figure 2 This is a schematic diagram of the insert structure of this utility model;

[0015] Figure 3 This is a schematic diagram of the pleated structure of this utility model;

[0016] Figure 4 This is a schematic diagram of the reinforcing rod structure of this utility model;

[0017] Figure 5 This is a schematic diagram of the limiting groove structure of this utility model.

[0018] Explanation of reference numerals in the attached drawings: 1. Outer tube; 11. Folded edge; 12. Socket one; 13. Clearance hole; 2. Insert block; 201. Fitting surface; 202. Insertion surface; 21. Socket three; 22. Socket two; 23. Countersunk hole; 231. Through hole; 24. Limiting groove; 3. Connecting block; 31. Threaded hole; 4. Reinforcing rod. Detailed Implementation

[0019] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0020] Please see Figure 1 - Figure 5 This utility model provides an embodiment of a container house frame column, including an outer tube 1. The outer tube 1 has two connecting parts inside, and a reinforcing part connects the two connecting parts. The reinforcing part can fit against the inner wall of the outer tube 1. The connecting parts include insert blocks 2, each including a contact surface 201. The outer tube 1 has end faces on both sides, and the contact surface 201 can fit against the end faces of the outer tube 1. The insert block 2 also includes an insertion surface 202, located on the side opposite to the contact surface 201. The insertion surface 202 can be inserted into the interior of the outer tube 1. The bottom left side of the outer tube 1 has an outwardly protruding pleat. The edge 11 and the reinforcing part include a reinforcing rod 4, which is fixed relative to the insert block 2. A connecting block 3 can be inserted into the insert block 2. The connecting block 3 can connect different insert blocks 2 together. The outer edge 11 of the outer tube 1 strengthens the body of the outer tube 1, so that the outer tube 1 itself can withstand more compressive force and increase the overall strength of the container house. The reinforcing rod 4 can support the inner wall of the outer tube 1, reducing the possibility of the outer tube 1 being bent or even broken. The connecting part facilitates the connection of different frame columns, reduces the welding of the outer tube 1, and protects the health of the assembly personnel.

[0021] Please see Figure 1 - Figure 4 In this embodiment, a flat-head screw is provided on the side of the outer tube 1 with the pleated edge 11. The flat-head screw can pass through the outer tube 1 and connect to the insert block 2. The outer tube 1 is made of round tube. The flat-head screw fixes the outer tube 1 and the insert block 2 to prevent the insert block 2 from sliding inside the outer tube 1. At the same time, the flat-head screw is located on the side with the pleated edge 11 to reduce the protrusions on the other three sides of the outer tube 1 and increase the flatness of the connection. The outer tube 1 formed by bending the round tube has stronger stability than the welded reinforcement edge. The contact surface 201 of the insert block 2 has a through insertion port 3 21. The connecting block 3 can be inserted into the insertion port 3 21. The top of the connecting block 3 has two The connecting block 3 has a threaded hole 31, and the top of the insert 2 has a through hole 231 corresponding to the threaded hole 31. The top of the outer tube 1 has a clearance hole 13 corresponding to the through hole 231. The insert 3 21 facilitates the relative connection of different outer tubes 1. When the end faces of the two outer tubes 1 are in contact, the two threaded holes 31 of the connecting block 3 can correspond to the clearance holes 13 of the two outer tubes 1 respectively. The distance between the two clearance holes 13 when the end faces of the two outer tubes 1 are in contact is equal to the distance between the two threaded holes 31 on the connecting block 3. By setting the spacing of the threaded holes 31 on both sides of the connecting block 3, the connection of different inserts 2 is made tighter and gaps are reduced.

[0022] Please see Figure 2 - Figure 5In this embodiment, the top of the insert 2 has a countersunk hole 23 corresponding to the position of the through hole 231. The countersunk hole 23 cannot penetrate into the socket 21. The countersunk hole 23 facilitates the concealment of the screw head of the countersunk screw on the top of the insert 2, so that the top of the outer tube 1 does not protrude, increasing the convenience of installation and connection. The left side of the insert 2 has a through socket 22, and the left side of the outer tube 1 has a through socket 12. The cross-sections of the socket 31 and the socket 22 are the same, and the connecting block 3 can be inserted into the socket 22. The socket 12 facilitates the insertion of the connecting block 3 from the side of the outer tube 1 into the socket 22, increasing the connection methods of the outer tube 1 and making the frame column suitable for the construction of container houses. The cross-sections of connector 3 (21) and connector 2 (22) are the same, increasing the versatility of connector 3 and reducing the variety of different parts. Connector 2 has limiting grooves 24 at its top and bottom. These limiting grooves 24 cannot pass through the mating surface 201. A reinforcing rod 4 is inserted into the limiting groove 24. The limiting groove 24 has a dovetail groove structure, and the reinforcing rod 4 has a dovetail block structure. The dovetail groove structure of the limiting groove 24 and the dovetail block structure of the reinforcing rod 4 reduce the possibility of the reinforcing rod 4 falling out of the limiting groove 24, allowing it to be pulled out only by removing the flat-head screw, thus increasing the stability of the connection. The limiting groove 24 cannot pass through the mating surface 201, preventing the reinforcing rod 4 from falling out through the limiting groove 24.

[0023] During operation, a round tube is first bent onto a shaping device to form a frame structure with pleats 11. Reinforcing rods 4 are inserted into the limiting grooves 24 of the insert block 2, so that one insert block 2 contains four reinforcing rods 4. Then, the reinforcing rods 4, with their ends connected to the insert blocks 2, are inserted into the outer tube 1. Flat-head screws are then used to fix the insert blocks 2 through the outer tube 1, preventing relative movement between the outer tube 1 and the insert blocks 2. This allows the reinforcing rods 4 to abut against the inner wall of the outer tube 1, increasing the overall strength of the outer tube 1. When the outer tube 1 is subjected to external impact, the reinforcing rods 4 can bear part of the force, preventing damage to items inside the container house. When extending and connecting the outer tube 1, the connecting block 3 passes through the insert block 2 inside the different outer tubes 1, specifically at the insertion port 21 of the insert block 2. A cylindrical head screw passes through the countersunk hole 23, through hole 231 and connects to the threaded hole 31 of the connecting block 3. The countersunk hole 23 hides the screw head of the cylindrical head screw to prevent it from protruding. When it is necessary to connect the side of the outer tube 1, the connecting block 3 passes through the insertion port 12 and insertion port 22 and fixes the insert block 2 in the same way as above. The frame of the container house can be built through this connection and fixing method. Then, the whole body is covered and waterproofed. The shaping device here is existing technology.

[0024] Through the above steps, the pleats 11 on the outer side of the outer tube 1 strengthen the body of the outer tube 1, enabling the outer tube 1 to withstand more compressive force and increasing the overall strength of the container house. The reinforcing rod 4 can support the inner wall of the outer tube 1, reducing the possibility of the outer tube 1 being bent or even broken. The connecting part facilitates the connection of different frame columns together, reducing the welding of the outer tube 1 and protecting the health of assembly personnel. This solves the problem that the welding process used in the container house in the prior art is not conducive to human health, and that conventional metal pipes have low strength and cannot effectively protect the items inside the container house.

Claims

1. Container house frame columns, characterized in that: The device includes an outer tube (1), which has two connecting parts inside. A reinforcing part is connected between the two connecting parts. The reinforcing part can fit against the inner wall of the outer tube (1). The connecting part includes a plug (2). The plug (2) has a fitting surface (201) which is used to fit against the end face of the outer tube (1). The plug (2) also includes an insertion surface (202). The insertion surface (202) is located on the side opposite to the fitting surface (201). The insertion surface (202) can be inserted into the interior of the outer tube (1). The bottom left side of the outer tube (1) has an outwardly protruding pleated edge (11). The reinforcing part includes a reinforcing rod (4). The reinforcing rod (4) is fixed relative to the plug (2). A connecting block (3) can be inserted into the interior of the plug (2). The connecting block (3) can connect different plugs (2) together.

2. The container house frame column according to claim 1, characterized in that: The outer tube (1) has a flat-head screw on one side with a pleated edge (11). The flat-head screw can pass through the outer tube (1) and connect to the insert (2). The raw material for processing the outer tube (1) is a round tube.

3. The container house frame column according to claim 2, characterized in that: The insert (2) has a through socket (21) at the mating surface (201), into which a connecting block (3) can be inserted. The top of the connecting block (3) has two threaded holes (31), the top of the insert (2) has a through hole (231) corresponding to the threaded hole (31), and the top of the outer tube (1) has a clearance hole (13) corresponding to the through hole (231).

4. The container house frame column according to claim 3, characterized in that: When the end faces of the two outer tubes (1) are in contact, the two threaded holes (31) of the connecting block (3) can correspond to the clearance holes (13) of the two outer tubes (1) respectively. The distance between the two clearance holes (13) when the end faces of the two outer tubes (1) are in contact is equal to the distance between the two threaded holes (31) on the connecting block (3).

5. The container house frame column according to claim 4, characterized in that: The top of the insert (2) is provided with a countersunk hole (23) at the position corresponding to the through hole (231). The countersunk hole (23) cannot be inserted into the socket (21).

6. The container house frame column according to claim 5, characterized in that: The plug (2) has a through-hole two (22) on the left side, and the outer tube (1) has a through-hole one (12) on the left side. The cross sections of the plug three (21) and the plug two (22) are the same, and the connecting block (3) can be inserted into the plug two (22).

7. The container house frame column according to claim 6, characterized in that: The top and bottom of the insert (2) are respectively provided with limiting grooves (24). The limiting grooves (24) cannot pass through the mating surface (201). A reinforcing rod (4) is inserted in the limiting grooves (24). The limiting grooves (24) are dovetail groove structures, and the reinforcing rod (4) is a dovetail block structure.