Quakeproof supporting structure for container house

The support structure, consisting of counterweights, I-beams, and triangular connecting steel blocks, solves the stability problem of container houses during earthquakes, achieving higher seismic performance and convenient transportation.

CN223675916UActive Publication Date: 2025-12-16GUANGDONG SIDI CONSTR TECH CO LTD
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Patent Information

Application Number
CN202520257510.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-18
Publication Date
2025-12-16
Estimated Expiration
2035-02-18

AI Technical Summary

Technical Problem

Container houses lack effective earthquake resistance measures during earthquakes, resulting in poor safety performance and inconvenient transportation.

Method used

A stable support foundation is formed by counterweights, upper and lower H-beams, and long threaded rods. Combined with triangularly distributed seismic right-angle connecting steel blocks and rope system, the structural stability is enhanced. Anchors and C-shaped guide plates are used to improve fixation and seismic resistance.

Benefits of technology

It effectively disperses earthquake energy, reduces the extent of damage to container houses, enhances the convenience of transportation and installation, and improves overall stability and wind resistance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of container houses, in particular to a quakeproof supporting structure for a container house, which comprises a supporting mechanism, the top end of the supporting mechanism is connected with a connecting bottom plate, and a stable supporting foundation is formed by arranging a balancing weight, upper I-shaped transverse steel, lower I-shaped transverse steel and a long threaded rod. The weight of the container house is effectively dispersed to the ground, the overall stability is enhanced, a triangular distribution structure is formed by the first anti-seismic right-angle connecting steel blocks, the solid steel and the second anti-seismic right-angle connecting steel blocks, and the first anti-seismic right-angle connecting steel blocks, the solid steel and the second anti-seismic right-angle connecting steel blocks are rotationally connected, so that the structure has certain deformation capacity under the action of external force such as earthquakes, and the overall stability is improved. The earthquake energy is absorbed and dispersed, the damage degree of the container house is reduced, the triangular connecting steel and the rope system are arranged at the four corners of the container house, extra support is provided for the container house, and the container house can be fixed and pulled conveniently in the transportation, installation and maintenance processes.
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Description

TECHNICAL FIELD

[0001] The utility model relates to container house technical field, concretely is a kind of container house shockproof support structure. BACKGROUND

[0002] Container house, also called container house, container house, container house, refers to the container as the basis material mainly slightly to become the house with window with door, this kind of container house is often seen in construction site as worker's dormitory use, also some people do as rental house use, solid durable, most container houses are usually fixed on the ground directly, when earthquake occurs, cannot well fixed house, the effect of the shock resistance of container house is poor, cannot have a protection effect to house, reduce the safety performance of house, and because the volume of container house is larger, inconvenient to transport. SUMMARY

[0003] The utility model discloses a kind of container house shockproof support structure, to solve the problem raised in above background technology.

[0004] To achieve the above object, the utility model provides the following technical scheme: including support mechanism, the support mechanism top end is connected with the connection bottom plate being arranged, the connection bottom plate top end is connected with the container house being arranged, the container house one side is hingedly arranged with the door plate, the container house one side is connected with the window being arranged, the container house four corners are connected with the triangular connection steel being arranged;

[0005] The support mechanism includes counterweight arranged in soil, the counterweight top end is connected with the upper I-beam being arranged, the counterweight bottom end is connected with the lower I-beam being arranged, the upper I-beam and the lower I-beam are connected with long screw rod being arranged between, the upper I-beam top end one side is connected with the connection steel plate being arranged, the connection steel plate top end is connected with the first shock resistance right-angle connection steel block being arranged, the first shock resistance right-angle connection steel block is rotatably arranged with solid steel in interior, the solid steel top end is rotatably arranged with the second shock resistance right-angle connection steel block, the second shock resistance right-angle connection steel block top end is connected with the connection bottom plate bottom end being arranged.

[0006] Preferably, long screw rod penetrates upper I-beam and lower I-beam, and is threadedly provided with nut at its upper end and lower end respectively.

[0007] Preferably, the first shock resistance right-angle connection steel block, solid steel and the second shock resistance right-angle connection steel block are arranged as three groups, and are triangularly distributed, wherein a group of first shock resistance right-angle connection steel block, solid steel and the second shock resistance right-angle connection steel block are directly connected and arranged on the upper I-beam.

[0008] Preferably, the connection bottom plate one side is connected with the connecting block being arranged, the connecting block interior is slidably arranged with anchor body, the anchor body top end is connected with the backing plate being arranged.

[0009] Preferably, the connecting bottom plate top end connection is provided with a square block, rotating rods are arranged between the square blocks, ropes are arranged around the rotating rods, and four groups of the square blocks, rotating rods and ropes are arranged corresponding to the four corners of the container house.

[0010] Preferably, the triangular connecting steel top end is provided with a connecting hole corresponding to the rope.

[0011] Preferably, the container house is provided with a C-shaped flow guide plate.

[0012] Compared with the prior art, the beneficial effects of the utility model are that: through the arrangement of the counterweight block, the upper I-shaped horizontal steel, the lower I-shaped horizontal steel and the long threaded rod, a stable support foundation is formed, the weight of the container house is effectively dispersed to the ground, the overall stability is enhanced, the triangular distribution structure composed of the first anti-seismic right-angle connecting steel block, the solid steel and the second anti-seismic right-angle connecting steel block and the rotating connection therebetween allow the structure to have a certain deformation capacity under the action of external forces such as earthquakes, thereby absorbing and dispersing the earthquake energy, reducing the damage degree of the container house, and the triangular connecting steel and the rope system arranged at the four corners of the container house not only provide additional support for the container house, but also facilitate the fixing and traction of the container house during transportation, installation and maintenance. BRIEF DESCRIPTION OF DRAWINGS

[0013] Figure 1 It is a front view structural schematic diagram of a kind of container house shockproof support structure;

[0014] Figure 2 It is a side view structural schematic diagram of a kind of container house shockproof support structure;

[0015] Figure 3 It is a support mechanism front view schematic diagram of a kind of container house shockproof support structure;

[0016] Figure 4 It is a support mechanism plan schematic diagram of a kind of container house shockproof support structure.

[0017] In the drawing: 1, support mechanism;110, counterweight block;111, upper I-shaped horizontal steel;112, lower I-shaped horizontal steel;113, long threaded rod;114, nut;115, connecting steel plate;116, first anti-seismic right-angle connecting steel block;117, solid steel;118, second anti-seismic right-angle connecting steel block;2, connecting bottom plate;3, connecting block;31, anchor body;32, backing plate;4, container house;41, door panel;42, window;5, triangular connecting steel;51, connecting hole;6, square block;7, rotating rod;8, rope;9, C-shaped flow guide plate. DETAILED DESCRIPTION

[0018] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative efforts belong to the scope of the present application.

[0019] Please refer to Figures 1-4 The present application provides a technical scheme, which comprises a supporting mechanism 1, the top end of the supporting mechanism 1 is connected with a connecting bottom plate 2, the top end of the connecting bottom plate 2 is connected with a container house 4, one side of the container house 4 is hingedly provided with a door plate 41, one side of the container house 4 is connected with a window 42, and the four corners of the container house 4 are connected with triangular connecting steels 5.

[0020] The supporting mechanism 1 comprises a counterweight 110 arranged in the soil, the top end of the counterweight 110 is connected with an upper I-shaped horizontal steel 111, the bottom end of the counterweight 110 is connected with a lower I-shaped horizontal steel 112, a long threaded rod 113 is arranged between the upper I-shaped horizontal steel 111 and the lower I-shaped horizontal steel 112, one side of the top end of the upper I-shaped horizontal steel 111 is connected with a connecting steel plate 115, the top end of the connecting steel plate 115 is connected with a first anti-seismic right-angle connecting steel block 116, a solid steel 117 is rotatably arranged in the first anti-seismic right-angle connecting steel block 116, the top end of the solid steel 117 is rotatably connected with a second anti-seismic right-angle connecting steel block 118, and the top end of the second anti-seismic right-angle connecting steel block 118 is connected to the bottom end of the connecting bottom plate 2, which has the effect that the arrangement of the counterweight 110 significantly increases the weight of the supporting structure, thereby improving the ability of the supporting structure to resist external forces (such as wind force, earthquake force, etc.), and enhancing the stability of the overall structure. The rotating connection structure composed of the first anti-seismic right-angle connecting steel block 116, the solid steel 117 and the second anti-seismic right-angle connecting steel block 118 allows a certain deformation under the action of external forces such as earthquakes, thereby absorbing and dispersing earthquake energy and reducing the impact on the structure.

[0021] The long threaded rod 113 penetrates through the upper I-shaped horizontal steel 111 and the lower I-shaped horizontal steel 112, and is threadedly provided with a nut 114 at the upper end and the lower end thereof, which has the effect that the long threaded rod 113 serves as a connecting piece to firmly connect the upper I-shaped horizontal steel 111 and the lower I-shaped horizontal steel 112 together, thereby forming a stable frame structure. This connection mode not only enhances the rigidity of the entire supporting structure, but also improves the ability of the supporting structure to resist external loads.

[0022] The first anti-seismic right-angle connecting steel block 116, the solid steel 117 and the second anti-seismic right-angle connecting steel block 118 are arranged in three groups and in a triangular distribution, and one group of the first anti-seismic right-angle connecting steel block 116, the solid steel 117 and the second anti-seismic right-angle connecting steel block 118 are directly connected and arranged on the upper I-shaped horizontal steel 111, which functions to, when a natural disaster such as an earthquake occurs, the structure will be impacted and vibrated from multiple directions. The anti-seismic connecting piece arranged in a triangular distribution can more effectively absorb and disperse these energies, reducing the damage to the structure. In addition, the rotating design of the solid steel 117 allows the connecting piece to deform to a certain extent during an earthquake, thereby further absorbing seismic energy.

[0023] The connecting block 3 is arranged on one side of the connecting bottom plate 2, and an anchor body 31 is slidably arranged in the connecting block 3. A pad plate 32 is arranged at the top end of the anchor body 31. When installing, the operator directly inserts the anchor body 31 into the ground, and then embeds the anchor body 31 into the ground by hammering the pad plate 32, which is convenient for installation and can also enhance the anti-seismic capability of the support structure 1.

[0024] The square block 6 is arranged at the top end of the connecting bottom plate 2, and a rotating rod 7 is rotatably arranged between the square blocks 6. A rope 8 is arranged around the surface of the rotating rod 7. Four groups of the square block 6, the rotating rod 7 and the rope 8 are arranged corresponding to the four corners of the container house 4. The square block 6, the rotating rod 7 and the rope 8 serve as auxiliary structures of the overall structure, which can stably fix the container house 4 on the bottom plate 2. The length of the rope 8 is just the height from the connecting hole 51 to the rotating rod 7, which increases the tension of the rope 8 and reduces the up-and-down movement of the container house 4.

[0025] The connecting hole 51 is arranged at the top end of the triangular connecting steel 5 corresponding to the rope 8. The design of the connecting hole 51 allows the rope 8 to easily pass through and be fixed on the triangular connecting steel 5. This connection method not only simplifies the installation process, but also improves the connection strength and stability between the rope and the connecting steel. By connecting the rope 8 to the triangular connecting steel 5, a more stable support structure can be formed, which helps to resist external loads such as wind force and earthquake force, thereby enhancing the stability of the entire container house support system. The top end of the bottom plate 2 corresponding to the pad block at the bottom end of the container house 4 is provided with an embedding groove, which reduces the movement of the container house 4 and makes it more stable.

[0026] The C-shaped guide plate 9 is arranged on the surface of the container house 4. The C-shaped guide plate 9 can guide the airflow around the container house 4, reduce wind resistance, and to some extent, reduce the shaking and vibration of the container house in the wind. This not only improves the stability of the container house, but also helps to prolong its service life. The C-shaped guide plate 9 can also guide rainwater and reduce the corrosion of rainwater on the container.

[0027] Working principle: during installation, the counterweight 110 is buried in the predetermined position, ensuring that the burial depth meets the requirements, the upper I-shaped steel 111 and the lower I-shaped steel 112 are connected through the long threaded rod 113 and are fixed with the nut 114, the nut 114 is adjusted to ensure that the spacing and the levelness between the upper I-shaped steel 112 and the lower I-shaped steel 113 meet the requirements, the first anti-seismic right-angle connecting steel block 116 is connected to the upper I-shaped steel 111, ensuring firm connection, then the solid steel 117 is inserted into the first anti-seismic right-angle connecting steel block 116 and is rotated to the predetermined position, the second anti-seismic right-angle connecting steel block 118 is connected to the top end of the solid steel 117 and is adjusted to the horizontal position, then the connecting bottom plate 2 is placed in the predetermined position, ensuring that it is firmly connected with the second anti-seismic right-angle connecting steel block 118, the container house 4 is placed on the connecting bottom plate 2 and is fixed with bolts or other connecting members, then the triangular connecting steel 5 is installed at the four corners of the container house 4, the rope 8 of the rotating rod 7 is fixed in the connecting hole 51, then the sharp end of the anchor body 31 is placed on the ground, and the anchor body 31 is embedded in the ground by hammering the backing plate 32, and the installation is completed.

[0028] It should be noted that the relative terms such as first and second and the like are used herein solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any such actual relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variations thereof, are intended to cover a non-exclusive inclusion such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.

[0029] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made thereto without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A shock absorbing support structure for a container house comprising a support mechanism (1), characterized in that: The support mechanism (1) top end is connected with a connecting bottom plate (2), the connecting bottom plate (2) top end is connected with a container house (4), the container house (4) one side is hingedly provided with a door plate (41), the container house (4) one side is connected with a window (42), the container house (4) four corners are connected with triangular connection steel (5). The support mechanism (1) includes a counterweight (110) arranged in the soil, the counterweight (110) top end is connected with an upper I-shaped horizontal steel (111), the counterweight (110) bottom end is connected with a lower I-shaped horizontal steel (112), the upper I-shaped horizontal steel (111) and the lower I-shaped horizontal steel (112) are connected with a long threaded rod (113), the upper I-shaped horizontal steel (111) top end one side is connected with a connecting steel plate (115), the connecting steel plate (115) top end is connected with a first anti-seismic right-angle connecting steel block (116), the first anti-seismic right-angle connecting steel block (116) is rotatably provided with a solid steel (117) inside, the solid steel (117) top end is rotatably provided with a second anti-seismic right-angle connecting steel block (118), the second anti-seismic right-angle connecting steel block (118) top end is connected with the connecting bottom plate (2) bottom end.

2. The shock absorbing support structure for a shipping container house according to claim 1, wherein: The long threaded rod (113) penetrates the upper I-shaped horizontal steel (111) and the lower I-shaped horizontal steel (112), and is threadedly provided with a nut (114) at the upper end and the lower end, respectively.

3. The shock absorbing support structure for a shipping container house according to claim 1, wherein: The first anti-seismic right-angle connecting steel block (116), the solid steel (117) and the second anti-seismic right-angle connecting steel block (118) are arranged in three groups and are distributed in a triangular manner, and one group of the first anti-seismic right-angle connecting steel block (116), the solid steel (117) and the second anti-seismic right-angle connecting steel block (118) are directly connected on the upper I-shaped horizontal steel (111).

4. The shock absorbing support structure for a shipping container house according to claim 1, wherein: The connecting bottom plate (2) one side is connected with a connecting block (3), the connecting block (3) is slidably provided with an anchor body (31) inside, the anchor body (31) top end is connected with a backing plate (32).

5. The shock absorbing support structure for a shipping container house according to claim 1, wherein: The connecting bottom plate (2) top end is connected with a square block (6), the square block (6) is rotatably provided with a rotating rod (7) therebetween, the rotating rod (7) surface is wound with a rope (8), and the square block (6), the rotating rod (7) and the rope (8) correspond to four groups of the container house (4) four corners.

6. The shock resistant support structure for a shipping container house according to claim 1, wherein: The triangular connection steel (5) top end is provided with a connecting hole (51) corresponding to the rope (8).

7. The shock resistant support structure for a shipping container house according to claim 1, wherein: The container house (4) surface is connected with a C-shaped guide plate (9).