Anti-typhoon safety protection container board room

By welding steel pipe frames on the top of the container board house and installing steel wire ropes, the safety problem of container board house capsized during typhoons was solved, and the stable reinforcement and construction safety guarantee of the board house was achieved.

CN222924181UActive Publication Date: 2025-05-30DONGGUAN YICHENG CONSTR ENG CO LTD
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Patent Information

Application Number
CN202421011268.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-05-11
Publication Date
2025-05-30
Estimated Expiration
2034-05-11

AI Technical Summary

Technical Problem

Existing container board houses are prone to overturn or blown down during typhoons, resulting in safety accidents and property losses.

Method used

Weld a steel pipe frame on the top of the container board room, and a wire rope is inserted into the transverse steel pipe. Both ends are connected to the lifting ring through fixing devices to form a stable frame structure.

Benefits of technology

Effectively reinforce the container board room to prevent overturning, and reduce pressure when the tower crane is dumped, ensure construction safety, and reduce accident rates and property losses.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of building construction, in particular to an anti-typhoon safety protection container board room which comprises a container body placed on the ground, a steel pipe frame is welded to the top of the container body and comprises a plurality of transverse steel pipes, and steel wire ropes are arranged in at least two transverse steel pipes in a penetrating mode. Hanging rings are fixed to the bottom faces of the two sides of the container body and correspond to the two ends of each steel wire rope, and the two ends of each steel wire rope are connected with the corresponding hanging rings through fixing devices. According to the safety protection container board room, the steel pipe frame is welded to the top of the container body, the steel wire rope is arranged in the transverse steel pipe of the steel pipe frame in the penetrating mode, the two ends of the steel wire rope are connected with the hanging rings fixed to the bottom face through the fixing devices respectively, and the effect of stabilizing and reinforcing the container board room can be effectively achieved; and the steel pipe frame at the top of the container board room can reduce the damage to the container board room when the tower crane topples over, so that the construction safety and the personnel safety are ensured, and the occurrence rate of major safety accidents and the property loss can be reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of building construction, and particularly relates to a typhoon-proof safety protection container house. Background Art

[0002] For current container houses, most of them are connected to the ground through screws at the bottom layer to ensure the stability and firmness of the overall container house. However, in severe weather conditions such as typhoons, the overall structural stability of general container houses is still insufficient. If the wind force is strong, the entire container house may be directly blown or even toppled. And un-reinforced container houses are more likely to overturn and roll over, thus triggering major safety accidents and causing significant property losses.

[0003] Therefore, in order to prevent the container house from being overturned when encountering strong winds and ensure the safety of construction workers and construction sites, it is necessary to assemble typhoon-proof devices for the container house, and such devices should be more widely applied in areas with frequent typhoons.

[0004] The Chinese utility model patent with the application number 202222528831.9 discloses a typhoon-proof container house structure, including a container house and a typhoon-proof device. The typhoon-proof device includes a plurality of ground anchor devices, a plurality of pulley devices and a plurality of cable drums. The cable drums are rotatably installed on the side wall or the top of the container house. The pulley devices are fixedly installed on the top of the container house. A cable is wound inside the cable drum, and one end of the cable passes around the pulley device and then connects to the ground anchor device. This structure can not only effectively reinforce the container house and play an anti-overturning role, but the biggest feature is its convenience and storage. However, this structure still has the defect of poor fixing effect; and if the container house is within the coverage of a tower crane, since there is no protection on the top of the container house, it is very easy to be crushed by the toppled tower crane. Summary of the Invention

[0005] In order to overcome the defects and deficiencies existing in the prior art, the purpose of the utility model is to provide a typhoon-proof safety protection container house.

[0006] The purpose of the utility model is achieved by the following technical solutions: A typhoon-proof safety protection container house, including a container body placed on the ground. A steel pipe frame is welded on the top of the container body. The steel pipe frame includes a plurality of horizontal steel pipes. At least two horizontal steel pipes are provided with steel wire ropes passing through them. Corresponding to both ends of each steel wire rope, lifting rings are fixed on the bottom surfaces on both sides of the container body. Both ends of the steel wire rope are respectively connected to the corresponding lifting rings through fixing devices.

[0007] Furthermore, the fixing device includes a connecting sleeve, a first adjusting screw rod screwed to one end of the connecting sleeve, a connecting ring fixed to the outer end of the first adjusting screw rod, a second adjusting screw rod screwed to the other end of the connecting sleeve, and a shackle fixed to the outer end of the second adjusting screw rod. The thread directions of the first adjusting screw rod and the second adjusting screw rod are opposite. The connecting ring is connected to both ends of the steel wire rope, and the shackle is detachably connected to the corresponding lifting ring.

[0008] Furthermore, a first fastening nut is screwed on the outer side of the connecting sleeve for the first adjusting screw rod, and a second fastening nut is screwed on the outer side of the connecting sleeve for the second adjusting rod.

[0009] Furthermore, a first gasket is sleeved on the inner side of the connecting sleeve for the first adjusting screw rod, and a first split pin is radially inserted into the inner end of the first adjusting screw rod. A second gasket is sleeved on the inner side of the connecting sleeve for the second adjusting screw rod, and a second split pin is radially inserted into the inner end of the second adjusting screw rod.

[0010] Furthermore, the steel pipe rack is a single-layer frame composed of multiple horizontal steel pipes and multiple vertical steel pipes.

[0011] Furthermore, the steel pipe rack is a double-layer frame composed of multiple horizontal steel pipes, multiple vertical steel pipes and multiple vertical steel pipes.

[0012] Furthermore, a steel bar mesh is laid on the top of the steel pipe rack.

[0013] Furthermore, the distance between two adjacent horizontal steel pipes is 80 - 120 cm, and the distance between two adjacent vertical steel pipes is 40 - 60 cm.

[0014] Furthermore, the distance between two adjacent horizontal steel pipes is 100 cm, and the distance between two adjacent vertical steel pipes is 50 cm.

[0015] Furthermore, the inclination angles at both ends of the steel wire rope are 50 - 60°.

[0016] The beneficial effects of the present utility model are as follows: The safety protection container house of the present utility model can effectively achieve the effects of stabilizing and strengthening the container house by welding a steel pipe rack on the top of the container body, threading a steel wire rope through the horizontal steel pipes of the steel pipe rack, and connecting both ends of the steel wire rope to the lifting rings fixed on the bottom surface through a fixing device. Moreover, the steel pipe rack on the top of the container house can also reduce the damage caused by the tower crane falling on the container house, ensure construction safety and personnel safety, and can reduce the incidence of major safety accidents and property losses. Description of the Drawings

[0017] Figure 1 It is a three-dimensional view of the first embodiment of the present utility model.

[0018] Figure 2 It is a schematic diagram of the installation structure of the steel wire rope described in the present utility model.

[0019] Figure 3 It is a perspective view of the second embodiment of the present utility model.

[0020] Figure 4 It is a schematic diagram of the structure of the third embodiment of the present utility model.

[0021] The reference numerals are: container body 1, steel pipe frame 2, horizontal steel pipe 21, vertical steel pipe 22, vertical steel pipe 23, steel wire rope 3, lifting ring 10, fixing device 4, connecting sleeve 41, first adjusting screw 42, first gasket 421, first split pin 422, connecting ring 43, second adjusting screw 44, second gasket 441, second split pin 442, shackle 45, first fastening nut 46, second fastening nut 47, steel bar mesh sheet 5. Specific embodiments

[0022] For the convenience of understanding by those skilled in the art, the present utility model will be further described below in conjunction with the embodiments and the attached Figures 1-4 The content mentioned in the embodiments is not a limitation to the present utility model.

[0023] As Figures 1-2 Shown in the figure is the first embodiment of a typhoon-proof safety protection container house, which includes a container body 1 placed on the ground. A steel pipe frame 2 is welded on the top of the container body 1. The steel pipe frame 2 includes a plurality of horizontal steel pipes 21. At least two horizontal steel pipes 21 are penetrated with a steel wire rope 3. Lifting rings 10 are fixed on the bottom surfaces on both sides of the container body 1 corresponding to both ends of each steel wire rope 3. Both ends of the steel wire rope 3 are respectively connected to the corresponding lifting rings 10 through fixing devices 4.

[0024] The safety protection container house of the present utility model can effectively play the role of stabilizing and strengthening the container house by welding a steel pipe frame 2 on the top of the container body 1, penetrating a steel wire rope 3 in the horizontal steel pipe 21 of the steel pipe frame 2, and connecting both ends of the steel wire rope 3 to the lifting rings 10 fixed on the bottom surface through fixing devices 4. Moreover, the steel pipe frame 2 on the top of the container house can also reduce the damage caused by the tower crane falling on the container house, ensure construction safety and personnel safety, and can reduce the incidence of major safety accidents and property losses.

[0025] In this embodiment, the fixing device 4 includes a connecting sleeve 41, a first adjusting screw 42 screwed to one end of the connecting sleeve 41, a connecting ring 43 fixed to the outer end of the first adjusting screw 42, a second adjusting screw 44 screwed to the other end of the connecting sleeve 41, and a shackle 45 fixed to the outer end of the second adjusting screw 44. The thread directions of the first adjusting screw 42 and the second adjusting screw 44 are opposite. The connecting ring 43 is connected to both ends of the steel wire rope 3, and the shackle 45 is detachably connected to the corresponding lifting ring 10. The above structure is arranged to facilitate tightening the steel wire rope 3 through the fixing device 4, ensure that the steel wire rope 3 is in a taut state, and is convenient for disassembly and assembly.

[0026] In this embodiment, a first fastening nut 46 is screwed on the outer side of the connecting sleeve 41 for the first adjusting screw 42, and a second fastening nut 47 is screwed on the outer side of the connecting sleeve 41 for the second adjusting screw 42. The above structure is arranged to fix the first adjusting screw 42 and the second adjusting screw 44 when the steel wire rope 3 is tightened.

[0027] In this embodiment, a first gasket 421 is sleeved on the inner side of the connecting sleeve 41 for the first adjusting screw 42, and a first split pin 422 is radially inserted into the inner end of the first adjusting screw 42. A second gasket 441 is sleeved on the inner side of the connecting sleeve 41 for the second adjusting screw 44, and a second split pin 442 is radially inserted into the inner end of the second adjusting screw 44. The above structure is arranged to prevent the first adjusting screw 42 and the second adjusting screw 44 from falling off when the connecting sleeve 41 rotates continuously in reverse.

[0028] In this embodiment, the steel pipe frame 2 is a single-layer frame composed of a plurality of horizontal steel pipes 21 and a plurality of vertical steel pipes 22. The single-layer frame is formed by the crosswise connection of a plurality of horizontal steel pipes 21 and a plurality of vertical steel pipes 22. The horizontal steel pipes 21 and the vertical steel pipes 22 can be connected by welding or by fasteners.

[0029] In this embodiment, the distance between two adjacent horizontal steel pipes 21 is 80 - 120 cm, and the distance between two adjacent vertical steel pipes 22 is 40 - 60 cm. To achieve the best use effect of the present invention: the distance between two adjacent horizontal steel pipes 21 is 100 cm, and the distance between two adjacent vertical steel pipes 22 is 50 cm.

[0030] In this embodiment, the inclination angles at both ends of the steel wire rope 3 are 50 - 60°. The inclination angles at both ends of the steel wire rope 3 can be reasonably set according to the position of the lifting ring 10.

[0031] Such as Figure 3The second embodiment of a typhoon-proof safety protection container board house is shown. The difference between this embodiment and the above-mentioned embodiment 1 is that the steel pipe frame 2 is a double-layer frame composed of multiple horizontal steel pipes 21, multiple longitudinal steel pipes 22 and multiple vertical steel pipes 23. The double-layer frame is composed of multiple horizontal steel pipes 21, multiple longitudinal steel pipes 22 and multiple vertical steel pipes 23 cross-connected vertically, horizontally and vertically, and the protection effect is better than that of a single-layer frame; the horizontal steel pipe 21 and the longitudinal steel pipe 22 can be connected by welding or by fasteners, and the horizontal steel pipe 21 or the longitudinal steel pipe 22 and the vertical steel pipe 23 can be connected by welding or by right-angle fasteners. In this embodiment, multiple steel wire ropes can only pass through the upper horizontal steel pipe 21, or only through the lower horizontal steel pipe 21, or multiple steel wire ropes can pass through the upper horizontal steel pipe 21 and the lower horizontal steel pipe 21 respectively.

[0032] like Figure 4 The third embodiment of a typhoon-proof safety protection container house is shown. The difference between this embodiment and the above-mentioned embodiment 1 or embodiment 2 is that a steel fence mesh 5 is laid on the top of the steel pipe frame 2. The provision of the steel fence mesh 5 can further improve the protection effect of the steel pipe frame 2, especially for the container house located in the coverage area of ​​the tower crane, it can provide better safety protection.

[0033] The above embodiments are preferred implementation schemes of the present invention. In addition, the present invention can also be implemented in other ways. Any obvious replacement without departing from the concept of the present invention is within the protection scope of the present invention.

Claims

1. A typhoon-proof safety container house, comprising a container body placed on the ground, characterized in that: A steel pipe frame is welded on the top of the container body. The steel pipe frame is a double-layer frame composed of multiple horizontal steel pipes, multiple longitudinal steel pipes and multiple vertical steel pipes. Steel wire ropes are passed through at least two horizontal steel pipes. Lifting rings are fixed at both ends of each steel wire rope corresponding to the bottom surface of both sides of the container body. The two ends of the steel wire rope are respectively connected to the corresponding lifting rings through fixing devices. A steel mesh is laid on the top of the steel pipe frame.

2. The typhoon-proof safety protection container house according to claim 1 is characterized by: The fixing device includes a connecting sleeve, a first adjusting screw threadedly connected to one end of the connecting sleeve, a connecting ring fixed to the outer end of the first adjusting screw, a second adjusting screw threadedly connected to the other end of the connecting sleeve, and a shackle fixed to the outer end of the second adjusting screw. The thread directions of the first adjusting screw and the second adjusting screw are opposite. The connecting ring is connected to both ends of the wire rope, and the shackle is detachably connected to the corresponding lifting ring.

3. The typhoon-proof safety protection container house according to claim 2 is characterized by: The first adjusting screw is located on the outer side of the connecting sleeve and is threadedly connected with a first fastening nut, and the second adjusting screw is located on the outer side of the connecting sleeve and is threadedly connected with a second fastening nut.

4. The typhoon-proof safety container house according to claim 2 is characterized by: The first adjusting screw is located on the inner side of the connecting sleeve and is sleeved with a first gasket, and the inner end of the first adjusting screw is radially inserted with a first cotter pin. The second adjusting screw is located on the inner side of the connecting sleeve and is sleeved with a second gasket, and the inner end of the second adjusting screw is radially inserted with a second cotter pin.

5. The typhoon-proof safety protection container house according to claim 1 is characterized by: The distance between two adjacent horizontal steel pipes is 80-120cm, and the distance between two adjacent longitudinal steel pipes is 40-60cm.

6. The typhoon-proof safety protection container house according to claim 1, characterized in that: The distance between two adjacent horizontal steel pipes is 100cm, and the distance between two adjacent longitudinal steel pipes is 50cm.

7. The typhoon-proof safety container house according to claim 1, characterized in that: The inclination angles at both ends of the steel wire rope are 50-60°.

Citation Information

Patent Citations

  • A typhoon-resistant container house structure

    CN218861802U