A reinforced anti-overturning building structure

By designing a reinforced, anti-tipping building structure that can be unfolded and folded, and utilizing support and locking mechanisms, the problem of time-consuming and labor-intensive handling and transportation in existing technologies has been solved. This enables the structure to flexibly switch between support and handling, thereby improving transportation efficiency.

CN224549724UActive Publication Date: 2026-07-24ZHEJIANG GANGSHENG HLDG GRP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG GANGSHENG HLDG GRP CO LTD
Filing Date
2025-06-04
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

Existing reinforced anti-tipping structures are time-consuming and labor-intensive to handle and transport, and they take up a lot of space and cannot be folded and stored.

Method used

A reinforced anti-overturning building structure including a base plate and abutment plate was designed. The abutment plate and the base plate can be unfolded and folded through a support mechanism, and a locking mechanism is used to connect and lock them. The support rods and crossbars abut against each other, and the ends of the support rods are semi-circular to facilitate connection and separation.

Benefits of technology

The reinforced anti-tipping structure provides support when unfolded and reduces volume when folded, making it easy to handle and transport. A locking mechanism ensures stable connection.

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Abstract

This utility model discloses a reinforced anti-overturning building structure, relating to the field of building structure technology, comprising: a base plate; a support plate rotatably connected to the base plate; a support mechanism provided between the base plate and the support plate; the support mechanism includes a screw rotatably connected to the base plate, a handwheel fixedly connected to the screw, a slider slidably connected to the base plate, the screw and the slider being screwed together, a support rod rotatably connected to the slider, and a crossbar fixedly connected to the support plate, with the support rod and the crossbar engaging in abutment. By providing the support mechanism, the support plate can be connected to or disconnected from the support mechanism through the abutment of the support rod and the crossbar, thus allowing the base plate and the support plate to have an unfolded state and a folded state. In the unfolded state, the structure is supported; in the folded state, the overall volume of this reinforced anti-overturning building structure is greatly reduced, facilitating handling and transportation. A locking mechanism is provided to lock the base plate and the support plate, further connecting them.
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Description

Technical Field

[0001] This utility model relates to the field of building structure technology, specifically a reinforced and anti-overturning building structure. Background Technology

[0002] Strengthening anti-overturning structures refers to improving the stability of a structure under external forces through a series of technical measures, preventing it from overturning or collapsing. This strengthening method is widely used in engineering fields such as bridges and buildings, aiming to ensure the safety and stability of the structure.

[0003] For example, publication number CN221702728U, publication date September 13, 2024, titled "A Reinforced Anti-Overturning Building Structure," includes a fixed plate snapped onto the upper surface of an mounting plate. An adjustable telescopic rod is snapped onto the inner wall of the fixed plate. A movable plate for fixing is snapped onto the top of the telescopic rod. A connecting block for fixing is snapped onto one side of the movable plate. A wall panel for fixing is snapped onto one side of the upper surface of the mounting plate, and a fixing block for connection is snapped onto one side of the wall panel. This reinforced anti-overturning building structure, through the arrangement of the fixed plate, telescopic rod, and movable plate, allows the bottom of the telescopic rod to snap onto the inner wall of the fixed plate, and the top of the telescopic rod to snap onto the inner wall of the movable plate. The vertical extension and retraction of the telescopic rod can adjust the height of the movable plate, thereby adjusting the height of the device. This allows the device to be used with wall panels of different heights, reducing the time spent selecting the device and improving the work efficiency of the staff.

[0004] In existing technologies, such as those containing the aforementioned patents, the reinforced anti-overturning structure consists of two plates: a base plate and a support plate, which are set at a 90-degree angle, making the entire reinforced anti-overturning structure L-shaped to support the building. However, precisely because the reinforced anti-overturning structure is L-shaped and cannot be folded and stored, it is time-consuming, labor-intensive, and occupies a lot of space when transporting or delivering it. Utility Model Content

[0005] The purpose of this utility model is to provide a reinforced anti-overturning building structure to overcome the shortcomings of the prior art.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a reinforced anti-overturning building structure, comprising:

[0007] Base plate;

[0008] The abutment plate is rotatably connected to the base plate;

[0009] A support mechanism is provided between the base plate and the backing plate;

[0010] The support mechanism includes a screw rotatably connected to the base plate, a handwheel fixedly connected to the screw, a slider slidably connected to the base plate, the screw and the slider being screwed together, a support rod rotatably connected to the slider, and a crossbar fixedly connected to the abutment plate, with the support rod and the crossbar engaging in abutment.

[0011] Furthermore, the end of the support rod is set in a semi-circular shape.

[0012] Furthermore, the base plate has a groove for the slider to slide.

[0013] Furthermore, it also includes a locking mechanism, which includes a fixed plate fixedly connected to the base plate, a sliding rod slidably connected to the fixed plate, two plug-in rods fixedly connected to the sliding rod, both plug-in rods being plugged into the base plate, and an elastic element provided between the sliding rod and the fixed plate.

[0014] Furthermore, the elastic element is a compression spring.

[0015] Furthermore, pins are provided at all four corners of the base plate.

[0016] Compared with the prior art, the reinforced anti-overturning building structure provided by this utility model, by setting up a support mechanism, can connect or disconnect the bottom plate with the support mechanism through the abutment cooperation of the support rod and the crossbar, so that the bottom plate and the bottom plate can be in an unfolded state and a folded state. The unfolded state supports the building, and the folded state can greatly reduce the overall volume of the reinforced anti-overturning building structure, making it easier to handle and transport. In addition, by setting up a locking mechanism, the bottom plate and the bottom plate can be locked together, further connecting the bottom plate and the bottom plate. Attached Figure Description

[0017] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in this utility model. For those skilled in the art, other drawings can be obtained based on these drawings.

[0018] Figure 1 A schematic diagram showing the unfolded state of the base plate and the abutment plate provided in an embodiment of this utility model;

[0019] Figure 2 A schematic diagram showing the folded state of the base plate and the abutment plate provided in an embodiment of this utility model;

[0020] Figure 3 This is a schematic diagram of the supporting mechanism provided in an embodiment of the present utility model;

[0021] Figure 4 This is a schematic diagram of the locking mechanism provided in an embodiment of the present utility model.

[0022] Explanation of reference numerals in the attached drawings: 1. Base plate; 11. Slide groove; 2. Support plate; 21. Crossbar; 3. Support mechanism; 31. Screw; 32. Handwheel; 33. Slider; 34. Stop bar; 35. Support rod; 4. Locking mechanism; 41. Fixed plate; 42. Slide bar; 43. Connecting rod; 44. Elastic element; 5. Pin. Detailed Implementation

[0023] To enable those skilled in the art to better understand the technical solution of this utility model, the present utility model will be further described in detail below with reference to the accompanying drawings.

[0024] Please see Figure 1-4 This utility model provides a reinforced anti-overturning building structure, comprising: a base plate 1; and a stop plate 2 rotatably connected to the base plate 1; the base plate 1 and the stop plate 2 have an unfolded state and a folded state; in the unfolded state, the base plate 1 and the stop plate 2 form a 90-degree angle, and in this state, the stop plate 2 abuts against the building to achieve a reinforced anti-overturning effect; in the folded state, the base plate 1 and the stop plate 2 are parallel to each other, facilitating the handling and transportation of the reinforced anti-overturning building structure; the unfolded state and the folded state are respectively... Figure 1 , 2 As shown.

[0025] A support mechanism 3 is provided between the base plate 1 and the abutment plate 2. Specifically, the support mechanism 3 includes a screw 31 rotatably connected to the base plate 1, a handwheel 32 fixedly connected to the screw 31, a slider 33 slidably connected to the base plate 1, the screw 31 and the slider 33 being screwed together, a support rod 35 rotatably connected to the slider 33, and a crossbar 21 fixedly connected to the abutment plate 2. The support rod 35 and the crossbar 21 abut against each other.

[0026] In another embodiment, a drive source such as a motor can be used to drive the screw 31 to rotate; this is not a limitation.

[0027] Preferably, the end of the support rod 35 is semi-circular; the semi-circular shape facilitates the connection and separation of the support rod 35 and the crossbar 21.

[0028] More preferably, a stop bar 34 is fixedly connected to the slider 33. The stop bar 34 is used to limit the rotation angle of the support rod 35. In this embodiment, in the supported state, the angle between the support rod 35 and the base plate 1 is 45 degrees.

[0029] Specifically, the sliding connection between the slider 33 and the base plate 1 is as follows: the base plate 1 is provided with a sliding groove 11 for the slider 33 to slide.

[0030] Preferably, it also includes a locking mechanism 4, which is used to further connect the base plate 1 and the abutment plate 2. The locking mechanism 4 includes a fixed plate 41 fixedly connected to the abutment plate 2, a sliding rod 42 slidably connected to the fixed plate 41, and two plug-in rods 43 fixedly connected to the sliding rod 42. Both plug-in rods 43 are plugged into the base plate 1. An elastic element 44 is provided between the sliding rod 42 and the fixed plate 41. The elastic element 44 is a compression spring. During the process of elastic deformation of the elastic element 44, the sliding rod 42 is driven to slide on the abutment plate 2 in the direction of the crossbar 21.

[0031] Specifically, the base plate 1 has a slot for the two plug rods 43 to be plugged in and engaged.

[0032] More preferably, the ends of the two connecting rods 43 are set at an angle. This angle allows the fixing plate 41 to slide on the base plate 2 during the process of changing from a folded state to an unfolded state by abutting against the base plate 1 through the angle of the connecting rods 43, thereby avoiding the abutting interference between the connecting rods 43 and the base plate 1.

[0033] Preferably, pins 5 are provided at each of the four corners of the base plate 1. The pins 5 are used to insert into the ground to fix the base plate 1.

[0034] Working principle: In use, the base plate 1 and the support plate 2 need to be unfolded. First, the support plate 2 is raised to a certain angle. Then, the screw 31 is rotated by the handwheel 32, which moves the slider 33 closer to the support plate 2. After it gets close to the support plate 2, the support rod 35 is rotated so that it abuts against the stop bar 34. The semi-circular end of the support rod 35 abuts against the cross bar 21. At this time, the handwheel 32 is rotated again. As the slider 33 slides and the support rod 35 abuts against the cross bar 21, the support plate 2 is rotated, and the rotation angle between the base plate 1 and the support plate 2 gradually increases. During the unfolding of the support plate 2, the end of the insertion rod 43 abuts against the base plate 1 at an angle, so that the locking mechanism 4 avoids interference with the base plate 1. After the support plate 2 is rotated to a vertical position, the elastic element 44 returns to its elastic deformation, which drives the insertion rod 43 to insert into the base plate 1, thus locking the base plate 1 and the support plate 2.

[0035] The foregoing description only illustrates certain exemplary embodiments of the present invention. Undoubtedly, those skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.

Claims

1. A reinforced anti-overturning building structure, characterized in that, include: A base plate (1); a stop plate (2) rotatably connected to the base plate (1); a support mechanism (3) is provided between the base plate (1) and the stop plate (2); the support mechanism (3) includes a screw (31) rotatably connected to the base plate (1), a handwheel (32) fixedly connected to the screw (31), a slider (33) slidably connected to the base plate (1), the screw (31) and the slider (33) being screwed together, a support rod (35) rotatably connected to the slider (33), a crossbar (21) fixedly connected to the stop plate (2), and the support rod (35) and the crossbar (21) being connected together. The support rod (35) is semi-circular at the end. The base plate (1) is provided with a sliding groove (11) for the slider (33) to slide. It also includes a locking mechanism (4), which includes a fixed plate (41) fixedly connected to the abutment plate (2). A sliding rod (42) is slidably connected to the fixed plate (41). Two plug rods (43) are fixedly connected to the sliding rod (42). Both plug rods (43) are plugged into the base plate (1). An elastic element (44) is provided between the sliding rod (42) and the fixed plate (41). The elastic element (44) is a compression spring.

2. The reinforced anti-overturning building structure according to claim 1, characterized in that, Pins (5) are provided at the four corners of the base plate (1).

Citation Information

Patent Citations

  • CN221702728U