Reinforcing plate for enhancing wind resistance of building wall

By setting a combination of reinforcement plates, buffer components and stabilization components on the building walls, the problem of insufficient wind resistance of existing wind-resistant wall panels is solved, and more efficient wind reduction and structural reinforcement effects are achieved.

CN223358781UActive Publication Date: 2025-09-19FUJIAN SHENGHAI CONSTRUCTION ENGINEERING CO LTD
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Patent Information

Application Number
CN202422819426.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-19
Publication Date
2025-09-19
Estimated Expiration
2034-11-19

AI Technical Summary

Technical Problem

Existing wind-resistant wall panel structures have insufficient wind resistance under strong wind or hurricane conditions and cannot effectively prevent wall damage.

Method used

The structural design combines reinforcement plates with force-reducing components. The force-reducing components provide elastic buffering to reduce wind pressure, and additional stabilization components are added to improve the overall structural strength.

Benefits of technology

Effectively reduce the pressure of wind on the wall, improve the wind resistance of the building wall, and enhance the stability and safety of the structure.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a reinforcing plate for enhancing the wind resistance of a building wall body, which relates to the technical field of building engineering and comprises a wall body main body, a foundation main body, a fixing plate, a first base block and a first fixing piece, and the first base block is fixedly embedded in the foundation main body; the attaching layer is fixedly arranged at one plate end of the fixed plate and attached to the exterior of the wall body main body, the movable plate is arranged outside the other plate end of the fixed plate, the first force buffering assemblies are fixedly installed between the fixed plate and the movable plate, and the movable plate is elastically supported to be close to or away from the fixed plate through the first force buffering assemblies. The utility model has the advantages that the fixed plate is fixed on the foundation main body so as to block wind blowing to the wall main body, meanwhile, the movable plate is arranged on the outer side of the fixed plate by adopting the slow force component, and when the wind blows to the movable plate, the slow force component is used for elastically buffering and reducing the force, so that the pressure strength of the wind force on the fixed plate is reduced, and the wind resistance is improved; and the arranged stability augmentation assembly can improve the supporting stability of the movable plate, the strength of the overall structure is further improved, and the wind resistance is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of construction engineering, and more particularly to a reinforcement plate for enhancing the wind resistance of a building wall. Background Art

[0002] The purpose of reinforcing panels to enhance the wind resistance of building walls is to improve the safety and stability of the structure and prevent damage to the walls in extreme weather conditions such as strong winds or hurricanes.

[0003] Based on the above, the requirements for setting reinforcement plates are as follows:

[0004] Located in areas with strong winds: such as coastal areas, high mountains or open areas, which are prone to strong winds such as typhoons and hurricanes;

[0005] Renovation of old buildings: Old buildings may not be built according to current wind resistance standards, and the wind resistance of the walls needs to be evaluated and strengthened during renovation; etc.

[0006] Although there is a wind-resistant structure as shown in the existing [publication number: CN220014693U, a combined wind-resistant wall panel and wind-resistant wall], the structure only uses a rigid wind-proof barrier after the board is fixed, which has the disadvantage of low wind resistance. Utility Model Content

[0007] The purpose of the present invention is to provide a reinforcement plate for enhancing the wind resistance of a building wall in order to solve the above technical problems.

[0008] In order to achieve the above-mentioned purpose, the present invention specifically adopts the following technical solutions:

[0009] The utility model provides a reinforcement plate for enhancing the wind resistance of a building wall, comprising a wall body, a foundation body fixed to the bottom end of the wall body, a fixing plate arranged outside the wall body, a first base block arranged at the bottom end of the fixing plate, and a first fixing member for fixing the first base block and the fixing plate, wherein the first base block is fixedly embedded in the foundation body;

[0010] It also includes a layer fixed to one end of the fixed plate and attached to the outside of the wall body, a movable plate arranged outside the other end of the fixed plate, and several groups of first buffering components fixed between the fixed plate and the movable plate. The movable plate is elastically supported to move closer to and away from the fixed plate through the several groups of first buffering components.

[0011] As a preferred technical solution of the present invention, the first deceleration components are provided in multiple groups and are evenly distributed between the fixed plate and the movable plate.

[0012] As a preferred technical solution of the present invention, it also includes a stabilization component fixedly mounted outside the moving plate to improve the supporting stability of the moving plate.

[0013] As a preferred technical solution of the present invention, the stabilization component includes a second base block fixedly embedded in the foundation body, a support frame arranged at the top of the second base block, a second fixing part for fixing the second base block and the support frame, a pressure plate fixed on the support frame, and several groups of second deceleration components fixed between the pressure plate and the movable plate. The movable plate is elastically supported to move closer to and away from the pressure plate through several groups of second deceleration components.

[0014] As a preferred technical solution of the present invention, the second deceleration components are provided in multiple groups and are evenly distributed between the pressure plate and the movable plate.

[0015] As a preferred technical solution of the present invention, the second deceleration component includes a shaft rod with one end fixed to the movable plate, a sleeve rod that is sleeved and movable outside the shaft rod, and an elastic part fixed in the sleeve rod. The other end of the shaft rod is fixed to the elastic part, and the shaft rod is elastically supported and movable in the sleeve rod through the elastic part.

[0016] As a preferred technical solution of the present invention, the first deceleration assembly and the second deceleration assembly have the same composition structure, that is, when the shaft rod of the first deceleration assembly is fixed to the fixed plate, the sleeve rod of the first deceleration assembly is fixed to the movable plate.

[0017] The beneficial effects of the utility model are as follows:

[0018] By fixing a fixed plate on the main body of the foundation to block the wind blowing towards the main body of the wall, a dynamic plate is installed on the outside of the fixed plate using a force-reducing component. When the wind blows towards the dynamic plate, the force is elastically buffered and reduced through the force-reducing component, so that the pressure intensity of the wind on the fixed plate is reduced, thereby improving the wind resistance. The stabilization component set up can improve the support stability of the dynamic plate, further improve the strength of the overall structure and increase the wind resistance. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a structural diagram of the present utility model.

[0020] Figure numerals: wall main body-1, foundation main body-2, fixing plate-3, pasting layer-4, first base block-5, first fixing member-6, moving plate-7, deceleration component-8, stabilization component-9, second base block-91, support frame-92, second fixing member-93, pressure plate-94, second deceleration component-95, shaft rod-951, sleeve rod-952, elastic member-953. DETAILED DESCRIPTION

[0021] like Figure 1As shown, the utility model proposes: a reinforcement plate for enhancing the wind resistance of a building wall, comprising a wall body 1, a foundation body 2 fixed to the bottom end of the wall body 1, a fixing plate 3 provided outside the wall body 1 (the fixing plate 3 can be made of stainless steel or the like and is provided at the left end of the wall body 1), a first base block 5 provided at the bottom end of the fixing plate 3 (the first base block 5 can be a concrete block or the like), and a first fixing member 6 for fixing the first base block 5 and the fixing plate 3 (the first fixing member 6 can be a bolt or the like, an expansion bolt), the first base block 5 being fixedly embedded in the foundation body 2;

[0022] According to the above, when using, a groove is dug in advance on the foundation body 2 for placing the first base block 5 for stability, and the fixing plate 3 is set at the left end of the wall body 1. The first fixing member 6 is fixed to the first base block 5 to block the wind blowing towards the wall body 1.

[0023] The wall structure further includes a layer 4 (the layer 4 is a rubber layer, etc.) fixed to one end of the fixed plate 3 and attached to the outside of the wall body 1, a movable plate 7 (the movable plate 7 can be made of stainless steel, etc. and is arranged on the left end of the fixed plate 3) and a plurality of groups of first buffering components 8 fixed between the fixed plate 3 and the movable plate 7. The movable plate 7 is elastically supported to move closer to and away from the fixed plate 3 by the plurality of groups of first buffering components 8.

[0024] In summary, when in use, the adhesive layer 4 is provided on the fixed plate 3 to enhance the effect of pressing and stabilizing the exterior of the wall body 1. When wind blows from left to right to the movable plate 7, it passes through the plurality of groups of first buffering components 8 to provide elastic buffering, causing the movable plate 7 to elastically approach the fixed plate 3, thereby reducing the pressure intensity of the wind on the fixed plate 3 and improving the wind resistance.

[0025] Among them, the first buffering components 8 are provided in multiple groups and are evenly distributed between the fixed plate 3 and the movable plate 7 (as shown in the figure, multiple groups of first buffering components 8 are evenly distributed between the right end of the movable plate 7 and the left end of the fixed plate 3, providing uniform overall strength of the elastic buffering force).

[0026] like Figure 1 As shown:

[0027] It also includes a stabilizing component 9 fixed to the outside of the dynamic plate 7 to improve the support stability of the dynamic plate 7, so as to further improve the strength of the overall structure and enhance the wind resistance.

[0028] The stabilization assembly 9 includes a second base block 91 fixedly embedded in the foundation body 2 (the second base block 91 can be a concrete block, etc.), a support frame 92 provided at the top of the second base block 91, a second fixing member 93 for fixing the second base block 91 and the support frame 92 (the second fixing member 93 can be a bolt, etc., an expansion bolt), a pressure plate 94 fixed on the support frame 92 (the material of the support frame 92 and the pressure plate 94 can be stainless steel, etc.), and a plurality of sets of second buffering assemblies 95 fixed between the pressure plate 94 and the movable plate 7. The movable plate 7 is elastically supported to move closer to and away from the pressure plate 94 by the plurality of second buffering assemblies 95.

[0029] In summary, when in use, a groove is dug on the top of the foundation body 2 on the left side of the movable plate 7 for stabilizing the second base block 91, and a support frame 92 is set on the top of the second base block 91 and fixed with a second fixing member 93. At the same time, the left end of the movable plate 7 is connected and fixed to the pressure plate 94 fixed on the other side of the support frame 92 through the second buffer component 95. When the movable plate 7 is compressed and displaced to the left and right by the wind, the movement of the movable plate 7 can be stabilized. At the same time, when the wind force is strong, the overall support strength can be increased to improve the wind resistance.

[0030] The second buffering components 95 are provided in multiple groups and are evenly distributed between the pressure plate 94 and the movable plate 7 (as shown in the figure, the multiple groups of second buffering components 95 are evenly distributed between the right end of the pressure plate 94 and the left end of the movable plate 7, providing uniform overall strength of the elastic buffering force);

[0031] In order to implement the above-mentioned second deceleration component 95, as shown in the figure, it is proposed that the specific structure and composition of the second deceleration component 95 can be as follows: the second deceleration component 95 includes a shaft 951 with one axial end fixed to the movable plate 7, a sleeve rod 952 sleeved and movable outside the shaft 951, and an elastic member 953 fixed in the sleeve rod 952 (the elastic member 953 can be a spring, etc.), the other axial end of the shaft 951 is fixed to the elastic member 953, and the shaft 951 is elastically supported and movable in the sleeve rod 952 by the elastic member 953. When the movable plate 7 moves left and right, the shaft 951 is linked to move left and right and move inside the sleeve rod 952. At this time, the elastic member 953 connected and fixed elastically tightens the shaft 951 to provide elastic support for the movement;

[0032] The first deceleration component 8 and the second deceleration component 95 have the same structure to meet the elastic buffering requirements of the first deceleration component 8.

[0033] Specifically: when the shaft rod 951 of the first deceleration component 8 is fixed to the fixed plate 3, the sleeve rod 952 of the first deceleration component 8 is fixed to the movable plate 7, that is, when the movable plate 7 moves left and right, the sleeve rod 952 is driven to move left and right. At this time, the sleeve rod 952 is sleeved outside the sub-shaft rod 951 and moves. The elastic part 953 connected and fixed by the sleeve rod 952 elastically tightens the shaft rod 951 to provide elastic support activities.

[0034] The above shows and describes the basic principles and main features of the present invention and the advantages of the present invention. It is obvious to those skilled in the art that the present invention is not limited to the details of the above exemplary embodiments and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention. Therefore, from all perspectives, the embodiments should be regarded as illustrative and non-restrictive. The scope of the present invention is defined by the appended claims rather than the above description, and it is intended that all changes that fall within the meaning and range of equivalents of the claims be included in the present invention. Any reference signs in the claims should not be construed as limiting the claim to which they relate.

[0035] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.

Claims

1. A reinforcing plate for enhancing the wind resistance of a building wall, comprising a wall body (1), a foundation body (2) fixed to the bottom end of the wall body (1), a fixing plate (3) arranged outside the wall body (1), a first base block (5) arranged at the bottom end of the fixing plate (3), and a first fixing member (6) for fixing the first base block (5) and the fixing plate (3), wherein the first base block (5) is fixedly embedded in the foundation body (2); It is characterized in that The system further comprises a pasting layer (4) fixedly arranged at one end of the fixed plate (3) and adhered to the outside of the wall body (1), a movable plate (7) arranged outside the other end of the fixed plate (3), and a plurality of groups of first buffering components (8) fixedly installed between the fixed plate (3) and the movable plate (7). The movable plate (7) is elastically supported to move closer to and farther from the fixed plate (3) by the plurality of groups of first buffering components (8).

2. A reinforcement plate for enhancing the wind resistance of a building wall according to claim 1, characterized in that: The first deceleration components (8) are provided in multiple groups and are evenly distributed between the fixed plate (3) and the movable plate (7).

3. The reinforcement plate for enhancing the wind resistance of building walls according to claim 1, characterized in that: It also includes a stabilization component (9) fixedly mounted outside the moving plate (7) to improve the support stability of the moving plate (7).

4. A reinforcement plate for enhancing the wind resistance of a building wall according to claim 3, characterized in that: The stabilization component (9) includes a second base block (91) fixedly embedded in the foundation body (2), a support frame (92) provided at the top of the second base block (91), a second fixing member (93) for fixing the second base block (91) and the support frame (92), a pressure plate (94) fixedly mounted on the support frame (92), and a plurality of groups of second buffering components (95) fixedly mounted between the pressure plate (94) and the movable plate (7). The movable plate (7) is elastically supported to move closer to and away from the pressure plate (94) by the plurality of groups of second buffering components (95).

5. A reinforcement plate for enhancing the wind resistance of a building wall according to claim 4, characterized in that: The second deceleration components (95) are provided in multiple groups and are evenly distributed between the pressure plate (94) and the movable plate (7).

6. A reinforcement plate for enhancing the wind resistance of a building wall according to claim 5, characterized in that: The second deceleration component (95) includes a shaft (951) whose one end is fixed to the movable plate (7), a sleeve rod (952) sleeved and movable outside the shaft (951), and an elastic member (953) fixed inside the sleeve rod (952). The other end of the shaft (951) is fixed to the elastic member (953), and the shaft (951) is elastically supported and movable inside the sleeve rod (952) by the elastic member (953).

7. A reinforcement plate for enhancing the wind resistance of a building wall according to claim 6, characterized in that: The first deceleration component (8) and the second deceleration component (95) have the same composition structure, that is, when the shaft rod (951) of the first deceleration component (8) is fixed to the fixed plate (3), the sleeve rod (952) of the first deceleration component (8) is fixed to the movable plate (7).

Citation Information

Patent Citations

  • Combined wind-resistant wallboard and wind-resistant wall body

    CN220014693U