A reinforcing structure for preventing cracks at the edge of a column

CN224742074UActive Publication Date: 2026-09-11HENAN ONION BUILDING MATERIALS CO LTD
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Patent Information

Application Number
CN202522256352.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-24
Publication Date
2026-09-11
Estimated Expiration
2035-10-24

AI Technical Summary

Technical Problem

传统的加固方式要么操作复杂,安装困难,要么加固效果不佳,胶液填充不均匀,密封性能差,无法有效阻止裂缝的产生和扩展

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Abstract

The utility model discloses a kind of reinforcing structures of column edge anti-crack, it is related to column edge reinforcing technical field, including multiple reinforcing clamping plates, multiple reinforcing clamping plates two ends are connected to form square, glue injection hole is set on reinforcing clamping plate, the inside of reinforcing clamping plate includes vertical surface, horizontal surface and bevel, the vertical surface of reinforcing clamping plate is detachably connected with upper sealing strip, the horizontal surface of reinforcing clamping plate is detachably connected with lower sealing strip, passageway is set in the inside of reinforcing clamping plate, the vertical surface of passageway is set with upper glue groove, the horizontal surface of passageway is set with lower glue groove, the bevel of reinforcing clamping plate is set with multiple through holes communicated with passageway, reinforcing clamping plate two ends are cut by forty-five degrees, reinforcing clamping plate two ends are respectively fixed with connecting plate, pass through multiple reinforcing clamping plates and are connected to form square structure surrounding column, using glue injection hole, various glue grooves, sealing strip and the cooperative cooperation of through hole etc. component, the full range reinforcement of column and ground junction can be realized.
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Description

Technical Field

[0001] This utility model relates to the field of column edge reinforcement technology, specifically a column edge crack prevention reinforcement structure. Background Technology

[0002] In the construction industry, the junction of columns and the ground is one of the key structural load-bearing areas. However, when applying epoxy floor coatings, the edges where columns meet the ground are often difficult to coat evenly and thoroughly due to operational challenges. Over time, these poorly coated areas, lacking sufficient protection and adhesion, are prone to cracking. Cracks not only affect the building's aesthetics but also reduce the structural stability of the column-to-ground connection, potentially leading to more serious structural safety hazards in the long run.

[0003] To solve this problem, there is an urgent need for a specialized column edge crack prevention and reinforcement structure. Traditional reinforcement methods are either complex to operate and difficult to install, or have poor reinforcement effects, uneven glue filling, poor sealing performance, and cannot effectively prevent the generation and propagation of cracks. Utility Model Content

[0004] To address the above problems, this utility model provides a reinforcement structure for preventing cracks at the column edge, thus solving the aforementioned issues.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a column edge crack prevention reinforcement structure, comprising multiple reinforcement plates, the two ends of which are connected to each other to form a square, each reinforcement plate having an injection hole, the inner side of each reinforcement plate including a vertical surface, a horizontal surface and an inclined surface, an upper sealing strip being detachably connected to the vertical surface of each reinforcement plate, a lower sealing strip being detachably connected to the horizontal surface of each reinforcement plate, a channel being formed inside each reinforcement plate, an upper adhesive groove being formed on the vertical surface of the channel, a lower adhesive groove being formed on the horizontal surface of the channel, and multiple through holes communicating with the channel being formed on the inclined surface of the reinforcement plate.

[0006] Preferably, the two ends of the reinforcing clamp are cut at a 45-degree angle, and a connecting plate is fixed to each end of the reinforcing clamp, with a plurality of fixing holes provided on the connecting plate.

[0007] Preferably, the vertical and horizontal surfaces of the reinforcing clamp are respectively provided with T-slots for connecting the upper and lower sealing strips.

[0008] Preferably, the vertical surface of the reinforcing clamp is covered with an upper adhesive groove, and the horizontal surface of the reinforcing clamp is covered with a lower adhesive groove. The upper and lower adhesive grooves are each composed of multiple interconnected cross-shaped grooves, and each side of the cross-shaped groove has multiple figure-eight shaped grooves.

[0009] Preferably, a connecting groove is provided on the vertical surface of the reinforcing clamp, the connecting groove is connected to the upper adhesive groove, and the connecting groove overlaps with the upper sealing strip by a portion.

[0010] Preferably, a sealing groove is provided on the horizontal surface of the reinforcing clamp, the sealing groove is connected to the lower sealing groove, and the sealing groove overlaps with the lower sealing strip by a portion.

[0011] Compared with the prior art, the beneficial effects of this utility model are as follows: 1. Multiple reinforcing plates are connected to form a square structure that surrounds the column. By utilizing the coordinated use of components such as injection holes, various glue grooves, sealing strips, and through holes, all-round reinforcement of the connection between the column and the ground can be achieved.

[0012] 2. The special structural design of the reinforced clamps, including 45-degree cuts at both ends and the inclusion of connecting plates and fixing holes, ensures the tightness and stability of the connections between multiple clamps. T-slots facilitate the installation and fixing of sealing strips, improving the sealing effect. The cross-shaped and figure-eight-shaped grooves in the adhesive channels greatly increase the contact area between the adhesive and the clamps and columns, enhancing the bonding strength. Connecting grooves and sealing adhesive grooves ensure that the adhesive fully fills the overlapping area between the sealing strip and the clamps, further strengthening the sealing and bonding. The presence of channels and through holes allows the adhesive to flow smoothly and fill evenly within the structure, balancing pressure and ensuring the comprehensiveness and reliability of the reinforcement. This effectively solves the potential cracking problem at the column-to-ground connection caused by issues with the application of floor paint, improving the durability and safety of the building structure. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a schematic diagram of the reinforcing clamp of this utility model. Figure 1 ; Figure 3 This is a schematic diagram of the reinforcing clamp of this utility model. Figure 2 .

[0014] The diagram shows the following labels: 1. Reinforcing plate; 2. Channel; 3. Upper sealing strip; 4. Lower sealing strip; 5. Upper adhesive groove; 6. Lower adhesive groove; 7. Through hole; 11. Connecting plate; 12. Injection hole; 13. Fixing hole; 51. Connecting groove; 61. Sealing adhesive groove. Detailed Implementation

[0015] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model.

[0016] Please see Figure 1 , Figure 2 and Figure 3 A column edge crack prevention reinforcement structure includes multiple reinforcement plates 1, which are interconnected at both ends to form a square. This design allows for all-around reinforcement of the column, ensuring uniform stress distribution and preventing excessive local stress that could lead to cracks. Each reinforcement plate 1 has injection holes 12 for easy injection of reinforcing adhesive, providing a tighter connection between the column and the reinforcement structure and enhancing the reinforcement effect. The inner side of each reinforcement plate 1 includes a vertical surface, a horizontal surface, and an inclined surface. An upper sealing strip 3 is detachably connected to the vertical surface of each reinforcement plate 1. The upper sealing strip 3 effectively seals the gap between the vertical surface and the column, preventing adhesive leakage during injection. It also reduces the entry of external dust and other impurities. The horizontal surface of the reinforcing clamp 1 is detachably connected to a lower sealing strip 4. Similarly, the lower sealing strip 4 seals the gap between the horizontal surface and the column. The interior of the reinforcing clamp 1 has a channel 2, which provides space for the flow of adhesive and facilitates the uniform distribution of adhesive. The vertical surface of the channel 2 has an upper adhesive groove 5, and the horizontal surface of the channel 2 has a lower adhesive groove 6. The upper adhesive groove 5 and the lower adhesive groove 6 increase the contact area between the adhesive and the reinforcing clamp, making the bonding stronger. The inclined surface of the reinforcing clamp 1 has multiple through holes 7 communicating with the channel 2. The through holes 7 can balance the pressure inside the channel 2 and ensure smooth flow and filling of adhesive.

[0017] Please see Figure 1 , Figure 2 and Figure 3 The two ends of the reinforcing clamp 1 are cut at a 45-degree angle. This cutting method allows multiple reinforcing clamps 1 to fit tightly together when connected, forming a regular square structure and improving the stability of the overall structure. Connecting plates 11 are fixed to both ends of the reinforcing clamp 1. The connecting plates 11 provide a stable carrier for the connection between the reinforcing clamps. Several fixing holes 13 are provided on the connecting plates 11. Fasteners can be used to firmly connect the connecting plates 11 through the fixing holes 13, further enhancing the stability of the multiple reinforcing clamps 1 after connection. T-slots for connecting the upper sealing strip 3 and the lower sealing strip 4 are respectively provided on the vertical and horizontal surfaces of the reinforcing clamp 1. The T-slots make the installation of the upper sealing strip 3 and the lower sealing strip 4 more convenient and the connection more secure, making it less likely to fall off and ensuring the sealing effect. At the same time, the upper sealing strip 3 and the lower sealing strip 4 of different thicknesses can be selected according to the gap between the reinforcing clamp 1 and the column and the ground to ensure the sealing performance.

[0018] Please see Figure 1 , Figure 2 and Figure 3The vertical surface of the reinforcing splint 1 is covered with an upper adhesive groove 5, and the horizontal surface of the reinforcing splint 1 is covered with a lower adhesive groove 6. The upper adhesive groove 5 and the lower adhesive groove 6 are each composed of multiple interconnected cross-shaped grooves. The structure of the cross-shaped grooves greatly increases the adhesion area of ​​the adhesive and improves the bonding strength. Each side of the cross-shaped grooves is provided with multiple figure-eight grooves. The figure-eight grooves further refine the adhesive groove structure, allowing the adhesive to fill more fully and enhancing the bonding force between the adhesive and the reinforcing splint, as well as the column and the ground. A connecting groove 51 is provided on the vertical surface of the reinforcing clamp 1. The connecting groove 51 is connected to the glue groove 5. The connecting groove 51 overlaps with the upper sealing strip 3. The connecting groove 51 provides a channel for the flow of adhesive between the glue groove 5 and the upper sealing strip 3, ensuring that the adhesive can fill the overlapping area between the upper sealing strip 3 and the reinforcing clamp 1, thereby enhancing the sealing and bonding effect. A sealing groove 61 is provided on the horizontal surface of the reinforcing clamp 1. The sealing groove 61 is connected to the lower groove 6. The sealing groove 61 overlaps with the lower sealing strip 4. Similarly, the sealing groove 61 allows the adhesive to fully fill the overlap between the lower sealing strip 4 and the reinforcing clamp 1, thereby improving the reliability of sealing and bonding. Furthermore, the various structures work together to achieve comprehensive and robust reinforcement of the connection between the column and the ground, effectively preventing cracks from appearing at this location due to issues such as inadequate application of epoxy floor paint. At the same time, the sealing structure and adhesive filling enhance the connection strength and sealing performance between the column and the reinforcement structure, improving the overall durability and stability of the structure.

[0019] When using this utility model: First, prepare multiple reinforcing plates 1. Cut the ends of each reinforcing plate 1 at a 45-degree angle. Then, use fasteners to connect the multiple reinforcing plates 1 to each other through the connecting plates 11 fixed at both ends and the fixing holes 13 on the connecting plates 11, forming a square structure to surround the column. This step, with the help of the connecting plates and fixing holes, allows the multiple reinforcing plates to be connected tightly and stably, providing a solid framework for subsequent reinforcement.

[0020] Next, using the T-slots on the vertical and horizontal surfaces of the reinforcing clamp 1, the upper sealing strip 3 is installed on the vertical surface and the lower sealing strip 4 is installed on the horizontal surface. The T-slot design makes the sealing strip easy to install and securely connected. The upper sealing strip 3 and the lower sealing strip 4 can effectively seal the gap between the reinforcing clamp and the column, preventing glue leakage during subsequent glue injection and reducing the entry of external impurities.

[0021] Then, reinforcing adhesive is injected through the injection hole 12 on the reinforcing clamp 1. The adhesive flows along the channel 2 inside the reinforcing clamp 1. The upper adhesive groove 5 on the vertical surface and the lower adhesive groove 6 on the horizontal surface of the channel 2, as well as the connecting groove 51 on the vertical surface that connects to the upper adhesive groove 5 and overlaps with the upper sealing strip 3, and the sealing adhesive groove 61 on the horizontal surface that connects to the lower adhesive groove 6 and overlaps with the lower sealing strip 4, guide the adhesive to fill fully. The upper adhesive groove 5 and the lower adhesive groove 6 adopt a cross-shaped groove structure with multiple figure-eight grooves on each side, which greatly increases the contact area between the adhesive and the reinforcing clamp and the column, making the bonding stronger. The connecting groove 51 and the sealing adhesive groove 61 ensure that the adhesive can fill the overlapping area between the sealing strip and the reinforcing clamp, further enhancing the sealing and bonding effect. At the same time, the through hole 7 on the inclined surface of the reinforcing clamp 1 that connects to the channel 2 can balance the pressure in the channel 2, ensuring that the adhesive flows smoothly and fills evenly to various parts.

[0022] Ultimately, the adhesive, through the synergistic effect of the channels, various adhesive tanks, and through holes, fully fills the space between the reinforcing plate and the column. The upper and lower sealing strips also provide a tight seal, achieving comprehensive and robust reinforcement of the connection between the column and the ground. This effectively prevents cracks from appearing in this location due to issues such as inadequate application of epoxy floor paint, enhances the connection strength and sealing between the column and the reinforced structure, and improves the overall durability and stability of the structure.

[0023] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A reinforcing structure for preventing cracks at the edge of a column, characterized by: The device includes multiple reinforcing plates (1), which are connected at both ends to form a square. Each reinforcing plate (1) has an injection hole (12). The inner side of each reinforcing plate (1) includes a vertical surface, a horizontal surface, and an inclined surface. The vertical surface of each reinforcing plate (1) is detachably connected to an upper sealing strip (3), and the horizontal surface of each reinforcing plate (1) is detachably connected to a lower sealing strip (4). The interior of each reinforcing plate (1) has a channel (2). The vertical surface of the channel (2) has an upper adhesive groove (5), and the horizontal surface of the channel (2) has a lower adhesive groove (6). The inclined surface of each reinforcing plate (1) has multiple through holes (7) that communicate with the channel (2).

2. The reinforcing structure of claim 1, wherein: The two ends of the reinforcing clamp (1) are cut at a 45-degree angle, and the two ends of the reinforcing clamp (1) are respectively fixed with connecting plates (11), and the connecting plates (11) are provided with a number of fixing holes (13).

3. The reinforcing structure of claim 1, wherein: The vertical and horizontal surfaces of the reinforcing clamp (1) are respectively provided with T-shaped grooves for connecting the upper sealing strip (3) and the lower sealing strip (4).

4. The reinforcing structure of claim 1, wherein: The vertical surface of the reinforcing clamp (1) is covered with an upper adhesive groove (5), and the horizontal surface of the reinforcing clamp (1) is covered with a lower adhesive groove (6). The upper adhesive groove (5) and the lower adhesive groove (6) are each composed of multiple interconnected cross-shaped grooves, and multiple figure-eight shaped grooves are opened on each side of the cross-shaped groove.

5. The reinforcing structure of claim 1, wherein: The reinforcing clamp (1) has a connecting groove (51) on its vertical surface. The connecting groove (51) is connected to the glue groove (5). The connecting groove (51) overlaps with the upper sealing strip (3) by a portion.

6. The column edge crack prevention reinforcement structure according to claim 1, characterized in that: A sealing groove (61) is provided on the horizontal surface of the reinforcing clamp (1). The sealing groove (61) is connected to the lower groove (6). The sealing groove (61) overlaps with the lower sealing strip (4) by a portion.