Beam side carbon fiber reinforced structure convenient to install

By designing a mechanized installation method for carbon fiber reinforced structures, and utilizing components such as base plates, rotating plates, and elastic clips, the problem of inconvenient carbon fiber cloth bonding was solved, achieving rapid and stable installation of carbon fiber cloth.

CN224078753UActive Publication Date: 2026-04-03中建五局安装工程有限公司
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-29
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

The installation process of existing carbon fiber reinforcement structures is not convenient enough, especially when the carbon fiber cloth is pasted, it is easy to slip, which leads to increased time and workload.

Method used

A structure including carbon fiber cloth and a reinforcing bracket was designed. The carbon fiber cloth is fixed in a mechanized manner using components such as a base plate, a rotating plate, elastic clips, a beam fixing seat and a transmission rod, so that it is accurately pasted onto the beam surface, thereby improving installation efficiency and stability.

Benefits of technology

It enables rapid and stable installation of carbon fiber cloth, reduces manual operation time, improves bonding quality and installation efficiency, and avoids the curling and detachment of carbon fiber cloth.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224078753U_ABST
    Figure CN224078753U_ABST
Patent Text Reader

Abstract

The utility model provides a beam side carbon fiber reinforcing structure convenient to install, which comprises a carbon fiber cloth and a reinforcing support, the reinforcing support comprises a bottom plate and four rotating plates rotationally connected to the bottom corners of the bottom plate, the middle of the bottom plate is of a hollow structure, the number of the rotating plates is four, and the rotating plates are rotationally connected to the four bottom corners of the bottom plate respectively. The carbon fiber cloth is flatly laid at the upper end of the bottom plate and the upper end of the rotating plate, and the upper ends of the four bottom corners of the bottom plate are respectively provided with a beam fixing base connected with the bottom of the rotating plate in a rotating mode. The bottom plate, the rotating plate, the elastic clamping pieces, the beam fixing bases, the transmission rods, the first rubber pads, the second rubber pads, the elastic clamping pieces and the beam fixing bases are arranged to clamp the two sides of a beam body; the carbon fiber cloth and the reinforcing support are fixed to the bottom of the beam body according to the positioning line drawing positions, the rotating plate is rotated towards the beam body, the carbon fiber cloth is flatly rotated to the surface of the beam body, and therefore the two ends of the carbon fiber cloth are accurately pasted to the surface of the beam body, and compared with manual pasting of the carbon fiber cloth, installation is more convenient, and installation efficiency is higher.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of carbon fiber reinforced structure technology, and in particular to a carbon fiber reinforced structure for beam side that is easy to install. Background Technology

[0002] Carbon fiber cloth is bonded to the surface of beams using high-performance structural adhesive, forming a unified whole with the beam to withstand external forces. Carbon fiber cloth boasts advantages such as high strength, high modulus, light weight, and corrosion resistance, effectively improving the beam's bending and shear resistance, enhancing its load-bearing performance, and extending its service life. Current carbon fiber reinforcement installation methods involve three steps: first, surface treatment of the beam using a grinder to expose and smooth the concrete sides; second, marking and applying adhesive; and third, bonding the carbon fiber cloth. This bonding process requires manual installation of the carbon fiber cloth on the adhesive-coated beam surface. Typically, one end of the cloth is bonded first to secure it to the beam surface before bonding the other end. Because the adhesive is prone to slippage, ensuring accurate placement of the carbon fiber cloth is time-consuming and labor-intensive, making the installation of carbon fiber reinforcement structures on beam sides inconvenient. Utility Model Content

[0003] The problem this utility model aims to solve is the inconvenience of installing the carbon fiber reinforcement structure on the beam side.

[0004] To solve the above-mentioned technical problems, this utility model provides a beam-side carbon fiber reinforcement structure that is easy to install, including carbon fiber cloth and reinforcement brackets. The reinforcement brackets include a base plate and rotating plates rotatably connected to the bottom corners of the base plate. The center of the base plate has a hollow structure. There are four rotating plates, which are rotatably connected to the four bottom corners of the base plate. The carbon fiber cloth is laid flat on the upper part of the base plate and the upper part of the rotating plates. The upper part of the four bottom corners of the base plate is provided with beam fixing seats that are rotatably connected to the bottom of the rotating plates. The beam fixing seats are slidably connected to the upper part of the base plate. One end of the transmission rod is rotatably connected inside the beam fixing seat, and the other end of the transmission rod is threaded to the inside of the base plate. The transmission rod is arranged in a direction perpendicular to the beam fixing seat. A first rubber pad is provided at the upper part of the base plate between the two beam fixing seats. A second rubber pad is provided at the upper part of the rotating plates. An elastic clip is slidably connected to the upper part of the second rubber pad at the end away from the base plate. The four bottom corners of the carbon fiber cloth are clamped and fixed to the upper part of the second rubber pad by the elastic clips.

[0005] Preferably, the beam fixing seat has first sliding grooves on both sides of its bottom, and the four bottom corners of the base plate are respectively provided with guide rails that are slidably connected to the first sliding grooves. One end of the guide rail is located at the edge of the base plate, and the other end abuts against the side of the first rubber pad.

[0006] Preferably, a rotating groove is provided on the outer side of the upper end of the beam fixing seat, and round holes are provided on both sides of the rotating groove. Rotating shafts that are fixedly connected to both sides of the rotating plate are rotatably connected inside the round holes.

[0007] Preferably, a transmission block is provided at the bottom center of the beam fixing seat, a second sliding groove is provided at the upper center of the base plate to slide and connect with the transmission block, a threaded hole is provided at one end of the base plate to communicate with the center of the second sliding groove, the transmission rod is threadedly connected to the inside of the threaded hole, and one end of the transmission rod extends to the outside of the base plate and is provided with a rotating block.

[0008] Preferably, a limiting strip is provided on the upper end of the second rubber pad in a direction perpendicular to the surface. The limiting strip is made of rubber material, one end of the limiting strip is close to the elastic clip, and the other end of the limiting strip abuts against the edge of the second rubber pad.

[0009] Preferably, the upper end of the rotating plate away from the base plate is provided with a positioning post that penetrates the second rubber pad. The elastic clamp is perpendicular to the rotating plate. The elastic clamp includes a sliding hole, a fixing block, an arc-shaped clamp, and a push-pull handle. The elastic clamp has a sliding hole along its length inside. The positioning post is slidably connected to the inside of the sliding hole. The upper end of the positioning post passes through the sliding hole and is provided with a fixing block. The width of the lower end of the fixing block is greater than the width of the sliding hole and abuts against the upper end of the sliding hole. An arc-shaped clamp is provided at the bottom of the elastic clamp on the side of the upper end of the second rubber pad. The bottom of the arc-shaped clamp abuts against the upper end of the second rubber pad. The end of the elastic clamp away from the arc-shaped clamp extends to the outside of the rotating plate and is provided with a push-pull handle.

[0010] Preferably, the base plate has two first mounting holes that penetrate the first rubber pad at equal intervals on both sides of the beam fixing seat in the moving direction, away from the carbon fiber cloth, and the rotating plate has multiple second mounting holes that penetrate the second rubber pad at equal intervals along the length direction on the side away from the carbon fiber cloth.

[0011] Preferably, a third rubber pad is provided on the inner side of the beam fixing seat.

[0012] Preferably, the height of the limiting strip is 2-3 mm and the height of the elastic clip is 0.5-1 mm.

[0013] Preferably, the bottom of the rotating groove abuts against the outer side of the rotating plate in the horizontal direction.

[0014] Compared with the prior art, this utility model provides a beam-side carbon fiber reinforcement structure that is easy to install and has the following beneficial effects:

[0015] 1. This utility model comprises a base plate, a rotating plate, elastic clamps, a beam fixing seat, a transmission rod, a first rubber pad, a second rubber pad, and elastic clamps. The four bottom corners of the base plate are rotatably connected to the rotating plate, which supports the bottom of the carbon fiber cloth. Rotating the transmission rod, which is threaded inside the base plate, rotatably connects to the beam fixing seat, causing the beam fixing seat to move. The beam fixing seat clamps the carbon fiber cloth and the reinforcing bracket from both sides of the beam, fixing them to the bottom of the beam according to the positioning lines. This allows for manual operation; by rotating the rotating plate towards the beam, the carbon fiber cloth is smoothly rotated to the beam surface, achieving accurate bonding of both ends of the carbon fiber cloth to the beam surface. This is significantly improved compared to manual bonding of carbon fiber cloth. The carbon fiber reinforcement structure offers greater ease and efficiency in installation. By incorporating first and second rubber pads, the elasticity of the base plate and the upper part of the rotating plate is increased, thereby enhancing the contact area between the reinforcement bracket and the carbon fiber cloth. This facilitates full contact between the carbon fiber cloth and the beam, allowing for air expulsion and improving bonding quality. The elastic clips, made of metal or plastic, utilize their excellent elasticity to clamp and fix the carbon fiber cloth to the upper part of the second rubber pad, further improving its stability. The rotating plate, used for installation and fixation to the beam, secures the carbon fiber cloth to both sides, preventing curling and detachment and improving the stability of the installation. This solves the problem of inconvenient installation of carbon fiber reinforcement structures on beam sides. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the main structure of this utility model in its unfolded state;

[0017] Figure 2 This is a schematic diagram of the main structure of this utility model in its installation state;

[0018] Figure 3 This is an exploded view of the connection structure between the base plate and the rotating plate of this utility model;

[0019] Figure 4 This is a schematic diagram of the elastic clip structure of this utility model.

[0020] In the diagram: 1. Carbon fiber cloth; 2. Reinforcing bracket; 201. Base plate; 202. Rotating plate; 3. Beam fixing seat; 4. Transmission rod; 5. First rubber pad; 6. Second rubber pad; 7. Elastic clamping piece; 71. Sliding hole; 72. Fixing block; 73. Arc-shaped clamping block; 74. Push-pull handle; 8. First sliding groove; 9. Guide rail; 10. Rotating groove; 11. Round hole; 12. Transmission block; 13. Second sliding groove; 14. Threaded hole; 15. Rotating block; 16. Limiting strip; 17. Positioning post; 18. First mounting hole; 19. Third rubber pad; 20. Second mounting hole. Detailed Implementation

[0021] This utility model relates to a beam-side carbon fiber reinforcement structure that is easy to install, such as... Figure 1-4 As shown, the system includes carbon fiber cloth 1 and a reinforcing bracket 2. The reinforcing bracket 2 includes a base plate 201 and rotating plates 202 rotatably connected to the bottom corners of the base plate 201. The center of the base plate 201 has a hollow structure. There are four rotating plates 202, each rotatably connected to one of the four bottom corners of the base plate 201. The carbon fiber cloth 1 is laid flat on the upper ends of the base plate 201 and the rotating plates 202. The upper ends of the four bottom corners of the base plate 201 are respectively provided with beam fixing seats 3, which are rotatably connected to the bottom of the rotating plates 202. The beam fixing seats 3 are slidably connected to the upper end of the base plate 201. One end of a transmission rod 4 is rotatably connected inside the beam fixing seat 3. The other end of the transmission rod 4 is threaded into the interior of the base plate 201. The transmission rod 4 is arranged in a direction perpendicular to the beam fixing seat 3. The upper end of the base plate 201 is located at two beams. A first rubber pad 5 is provided between the fixed seats 3, and a second rubber pad 6 is provided on the upper end of the rotating plate 202. An elastic clip 7 is slidably connected to the upper end of the second rubber pad 6 away from the base plate 201. The four bottom corners of the carbon fiber cloth 1 are respectively clamped and fixed to the upper end of the second rubber pad 6 by the elastic clip 7. By setting up the carbon fiber cloth 1 and the reinforcing bracket 2, the reinforcing bracket 2 serves as the main body for the installation of the carbon fiber reinforcement structure on the beam side. By setting up the base plate 201 and the rotating plate 202, the four bottom corners of the base plate 201 are respectively rotatably connected to the rotating plate 202. The bottom of the carbon fiber cloth 1 is supported by the base plate 201 and the rotating plate 202. By setting up the beam fixed seat 3 and the transmission rod 4, the transmission rod 4 is rotated. The transmission rod 4 is threaded inside the base plate 201. The transmission rod 4 is connected to the beam fixed seat 3. The fixed seat 3 rotates, driving the beam fixing seat 3 to move. Simultaneously, it ensures that the base plate 201 abuts against the bottom of the beam. The beam width is specified to be within the clamping range of the two beam fixing seats 3. The beam fixing seats 3 clamp the beam from both sides, fixing the carbon fiber cloth 1 and the reinforcing bracket 2 to the bottom of the beam according to the positioning lines. At this point, manual operation is possible. By rotating the rotating plate 202 to both sides of the beam, the carbon fiber cloth 1 moves smoothly to the surface of both sides of the beam, achieving accurate adhesion between the two ends of the carbon fiber cloth 1 and the beam surface. Compared to manual adhesion of the carbon fiber cloth 1, this method is more convenient and efficient. The first rubber pad 5 and the second rubber pad 6 enhance the elasticity of the base plate 201 and the upper part of the rotating plate 202, improving the adhesion between the reinforcing bracket 2 and the carbon fiber cloth 1. The contact area is large enough to facilitate full contact between the carbon fiber cloth 1 and the beam, and to facilitate the expulsion of air between the carbon fiber cloth 1 and the beam. The carbon fiber cloth 1 and the beam are tightly bonded, improving the bonding quality. By setting elastic clips 7, which are metal or plastic sheets, the good elasticity of the elastic clips 7 is used to clamp and fix the four bottom corners of the carbon fiber cloth 1 to the upper end of the second rubber pad 6, which improves the stability of the carbon fiber cloth 1. The base plate 201 and the rotating plate 202 are installed and fixed to the beam by bolts, so that the two sides of the carbon fiber cloth 1 are clamped between the reinforcement bracket 2 and the beam. This can prevent the two sides of the carbon fiber cloth 1 from curling or falling off, improve the stability of the installation of the carbon fiber cloth 1 reinforcement structure, and thus solve the problem of the inconvenience of the installation process of the carbon fiber reinforcement structure on the beam side.

[0022] In this embodiment of the utility model, the beam fixing seat 3 has first sliding grooves 8 on both sides of its bottom. The upper ends of the four bottom corners of the base plate 201 are respectively provided with guide rails 9 that are slidably connected to the first sliding grooves 8. One end of the guide rail 9 is located at the edge of the base plate 201, and the other end abuts against the side of the first rubber pad 5. By setting the first sliding grooves 8 and guide rails 9, and by slidably connecting the guide rails 9 with the first sliding grooves 8, the beam fixing seat 3 is ensured to move along the direction of the guide rails 9, thereby improving the stability of the beam fixing seat 3 when it moves.

[0023] In this embodiment of the utility model, a rotating groove 10 is provided on the outer side of the upper end of the beam fixing seat 3, and round holes 11 are provided on both sides of the rotating groove 10. A rotating shaft that is fixedly connected to both sides of the rotating plate 202 is rotatably connected inside the round hole 11. By providing the rotating groove 10, the rotating plate 202 can rotate between the vertical and horizontal directions, and at the same time, the rotating plate 202 can be positioned in the vertical or horizontal direction. By providing the round hole 11, the rotating shaft is rotatably connected to the inside of the round hole 11, which facilitates the rotation of the rotating plate 202.

[0024] In this embodiment of the utility model, a transmission block 12 is provided at the bottom center of the beam fixing seat 3, and a second sliding groove 13 is provided at the upper center of the base plate 201, which is slidably connected to the transmission block 12. A threaded hole 14 communicating with the center of the second sliding groove 13 is provided at one end of the base plate 201. The transmission rod 4 is threadedly connected to the inside of the threaded hole 14. One end of the transmission rod 4 extends to the outside of the base plate 201 and is provided with a rotating block 15. By setting the transmission block 12, the second sliding groove 13, and the threaded hole 14, the transmission rod 4 is threadedly driven inside the threaded hole 14. The transmission rod 4 rotates inside the transmission block 12, and at the same time drives the transmission block 12 to move inside the second sliding groove 13, thereby causing the beam fixing block 72 to move along the direction of the guide rail 9.

[0025] In this embodiment of the invention, a limiting strip 16 is provided on the upper end of the second rubber pad 6 in a direction perpendicular to the surface. The limiting strip 16 is made of rubber material. One end of the limiting strip 16 is close to the elastic clip 7, and the other end of the limiting strip 16 abuts against the edge of the second rubber pad 6. By setting the limiting strip 16, the carbon fiber cloth 1 is limited on both sides to prevent the carbon fiber cloth 1 from shaking on both sides and improve stability. Taking advantage of the good elasticity of the rubber material, when installing the reinforcing bracket 2, the gap between the limiting strip 16 and the beam is reduced, which facilitates the improvement of the stability of the bonding between the carbon fiber cloth 1 and the beam.

[0026] In this embodiment of the invention, a positioning post 17 penetrating the second rubber pad 6 is provided at the upper end of the rotating plate 202 away from the bottom plate 201. The elastic clamp 7 is perpendicular to the rotating plate 202. The elastic clamp 7 includes a sliding hole 71, a fixing block 72, an arc-shaped clamp 73, and a push-pull handle 74. The sliding hole 71 is provided inside the elastic clamp 7 along its length. The positioning post 17 is slidably connected to the sliding hole 71. The upper end of the positioning post 17 passes through the sliding hole 71 and is provided with the fixing block 72. The width of the lower end of the fixing block 72 is greater than the width of the sliding hole 71 and abuts against the upper end of the sliding hole 71. An arc-shaped clamp 73 is provided at the bottom of the elastic clamp 7 on the side above the second rubber pad 6. The bottom of the arc-shaped clamp 73 abuts against the upper end of the second rubber pad 6. The end of the elastic clamp 7 away from the arc-shaped clamp 73 extends to the rotating plate. The outer side of 202 is equipped with a push-pull handle 74. By setting a positioning post 17, a sliding hole 71, a fixing block 72, and an arc-shaped clamping block 73, the positioning post 17 passes through the sliding hole 71 and is slidably connected to the inside of the sliding hole 71, which facilitates the sliding of the elastic clamping piece 7 on the upper end of the second rubber pad 6. The fixing block 72 is fixed to the top of the positioning post 17, so that the elastic clamping piece 7 is fixed between the fixing block 72 and the second rubber pad 6. The arc-shaped clamping block 73 abuts against the upper end of the second rubber pad 6, which facilitates the clamping of the elastic clamping piece 7 with the carbon fiber cloth 1. By moving the push-pull handle 74, the arc-shaped clamping block 73 is moved out from the upper end of the carbon fiber cloth 1, thereby releasing the clamping and fixing effect of the elastic clamping piece 7 on the carbon fiber cloth 1, increasing the contact area between the carbon fiber cloth 1 and the beam, and facilitating the secure bonding of the carbon fiber cloth 1 with the beam.

[0027] In this embodiment of the utility model, the base plate 201 is provided with two first mounting holes 18 that pass through the first rubber pad 5 at equal intervals on both sides of the beam fixing seat 3 in the moving direction, away from the carbon fiber cloth 1. The rotating plate 202 is provided with a plurality of second mounting holes 20 that pass through the second rubber pad 6 at equal intervals along the length direction on the side away from the carbon fiber cloth 1. By setting the first mounting holes 18 and the second mounting holes 20, it is convenient for bolts to pass through the first mounting holes 18 and the second mounting holes 20 and be fixed to the beam body. This makes the base plate 201 and the rotating plate 202 fixed to the beam body, and the bottom and sides of the carbon fiber cloth 1 are fixed between the beam body and the rotating plate 202, preventing the sides of the carbon fiber cloth 1 from curling or falling off.

[0028] In this embodiment of the utility model, a third rubber pad 19 is provided on the inner side of the beam fixing seat 3. By providing the third rubber pad 19, the contact area between the inner side of the beam fixing seat 3 and the carbon fiber cloth 1 is increased, which facilitates the bonding of the carbon fiber cloth 1 to the beam body.

[0029] In this embodiment of the utility model, the height of the limiting strip 16 is 2-3mm and the height of the elastic clip 7 is 0.5-1mm. By setting the height of the limiting strip 16 to 2-3mm, the contact area between the upper end of the rotating plate 202 and the carbon fiber cloth 1 is more even, ensuring that the carbon fiber cloth 1 is laid flat and improving the bonding quality. By setting the height of the elastic clip 7 to 0.5-1mm, the gap between the second rubber pad 6 and the beam is reduced, making it easier for the carbon fiber cloth 1 to fully contact the beam.

[0030] In this embodiment of the utility model, the bottom of the rotating groove 10 abuts against the outer side of the rotating plate 202 in the horizontal direction. By setting the bottom of the rotating groove 10 to abut against the outer side of the rotating plate 202 in the horizontal direction, it is easy to fix the rotating plate 202 in the horizontal direction, thereby making it easy for the carbon fiber cloth 1 to be laid flat on the bottom plate 201 and the upper end of the rotating plate 202.

[0031] In use, firstly, the beam surface is treated by using a grinder to expose the concrete on the sides of the beam and grinding it smooth. Marking the positioning lines and applying structural adhesive are then done. The rotating plate 202 is rotated to a horizontal position, and the carbon fiber cloth 1 is laid flat on the rotating plate 202 and the upper end of the base plate 201. Simultaneously, it is ensured that both sides of the carbon fiber cloth 1 are between the two limiting strips 16, and that the carbon fiber cloth 1 is clamped and fixed between the elastic clips 7 and the second rubber pad 6. By moving the push-pull handle 74, the arc-shaped clamping block 73 is moved to the upper end of the carbon fiber cloth 1. The four bottom corners of the carbon fiber cloth 1 are clamped and fixed by the elastic clips 7. Then, the reinforcing bracket 2 is lifted, and the middle of the carbon fiber cloth 1 is placed at the marked positioning point at the bottom of the beam. The base plate 201 is pushed so that it abuts against the bottom of the beam. The rotating block 15 is rotated, which drives the transmission rod 4. The threaded drive is performed inside the threaded hole 14. The transmission rod 4 rotates inside the transmission block 12, which in turn drives the transmission block 12 to move inside the second slide groove 13. This causes the beam fixing block 72 to move along the guide rail 9. The two sides of the beam are clamped between the two beam fixing blocks 72. The rotating plates 202 on both sides are rotated respectively. The rotating plates 202 drive the two ends of the carbon fiber cloth 1 to rotate to the marked positioning position on the side of the beam. By pressing the rotating plates 202 and the carbon fiber cloth 1 on the surface of the beam, the carbon fiber cloth 1 is made to fully contact the beam. At the same time, the push-pull handle 74 is moved outward, which releases the clamping effect of the arc-shaped clamp 73 on the carbon fiber cloth 1. Thus, the carbon fiber cloth 1 is firmly attached to the beam. The bolts are passed through the first mounting hole 18 and the second mounting hole 20 to install and fix the carbon fiber cloth 1 to the beam. This fixes the two sides of the carbon fiber cloth 1 between the beam and the rotating plate 202.

[0032] It is understood that this utility model has been described through some embodiments, and those skilled in the art will recognize that various changes or equivalent substitutions can be made to these features and embodiments without departing from the spirit and scope of this utility model. Furthermore, under the teachings of this utility model, these features and embodiments can be modified to adapt to specific situations and materials without departing from the spirit and scope of this utility model. Therefore, this utility model is not limited to the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of this application are within the protection scope of this utility model.

Claims

1. A beam-side carbon fiber reinforcement structure that is easy to install, comprising carbon fiber cloth (1) and a reinforcement bracket (2), characterized in that, The reinforcing bracket (2) includes a base plate (201) and a rotating plate (202) rotatably connected to the bottom corner of the base plate (201). The center of the base plate (201) has a hollow structure. There are four rotating plates (202) and they are rotatably connected to the four bottom corners of the base plate (201). Carbon fiber cloth (1) is laid flat on the upper end of the base plate (201) and the rotating plate (202). The upper end of the four bottom corners of the base plate (201) is provided with a beam fixing seat (3) rotatably connected to the bottom of the rotating plate (202). The beam fixing seat (3) is slidably connected to the upper end of the base plate (201). The beam fixing seat (3) is internally connected to the bottom of the rotating plate (202). One end of the transmission rod (4) is rotatably connected, and the other end of the transmission rod (4) is threaded to the inside of the base plate (201). The transmission rod (4) is set in a direction perpendicular to the beam fixing seat (3). A first rubber pad (5) is set at the upper end of the base plate (201) between the two beam fixing seats (3). A second rubber pad (6) is set at the upper end of the rotating plate (202). An elastic clip (7) is slidably connected to the upper end of the second rubber pad (6) away from the base plate (201). The four bottom corners of the carbon fiber cloth (1) are respectively clamped and fixed to the upper end of the second rubber pad (6) by the elastic clip (7).

2. The beam-side carbon fiber reinforcement structure for easy installation according to claim 1, characterized in that: The beam fixing seat (3) has a first sliding groove (8) on both sides of its bottom. The bottom corners of the base plate (201) are respectively provided with guide rails (9) that are slidably connected to the first sliding groove (8). One end of the guide rail (9) is located at the edge of the base plate (201), and the other end abuts against the side of the first rubber pad (5).

3. The easily installable carbon fiber reinforcement structure for beam sides according to claim 1, characterized in that: The upper outer side of the beam fixing seat (3) is provided with a rotating groove (10), and round holes (11) are provided on both sides of the rotating groove (10). The round holes (11) are rotatably connected to the rotating shafts that are fixedly connected to both sides of the rotating plate (202).

4. The beam-side carbon fiber reinforcement structure that is easy to install according to claim 1, characterized in that: A transmission block (12) is provided at the bottom center of the beam fixing seat (3). A second sliding groove (13) that is slidably connected to the transmission block (12) is provided at the upper center of the base plate (201). A threaded hole (14) that communicates with the center of the second sliding groove (13) is provided at one end of the base plate (201). The transmission rod (4) is threadedly connected to the threaded hole (14). One end of the transmission rod (4) extends to the outside of the base plate (201) and is provided with a rotating block (15).

5. The beam-side carbon fiber reinforcement structure for easy installation according to claim 1, characterized in that: The upper end of the second rubber pad (6) is provided with a limiting strip (16) in the direction perpendicular to the surface. The limiting strip (16) is made of rubber material. One end of the limiting strip (16) is close to the elastic clip (7), and the other end of the limiting strip (16) abuts against the edge of the second rubber pad (6).

6. The easily installable carbon fiber reinforced beam side structure according to claim 1, characterized in that: The upper end of the rotating plate (202) away from the base plate (201) is provided with a positioning post (17) that penetrates the second rubber pad (6). The elastic clamp (7) is perpendicular to the rotating plate (202). The elastic clamp (7) includes a sliding hole (71), a fixing block (72), an arc-shaped clamp (73), and a push-pull handle (74). The elastic clamp (7) has a sliding hole (71) inside along its length. The positioning post (17) is slidably connected to the sliding hole (71). The upper end of the elastic clip (7) passes through the sliding hole (71) and is provided with a fixing block (72). The width of the lower end of the fixing block (72) is greater than the width of the sliding hole (71) and abuts against the upper end of the sliding hole (71). The bottom of the elastic clip (7) on the upper side of the second rubber pad (6) is provided with an arc-shaped clip (73). The bottom of the arc-shaped clip (73) abuts against the upper end of the second rubber pad (6). The end of the elastic clip (7) away from the arc-shaped clip (73) extends to the outside of the rotating plate (202) and is provided with a push-pull handle (74).

7. The easily installable carbon fiber reinforced beam side structure according to claim 1, characterized in that: The base plate (201) is located on both sides of the beam fixing seat (3) in the moving direction and has two first mounting holes (18) that penetrate the first rubber pad (5) at equal intervals at a position away from the carbon fiber cloth (1). The rotating plate (202) is provided with a plurality of second mounting holes (20) that penetrate the second rubber pad (6) at equal intervals along the length direction on the side away from the carbon fiber cloth (1).

8. The easily installable carbon fiber reinforcement structure for beam sides according to claim 1, characterized in that: A third rubber pad (19) is provided on the inner side of the beam fixing seat (3).

9. A beam-side carbon fiber reinforcement structure that is easy to install according to claim 5, characterized in that: The height of the limiting strip (16) is 2-3 mm, and the height of the elastic clip (7) is 0.5-1 mm.

10. A beam-side carbon fiber reinforcement structure that is easy to install according to claim 3, characterized in that: The bottom of the rotating groove (10) abuts against the outer side of the rotating plate (202) in the horizontal direction.