Building wall reinforcing construction structure
By combining internal and external wall reinforcement structures, and utilizing reinforcement plates, bolts, and anti-rotation components, the problem of insufficient stability of prefabricated wall connection devices under external forces is solved, achieving stable support and tension, and enhancing the stability and ease of maintenance of the wall.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2026-03-03
AI Technical Summary
When faced with external forces, the limit pins of existing prefabricated wall connection devices may slip out, causing the support rods to fail to provide stable stabilizing force and affecting the stability of the wall.
The system employs both internal and external wall reinforcement structures. Through the combination of reinforcement plates, reinforcement bolts, rotating shafts, anti-rotation components, and auxiliary support components, it ensures stable connection and angle adjustment between reinforcement plates. Anti-rotation components and connecting nuts restrict rotation, and the auxiliary support components are replaceable to improve stability.
It provides stable support and tension, enhances the connection strength between adjacent walls, improves the overall stability of prefabricated walls and makes them easier to repair and replace, thus reducing costs.
Smart Images

Figure CN223964044U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of wall reinforcement technology, specifically relating to a building wall reinforcement structure. Background Technology
[0002] When installing prefabricated walls, they are usually installed through assembly and other methods. However, compared to reinforced concrete walls, the connection strength between adjacent walls connected by prefabricated structures is relatively low. Therefore, reinforcement structures are needed to strengthen the prefabricated walls during installation to improve their stability and facilitate subsequent construction.
[0003] In related prior art, such as Chinese Patent No. CN222557848U, a wall reinforcement connection device is disclosed, including a first prefabricated building wall, a second prefabricated building wall, and a reinforcement connection mechanism. The first prefabricated building wall is fixedly connected to the second prefabricated building wall through assembly connectors, and the reinforcement connection mechanism is fixedly installed at the corner of the first and second prefabricated building walls. This solution sets support grooves and tension grooves on the load-bearing plate assembly, and uses limiting pins to fix and limit the support rods. While ensuring that the support rods can provide support or tension, it also allows for direct disassembly and replacement when the support rods deform or need to be replaced. This avoids the situation where the entire device cannot be used normally because the support rods cannot be directly replaced, greatly improving the practicality of the device.
[0004] However, in actual use, because both the support groove and the tension groove have openings that connect to the outside, and the limiting pin on the support rod can enter and exit the support groove or tension groove through these openings, the support rod, when installed in the support groove or tension groove, can only provide the corresponding support force or tension. The force exerted on the device by the wall due to external conditions could be either a support force or a tension force. That is, when faced with another external force, the limiting pin may slip out of the opening, causing the support rod to fail to provide a stable limiting force. In summary, this device has defects in actual use and cannot provide a stable stabilizing force to the wall. Utility Model Content
[0005] The present invention aims to provide a structural reinforcement for building walls to solve the problem that the existing devices mentioned above cannot provide stable stabilizing force to the walls during actual use.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a building wall reinforcement structure, comprising...
[0007] The interior wall reinforcement structure includes a first reinforcement plate, a second reinforcement plate, a third reinforcement plate, and reinforcement bolts. The ends of the first reinforcement plate and the second reinforcement plate are rotatably connected. Slots are respectively opened on the first reinforcement plate and the second reinforcement plate. Reinforcement bolts are respectively inserted into both ends of the third reinforcement plate, and the ends of the reinforcement bolts are threaded into the slots. Connecting bolts are respectively inserted into the first reinforcement plate and the second reinforcement plate.
[0008] An external wall reinforcement structure, installed on the outside of the wall, is used to reinforce the wall.
[0009] The principle and effects of this technical solution:
[0010] 1. By setting connecting bolts and rotatably connecting the ends of the first and second reinforcing plates, the first and second reinforcing plates can be installed on two adjacent walls respectively. Then, the third reinforcing plate is fixed to the upper end of the first and second reinforcing plates by reinforcing bolts. By limiting the rotation of the first reinforcing plate relative to the second reinforcing plate by ensuring that the length of the third reinforcing plate cannot change, the third reinforcing plate can keep the position between the first and second reinforcing plates stable, so as to provide stable support and tension to the two adjacent walls, thereby making them more stable when facing external conditions.
[0011] 2. By setting the slot, the position of the third reinforcing plate relative to the first and second reinforcing plates is adjustable to accommodate different angles between the first and second reinforcing plates.
[0012] The present invention is further configured such that: the external wall reinforcement structure includes a fourth reinforcement plate, a fifth reinforcement plate, a rotating shaft and an anti-rotation component, the end of the fourth reinforcement plate is fixed with a rotating shaft, the rotating shaft is rotatably connected to the fifth reinforcement plate, the anti-rotation component is installed on the fifth reinforcement plate and is used to limit the fourth reinforcement plate, and connecting bolts are inserted into the side wall of the fourth reinforcement plate.
[0013] The principle and effect of this technical solution: After the fourth reinforcing plate is fixed to the outer wall by connecting bolts, the angle between the fifth and fourth reinforcing plates can be adjusted by rotation so that the fifth reinforcing plate fits against the outer wall of the adjacent wall. Then, the anti-rotation component restricts the angle of the fourth reinforcing plate, that is, restricts the position of the fifth reinforcing plate relative to the fourth reinforcing plate. This allows the fifth and fourth reinforcing plates to provide support and tension limit for the adjacent walls, thereby improving the stability between the two walls.
[0014] The present invention is further configured as follows: the anti-rotation component includes an anti-rotation head, an anti-rotation rod, a connecting nut, and a snap-fit connector. The snap-fit connector is fixed to the end of the rotating shaft, and multiple snap-fit grooves are spaced apart circumferentially on the snap-fit connector. An anti-rotation groove is provided on the fifth reinforcing plate. The anti-rotation rod includes an anti-rotation section and a connecting section. The anti-rotation section is located above the connecting section, and the outer edge of the anti-rotation section has an anti-rotation protrusion. The anti-rotation section and the anti-rotation protrusion are slidably fitted with the anti-rotation groove. The connecting nut is threaded onto the connecting section, and the connecting nut abuts against the outer wall of the fifth reinforcing plate. The anti-rotation head is fixed to the end of the anti-rotation section, and the side wall of the anti-rotation head has a limiting protrusion that is adapted to the snap-fit groove.
[0015] The principle and effect of this technical solution are as follows: By cooperating with the anti-rotation protrusion, the anti-rotation section and the anti-rotation groove, the anti-rotation head and the limiting protrusion cannot rotate after being installed on the fifth reinforcing plate. After the limiting protrusion is inserted into the snap-fit groove, the snap-fit joint cannot rotate, thereby preventing the rotating shaft connected to the snap-fit joint from rotating. In other words, the fourth reinforcing plate can maintain a stable position relative to the fifth reinforcing plate. Furthermore, the anti-rotation head can maintain a stable position by limiting the fitting of the connecting section through the connecting nut. When adjustment is required, the anti-rotation head can be removed by disassembling and assembling the connecting nut.
[0016] The present invention is further configured such that: the external wall reinforcement structure also includes insert plates and sleeve plates, insert plates are fixed to the ends of the fourth reinforcement plate and the fifth reinforcement plate respectively, sleeve plates are slidably fitted on the insert plates, and connecting bolts are inserted into both the sleeve plates and the insert plates, and auxiliary support components are installed on the side wall of the sleeve plates.
[0017] The principle and effect of this technical solution: By setting up insert plates and sleeve plates, the auxiliary support components can be connected to the fourth or fifth reinforcing plate in a set manner, so that the auxiliary support components can be replaced as a whole, which facilitates maintenance and replacement, saves costs, and the sleeve plates and insert plates are limited by connecting bolts, so that the auxiliary support components can maintain a stable position.
[0018] The present invention is further configured such that: the auxiliary support component includes an L-shaped support plate, which is fixed to the bottom of the sleeve plate.
[0019] The principle and effect of this technical solution: By setting up the L-shaped support plate, the stability of the wall can be improved by the L-shaped support plate abutting against the bottom surface, thereby making the integrity between two adjacent prefabricated walls strong and less likely to tilt relative to the bottom surface.
[0020] The present invention is further configured such that: the auxiliary support assembly also includes a diagonal brace, one end of which is rotatably connected to the sleeve plate, and the other end of which is hinged to the end of the L-shaped support plate away from the sleeve plate.
[0021] The principle and effect of this technical solution: The installation of diagonal braces can improve the load-bearing capacity of the reinforced structure, making the wall less likely to tilt outward.
[0022] The present invention is further configured such that the outer wall of the sleeve plate is flush with the outer wall of the fourth reinforcing plate or the outer wall of the fifth reinforcing plate.
[0023] The principle and effect of this technical solution: By making the outer wall of the sleeve plate flush with the outer wall of the fourth or fifth reinforcing plate, the sleeve plate can be abutted against the outer side of the wall together with the corresponding fourth or fifth reinforcing plate. Attached Figure Description
[0024] Figure 1 This is the front view of the present invention;
[0025] Figure 2 for Figure 1 Enlarged view of the internal wall reinforcement structure;
[0026] Figure 3 for Figure 1 Exploded structural diagram of the reinforced external wall structure;
[0027] Figure 4 for Figure 3 Enlarged view of the fourth and fifth reinforcing plates in the middle section;
[0028] Figure 5 for Figure 4 Exploded structure diagram. Detailed Implementation
[0029] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments:
[0030] The reference numerals in the accompanying drawings include:
[0031] 110. First reinforcing plate; 120. Second reinforcing plate; 130. Third reinforcing plate; 140. Reinforcing bolt; 150. Slot;
[0032] 210. Connecting bolts;
[0033] 310. Fourth reinforcing plate; 320. Fifth reinforcing plate; 321. Anti-rotation groove; 330. Rotating shaft;
[0034] 410. Anti-rotation head; 411. Limiting protrusion; 420. Anti-rotation rod; 421. Anti-rotation section; 422. Connecting section; 423. Anti-rotation protrusion;
[0035] 430. Connecting nut; 440. Snap-fit connector; 441. Snap-fit groove;
[0036] 510. Insert plate; 520. Sleeve plate; 530. L-shaped support plate; 540. Diagonal brace.
[0037] Example:
[0038] As attached Figure 1-5 As shown, this utility model discloses a building wall reinforcement structure, including an internal wall reinforcement structure and an external wall reinforcement structure. The internal wall reinforcement structure includes a first reinforcement plate 110, a second reinforcement plate 120, a third reinforcement plate 130, and reinforcement bolts 140. The ends of the first reinforcement plate 110 and the second reinforcement plate 120 are rotatably connected (which can be a screw and nut configuration, with the screw passing through the first reinforcement plate 110 and the second reinforcement plate 120, and the nut threaded onto the screw). Slots 150 are respectively provided on the first reinforcement plate 110 and the second reinforcement plate 120. The third reinforcement plate 130... Reinforcing bolts 140 are inserted into both ends of the first reinforcing plate 110 and the second reinforcing plate 120 respectively. The ends of the reinforcing bolts 140 are threaded into the slots 150. Depending on the position between the first reinforcing plate 110 and the second reinforcing plate 120, the reinforcing bolts 140 can also be installed on the first reinforcing plate 110 and the second reinforcing plate 120 by tapping, so as to avoid the situation that the reinforcing bolts 140 of the third reinforcing plate 130 cannot be threaded into the slots 150 at a specific angle position. Connecting bolts 210 are inserted into the first reinforcing plate 110 and the second reinforcing plate 120 respectively. The ends of the connecting bolts 210 are threaded into the wall.
[0039] The external wall reinforcement structure includes a fourth reinforcement plate 310, a fifth reinforcement plate 320, a rotating shaft 330, and an anti-rotation assembly. The fourth reinforcement plate 310 has a rotating shaft 330 fixed to its end, and the rotating shaft 330 is rotatably connected to the fifth reinforcement plate 320. The anti-rotation assembly includes an anti-rotation head 410, an anti-rotation rod 420, a connecting nut 430, and a locking connector 440. The locking connector 440 is fixed to the end of the rotating shaft 330, and has multiple circumferentially spaced locking slots 441. The fifth reinforcement plate 320 has an anti-rotation groove 321, and the anti-rotation rod 420 includes a stop... The rotating section 421 and the connecting section 422 are connected. The anti-rotation section 421 is located above the connecting section 422, and the outer edge of the anti-rotation section 421 has an anti-rotation protrusion 423. The entire anti-rotation section 421 and the anti-rotation protrusion 423 are slidably engaged with the anti-rotation groove 321. The connecting nut 430 is threaded onto the connecting section 422, and the connecting nut 430 abuts against the outer wall of the fifth reinforcing plate 320. The anti-rotation head 410 is fixed to the end of the anti-rotation section 421, and the side wall of the anti-rotation head 410 has a limiting protrusion 411, which is adapted to the snap-fit groove 441.
[0040] The external wall reinforcement structure also includes insert plates 510 and sleeve plates 520. Insert plates 510 are fixed to the ends of the fourth reinforcement plate 310 and the fifth reinforcement plate 320, respectively. Sleeve plates 520 are slidably fitted onto insert plates 510, and connecting bolts 210 are inserted into both sleeve plates 520 and insert plates 510. An auxiliary support assembly is installed on the side wall of sleeve plate 520. The auxiliary support assembly includes an L-shaped support plate 530 and a diagonal brace 540. The L-shaped support plate 530 is fixed to the bottom of sleeve plate 520. One end of the diagonal brace 540 is rotatably connected to sleeve plate 520, and the other end of the diagonal brace 540 is hinged to the end of the L-shaped support plate 530 away from sleeve plate 520. The outer wall of sleeve plate 520 is flush with the outer wall of the fourth reinforcement plate 310 or the outer wall of the fifth reinforcement plate 320.
[0041] One side of the L-shaped support plate 530 abuts against the wall, and the other side abuts against the ground. If necessary, the L-shaped support plate 530 can be fixed to the wall and the ground by connecting bolts 210 to further strengthen the connection between the wall and the ground. The outer wall of the sleeve plate 520 corresponding to the fourth reinforcing plate 310 is flush with the outer wall of the fourth reinforcing plate 310, and the outer wall of the sleeve plate 520 corresponding to the fifth reinforcing plate 320 is flush with the outer wall of the fifth reinforcing plate 320.
[0042] The above descriptions are merely embodiments of this utility model. Commonly known technical solutions or characteristics are not described in detail here. It should be noted that those skilled in the art can make various modifications and improvements without departing from the technical solution of this utility model. These modifications and improvements should also be considered within the scope of protection of this utility model, and will not affect the effectiveness of the implementation of this utility model or the practicality of the patent. The scope of protection claimed in this application should be determined by the content of its claims, and the specific embodiments described in the specification can be used to interpret the content of the claims.
Claims
1. A building wall reinforcement construction structure, characterized by: Comprising The inner wall reinforcing structure comprises a first reinforcing plate, a second reinforcing plate, a third reinforcing plate and reinforcing bolts, the end of the first reinforcing plate is rotationally connected with the second reinforcing plate, the first reinforcing plate and the second reinforcing plate are respectively provided with a slot, the two ends of the third reinforcing plate are respectively provided with the reinforcing bolts, the end of the reinforcing bolt is threadedly connected with the slot, and the first reinforcing plate and the second reinforcing plate are respectively provided with a connecting bolt. The outer wall reinforcing structure is installed on the outer side of the wall body and is used for reinforcing the wall body.
2. A building wall reinforcing construction structure according to claim 1, wherein: The outer wall reinforcing structure comprises a fourth reinforcing plate, a fifth reinforcing plate, a rotating shaft and a rotation stopping assembly, the end of the fourth reinforcing plate is fixedly provided with the rotating shaft, the rotating shaft is rotationally connected with the fifth reinforcing plate, the rotation stopping assembly is installed on the fifth reinforcing plate and is used for limiting the fourth reinforcing plate, and the side wall of the fourth reinforcing plate is provided with a connecting bolt.
3. A building wall reinforcing construction structure according to claim 2, wherein: The rotation stopping assembly comprises a rotation stopping head, a rotation stopping rod, a connecting nut and a clamping head, the clamping head is fixedly connected with the end of the rotating shaft, a plurality of clamping grooves are arranged on the clamping head in the circumferential direction, the fifth reinforcing plate is provided with a rotation stopping groove, the rotation stopping rod comprises a rotation stopping section and a connecting section, the rotation stopping section is located above the connecting section, the outer edge of the rotation stopping section is provided with a rotation stopping protrusion, the rotation stopping section and the rotation stopping protrusion are slidably connected with the rotation stopping groove, the connecting nut is threadedly connected with the connecting section, the connecting nut is in abutment with the outer wall of the fifth reinforcing plate, the rotation stopping head is fixedly connected with the end of the rotation stopping section, the side wall of the rotation stopping head is provided with a limiting protrusion, and the limiting protrusion is matched with the clamping groove.
4. A building wall reinforcing construction structure according to claim 2, wherein: The outer wall reinforcing structure further comprises a plug plate and a sleeve plate, the end of the fourth reinforcing plate and the fifth reinforcing plate is fixedly provided with the plug plate, the sleeve plate is slidably connected with the plug plate, the connecting bolt is threadedly connected with the plug plate and the sleeve plate, and the auxiliary supporting assembly is installed on the side wall of the sleeve plate.
5. A building wall reinforcing construction structure according to claim 4, wherein: The auxiliary supporting assembly comprises an L-shaped supporting plate, and the L-shaped supporting plate is fixedly connected with the bottom of the sleeve plate.
6. A building wall reinforcing construction structure according to claim 5, wherein: The auxiliary supporting assembly further comprises an inclined supporting rod, one end of the inclined supporting rod is rotationally connected with the sleeve plate, and the other end of the inclined supporting rod is hingedly connected with the end of the L-shaped supporting plate, which is away from the sleeve plate.
7. A building wall reinforcing construction structure according to claim 4, wherein: The outer wall of the sleeve plate is flush with the outer wall of the fourth reinforcing plate or the outer wall of the fifth reinforcing plate.
Citation Information
Patent Citations
Wall reinforcing and connecting device
CN222557848U