Reinforcing structure of building design beam
By designing a building-designed beam reinforcement structure including main beam, reinforcement mechanism, support column, secondary beam and auxiliary mechanism, the problems of inconvenience in installation and poor applicability of the existing reinforcement structure are solved, and higher stability and safety are achieved, which can effectively support the stability of the building structure during major vibrations.
Patent Information
- Application Number
- CN202421784357.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-26
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-07-26
AI Technical Summary
The existing architectural design beam reinforcement structure is inconvenient to install and has poor applicability, which cannot effectively support the stability of the building structure during major vibrations.
An architectural design beam reinforcement structure including main beam, reinforcement mechanism, support column, secondary beam and auxiliary mechanism is designed. The reinforcement mechanism enhances the connection strength between the support column and the main beam by bending the combination of the reinforcement plate, the reinforcement rib plate, the reinforcement block, the threaded column, the first mounting plate, the bite gasket, the nylon anti-loosening nut, the carbon fiber composite rubber pad, the first screw and the first nut, and realizes the buffering, shock absorption and support functions through the auxiliary mechanism.
This reinforced structure can effectively enhance the stability and safety of building design beams, disperse and bear the load of the main beam, and improve the seismic resistance of the building structure during major vibrations.
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Figure CN222862966U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of building structures, in particular to a reinforcement structure of a building design beam. Background Art
[0002] In the construction design, due to the long construction period and the large span of the beam, the concrete cracks. At this time, reinforcement is often required to continue to use the construction safely. There are usually two ways to strengthen the structure of the building. The first method is to add structural columns or structural beams. The other method is to install reinforcement devices at the weaker position of the building structure, the main support position or the vertical load-bearing wall or column position to improve the stability of the building structure. Due to the large scale of the construction project, the long construction period, the high cost, and the easy impact on normal production, the second method is currently used to strengthen the building structure. Therefore, a reinforcement structure of the building design beam is particularly needed.
[0003] However, the existing reinforcement structure is relatively simple, has poor applicability when installed on the beam body, is inconvenient to install, has poor supporting effect on the building structure beam, and cannot produce a good reinforcement effect when the building structure vibrates significantly. Utility Model Content
[0004] The utility model aims to provide a reinforcement structure for architectural design beams, which specifically relates to the technical field of architectural structures to solve the problems of poor applicability and inconvenient installation of the existing structure installed on the beam body proposed in the above background technology.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a reinforcement structure of a building design beam, comprising a main beam and a reinforcement mechanism, one end of the main beam is connected to a support column, one side of the main beam is connected to a secondary beam, one side of the support column is provided with a reinforcement mechanism, and one side of the secondary beam is installed with an auxiliary mechanism;
[0006] The reinforcement mechanism includes a bending reinforcement plate, a reinforcement rib, a reinforcement block, a threaded column, a first mounting plate, a bite-type gasket, a nylon anti-loosening nut, a carbon fiber composite material rubber pad, a first screw and a first nut. One side of the support column is connected to the bending reinforcement plate, one side of the surface of the bending reinforcement plate is fixedly connected to the reinforcement rib, one side of the surface of the bending reinforcement plate is fixedly connected to the reinforcement block, one side of the surface of the bending reinforcement plate is penetrated by a threaded column, one side of the reinforcement rib is connected to the inner first mounting plate, both ends of the threaded column are connected to the bite-type gasket, both ends of the threaded column are threadedly connected to the nylon anti-loosening nuts, one side of the surface of the first mounting plate is fixedly connected to the carbon fiber composite material rubber pad, one side of the first mounting plate is connected to the first screw, and one end of the first screw is connected to the first nut.
[0007] Preferably, the reinforcement blocks are provided in four groups, and the threaded columns and nylon anti-loosening nuts are threadedly connected.
[0008] Preferably, the first mounting plate is a porous structure, and the reinforcing ribs are a triangular structure.
[0009] Preferably, the auxiliary mechanism comprises a triangular mounting plate, a connecting block, a second screw, a hydraulic telescopic rod, a second nut and a spring, one side of the secondary beam is fixedly connected to the triangular mounting plate, a connecting block is installed on one side of the inner side of the triangular mounting plate, one side of the triangular mounting plate is connected to the second screw, one side of the connecting block is connected to the hydraulic telescopic rod, one end of the second screw is threadedly connected to the second nut, and one end of the connecting block is welded to a spring.
[0010] Preferably, the connecting blocks are provided in two groups, and the hydraulic telescopic rod and the spring constitute a telescopic structure.
[0011] Compared with the prior art, the beneficial effect of the utility model is that: the reinforcement structure, through the arrangement of the bent reinforcement plate, the reinforcement rib plate, the reinforcement block, the threaded column, the first mounting plate, the bite-type gasket, the nylon anti-loosening nut, the carbon fiber composite material rubber pad, the first screw and the first nut, when reinforcing and installing the architectural design beam, first connects the bent reinforcement plate to one side of the support column to enhance the strength of the connection between the support column and the main beam, then improves the strength and stability of the bent reinforcement plate itself through the reinforcement rib plate and the reinforcement block, then uses the threaded column and the bite-type gaskets and nylon anti-loosening nuts at both ends to tightly fix the bent reinforcement plate on the support column, then connects the first mounting plate, the carbon fiber composite material rubber pad on its surface plays a buffering role and increases friction, and finally uses the first screw and the first nut to further fix the first mounting plate, thereby forming a stable reinforcement structure, dispersing and bearing the load of the main beam, and improving the stability and safety of the beam. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 This is a schematic diagram of the external appearance structure of the main beam of the utility model;
[0013] Figure 2 This is a schematic diagram of the reinforcement mechanism structure of the utility model;
[0014] Figure 3 This is a schematic diagram of the structure of the bending reinforcement plate and the carbon fiber composite material rubber pad of the utility model;
[0015] Figure 4 This is a schematic diagram of the auxiliary mechanism structure of the utility model.
[0016] In the figure: 1. main beam; 2. support column; 3. secondary beam; 4. reinforcement mechanism; 401. bending reinforcement plate; 402. reinforcement rib; 403. reinforcement block; 404. threaded column; 405. first mounting plate; 406. bite-type gasket; 407. nylon anti-loosening nut; 408. carbon fiber composite material rubber pad; 409. first screw; 410. first nut; 5. auxiliary mechanism; 501. triangular mounting plate; 502. connecting block; 503. second screw; 504. hydraulic telescopic rod; 505. second nut; 506. spring. DETAILED DESCRIPTION
[0017] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0018] See also Figure 1-4 The utility model provides a technical solution: a reinforcement structure of a building design beam, comprising a main beam 1 and a reinforcement mechanism 4, one end of the main beam 1 is connected to a support column 2, one side of the main beam 1 is connected to a secondary beam 3, one side of the support column 2 is provided with a reinforcement mechanism 4, and one side of the secondary beam 3 is installed with an auxiliary mechanism 5;
[0019] The reinforcement mechanism 4 includes a bending reinforcement plate 401, a reinforcement rib plate 402, a reinforcement block 403, a threaded column 404, a first mounting plate 405, a bite-type gasket 406, a nylon anti-loosening nut 407, a carbon fiber composite rubber pad 408, a first screw 409 and a first nut 410. The bending reinforcement plate 401 is connected to one side of the support column 2, and the reinforcement rib plate 402 is fixedly connected to one side of the surface of the bending reinforcement plate 401. The reinforcement block 403 is fixedly connected to one side of the surface of the bending reinforcement plate 401. A threaded column 404 is passed through, one side of the reinforcement rib 402 is connected to an inner first mounting plate 405, both ends of the threaded column 404 are connected to bite-type gaskets 406, both ends of the threaded column 404 are threadedly connected to nylon anti-loosening nuts 407, one side of the surface of the first mounting plate 405 is fixedly connected to a carbon fiber composite rubber pad 408, one side of the first mounting plate 405 is connected to a first screw rod 409, one end of the first screw rod 409 is connected to a first nut 410, and the reinforcement plate 401, the reinforcement rib 402, the reinforcement block 403, the screw rod 410 are bent and fixed to the first mounting ...5. The arrangement of the column 404, the first mounting plate 405, the bite-type gasket 406, the nylon anti-loosening nut 407, the carbon fiber composite rubber pad 408, the first screw 409 and the first nut 410, when reinforcing the architectural design beam, firstly connect the bending reinforcement plate 401 to one side of the support column 2, so as to enhance the strength of the connection between the support column 2 and the main beam 1, and then fix the reinforcing rib 402 and the reinforcing block 403 on one side of the surface of the bending reinforcement plate 401, so as to further enhance the structural strength and stability of the bending reinforcement plate 401 Then, the threaded column 404 is passed through the bent reinforcement plate 401 for installation, and bite-type gaskets 406 and nylon anti-loosening nuts 407 are installed at both ends, so that the bent reinforcement plate 401 is tightly fixed on the support column 2, and then the first mounting plate 405 is connected to one side of the reinforcement rib 402. The carbon fiber composite rubber pad 408 on one side of the surface of the first mounting plate 405 can play a buffering role and increase friction. Finally, the first mounting plate 405 is further fixed and connected with the help of the first screw 409 and the first nut 410.
[0020] Furthermore, the reinforcing block 403 is provided with four groups, and the threaded columns 404 and the nylon anti-loosening nuts 407 are threadedly connected. Through the setting of the reinforcing block 403, the function of the reinforcing block 403 is to enhance the strength of the bending reinforcement plate 401 from multiple positions and angles, so as to more effectively disperse and bear the load from the main beam 1, and improve the reliability of the reinforcement effect.
[0021] Furthermore, the first mounting plate 405 is a porous structure, and the reinforcing ribs 402 are a triangular structure. Through the arrangement of the reinforcing ribs 402, the triangular reinforcing ribs 402 have the characteristics of good stability, can more effectively transfer and disperse stress, and enhance bearing capacity and stability.
[0022] Furthermore, the auxiliary mechanism 5 includes a triangular mounting plate 501, a connecting block 502, a second screw 503, a hydraulic telescopic rod 504, a second nut 505 and a spring 506. One side of the secondary beam 3 is fixedly connected with the triangular mounting plate 501, one side of the inner side of the triangular mounting plate 501 is installed with a connecting block 502, one side of the triangular mounting plate 501 is connected with the second screw 503, one side of the connecting block 502 is connected with the hydraulic telescopic rod 504, one end of the second screw 503 is threadedly connected with the second nut 505, and one end of the connecting block 502 is welded with a spring 506. 6. Through the arrangement of the triangular mounting plate 501, the connecting block 502, the second screw rod 503, the hydraulic telescopic rod 504, the second nut 505 and the spring 506, when the installation of the main beam 1 and the secondary beam 3 requires buffering and fixing, firstly, the triangular mounting plate 501 is installed on the secondary beam 3 through the combination of the second screw rod 503 and the second nut 505. When vibration occurs, the main beam 1 and the secondary beam 3 will squeeze the hydraulic telescopic rod 504 at the same time, and the spring 506 welded at one end of the connecting block 502 will also expand and contract to jointly realize the buffering, shock absorption and supporting functions.
[0023] Furthermore, the connecting block 502 is provided with two groups, and the hydraulic telescopic rod 504 and the spring 506 constitute a telescopic structure. Through the setting of the hydraulic telescopic rod 504 and the spring 506, when the main beam 1 is subjected to greater pressure or impact, the hydraulic telescopic rod 504 can shrink and the spring 506 is compressed, thereby absorbing and buffering the external force, reducing the stress on the beam, helping to improve the beam's anti-deformation ability and anti-seismic performance, and enhancing the stability and safety of the entire building structure.
[0024] Working principle: First, when reinforcing and installing the building design beam, first connect the bending reinforcement plate 401 to one side of the support column 2 to enhance the strength of the connection between the support column 2 and the main beam 1, then fix the reinforcement ribs 402 and the reinforcement blocks 403 on one side of the surface of the bending reinforcement plate 401 to further improve the structural strength and stability of the bending reinforcement plate 401, then install the threaded column 404 through the bending reinforcement plate 401, and install the bite-type gaskets 406 and nylon anti-loosening nuts 407 at both ends, so as to fix the bending reinforcement plate 401 tightly on the support column 2. Then, a first mounting plate 405 is connected to one side of the reinforcement rib 402. The carbon fiber composite rubber pad 408 on one side of the surface of the first mounting plate 405 can play a buffering role and increase friction. Finally, the first mounting plate 405 is further fixed and connected with the help of the first screw 409 and the first nut 410. Secondly, when the main beam 1 and the secondary beam 3 need to be buffered and fixed, the triangular mounting plate 501 is first installed on the secondary beam 3 through the combination of the second screw 503 and the second nut 505. When vibration occurs, the main beam 1 and the secondary beam 3 will squeeze the hydraulic telescopic rod 504 at the same time, and the spring 506 welded at one end of the connecting block 502 will also expand and contract, thereby jointly realizing the buffering, shock absorption and supporting functions.
[0025] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A reinforcement structure for a building design beam, comprising a main beam (1) and a reinforcement mechanism (4), characterized in that: One end of the main beam (1) is connected to a support column (2), one side of the main beam (1) is connected to a secondary beam (3), one side of the support column (2) is provided with a reinforcement mechanism (4), and one side of the secondary beam (3) is installed with an auxiliary mechanism (5); The reinforcement mechanism (4) comprises a bending reinforcement plate (401), a reinforcement rib plate (402), a reinforcement block (403), a threaded column (404), a first mounting plate (405), a bite-type gasket (406), a nylon anti-loosening nut (407), a carbon fiber composite material rubber pad (408), a first screw rod (409) and a first nut (410); one side of the support column (2) is connected to the bending reinforcement plate (401); one side of the surface of the bending reinforcement plate (401) is fixedly connected to the reinforcement rib plate (402); one side of the surface of the bending reinforcement plate (401) is fixedly connected to the reinforcement block (403); A threaded column (404) penetrates one side of the surface of the bent reinforcement plate (401); one side of the reinforcement rib plate (402) is connected to an inner first mounting plate (405); both ends of the threaded column (404) are connected to bite-type gaskets (406); both ends of the threaded column (404) are threadedly connected to nylon anti-loosening nuts (407); one side of the surface of the first mounting plate (405) is fixedly connected to a carbon fiber composite material rubber pad (408); one side of the first mounting plate (405) is connected to a first screw rod (409); one end of the first screw rod (409) is connected to a first nut (410).
2. The reinforcement structure of a building design beam according to claim 1, characterized in that: The reinforcing blocks (403) are provided in four groups, and the threaded columns (404) and nylon locking nuts (407) are threadedly connected.
3. The reinforcement structure of a building design beam according to claim 1, characterized in that: The first mounting plate (405) is a porous structure, and the reinforcing rib plate (402) is a triangular structure.
4. The reinforcement structure of a building design beam according to claim 1, characterized in that: The auxiliary mechanism (5) comprises a triangular mounting plate (501), a connecting block (502), a second screw rod (503), a hydraulic telescopic rod (504), a second nut (505) and a spring (506); one side of the secondary beam (3) is fixedly connected to the triangular mounting plate (501); one side of the interior of the triangular mounting plate (501) is installed with a connecting block (502); one side of the triangular mounting plate (501) is connected to the second screw rod (503); one side of the connecting block (502) is connected to the hydraulic telescopic rod (504); one end of the second screw rod (503) is threadedly connected to the second nut (505); and one end of the connecting block (502) is welded with a spring (506).
5. The reinforcement structure of a building design beam according to claim 4, characterized in that: The connection blocks (502) are provided in two groups, and the hydraulic telescopic rod (504) and the spring (506) form a telescopic structure.