Auxiliary supporting mechanism for reinforcing building structure

By employing a positioning mechanism and a multi-functional limit design, the problems of inaccurate height selection and limited limit function in existing support mechanisms have been solved, thereby improving the stability and reinforcement effect of the support.

CN223793915UActive Publication Date: 2026-01-13李鹏
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Patent Information

Application Number
CN202520174881.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-26
Publication Date
2026-01-13
Estimated Expiration
2035-01-26

AI Technical Summary

Technical Problem

Existing auxiliary support mechanisms for building structure reinforcement cannot accurately select the support height, and the outward expansion limiting components have limited functionality, resulting in unstable support and affecting the reinforcement effect and safety.

Method used

It adopts a positioning mechanism and multi-functional limit design, including components such as positioning plate, positioning pin, screw and anti-slip plastic pad. It achieves precise positioning and firm clamping through threaded connection and friction. Combined with height scale bar and lead screw adjustment, it ensures accurate adjustment of support height and position.

Benefits of technology

It achieves stability and uniformity of the support structure, ensuring that the building structure remains stable during the reinforcement process, reducing safety risks, and improving the quality of reinforcement construction.

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Abstract

The utility model provides an auxiliary supporting mechanism for reinforcing a building structure, which belongs to the technical field of building construction.The auxiliary supporting mechanism for reinforcing the building structure comprises a mounting plate, a mounting groove is formed in the top end of the mounting plate, and screw rods are rotatably connected to the inner walls of the two sides of the mounting groove; one end of the screw rod movably penetrates through the inner wall of one side of the mounting groove and is rotationally connected to one side end of the mounting plate; the second screw rod is connected into a threaded hole of the positioning plate through a thread, an anti-skid plastic pad at the end close to the second screw rod is in close contact with the surface of the building structure to generate friction force when the anti-skid plastic pad is tightened, the supporting mechanism is firmly clamped and fixed to the building structure, and looseness and displacement in the supporting process are prevented. The problem that an external expansion limiting component is single in function is effectively solved, the supporting mechanism can comprehensively and effectively limit a building structure, the supporting stability is remarkably improved, it is ensured that the building structure is kept in a stable state in the reinforcing process, the safety risk is reduced, and the reinforcing construction quality is improved.
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Description

Technical Field

[0001] This utility model belongs to the field of building construction technology, and specifically relates to an auxiliary support mechanism for strengthening building structures. Background Technology

[0002] In building structure reinforcement projects, it is often necessary to support damaged or insufficiently load-bearing structural components to ensure the safety and smooth progress of the reinforcement work. Existing auxiliary support mechanisms often suffer from problems such as complex structure, inconvenient installation, poor stability, and limited adaptability. For example, some traditional support devices are difficult to quickly adjust to the appropriate support position and angle when facing building structures of different shapes and sizes, and are prone to swaying or displacement during the support process, affecting the reinforcement effect and even potentially causing safety accidents.

[0003] Authorized publication number "CN221590554U" describes an auxiliary support mechanism for reinforcing building structures, including a base plate. A support component is embedded in the center of the top of the base plate. A first square plate is fixedly connected to the top of the support component. A buffer component is fixedly connected symmetrically to the edge of the top of the first square plate. A second square plate is fixedly connected to the top of the buffer component. This auxiliary support mechanism for reinforcing building structures, through the buffer component, allows the second square plate to compress a second clamping frame downwards when the building structure is subjected to vibration. This causes the second clamping frame to drive a first connecting plate and a fixing ring of the first clamping frame, compressing the fixing ring and spring. Simultaneously, a shock absorber between the second and first square plates dissipates the force generated by the vibration, preventing the force from being uncompensated by vibration and thus improving the service life of the building structure.

[0004] The aforementioned patent uses a shock absorber between the second and first square plates to absorb the force generated by vibration, preventing the building structure from being subjected to vibration that could not be offset, thereby improving the service life of the building structure. However, the aforementioned patent has certain shortcomings in use. It cannot accurately select the height used to support the building structure, and the outward expansion limiting component of the support mechanism cannot be used for both purposes, thus failing to effectively limit the support of the building structure, making it difficult for it to achieve a stable state when supported. Utility Model Content

[0005] The purpose of this utility model is to provide an auxiliary support mechanism for reinforcing building structures, aiming to solve the problems in the prior art where it is impossible to accurately select the height for supporting the building structure, and the external expansion limiting component of the support mechanism cannot be used for both purposes, thus failing to effectively limit the support of the building structure, making it difficult for it to reach a stable state when supported.

[0006] To achieve the above objectives, this utility model provides the following technical solution:

[0007] An auxiliary support mechanism for reinforcing building structures, comprising:

[0008] The mounting plate has a mounting groove at its top, and screw rods are rotatably connected to the inner walls of both sides of the mounting groove. One end of the screw rods movably passes through one inner wall of the mounting groove and is rotatably connected to one side of the mounting plate.

[0009] A movable support plate is provided on the upper side of the mounting plate. A threaded hole is provided at the top of the movable support plate. Two limiting holes are provided at the top of the movable support plate. A first screw is threadedly connected to the threaded hole. A rotating handle is fixedly connected to the circumferential surface of the first screw. A third connecting plate is provided on the upper side of the movable support plate.

[0010] Two limiting rods are provided, and the two movable support plates are slidably connected to the two limiting holes respectively. Both limiting rods are fixedly connected to the bottom end of the third connecting plate, which is rotatably connected to the outer surface of the first screw.

[0011] A positioning mechanism is provided on the upper side of the third connecting plate, and the positioning mechanism is used to position and fix the building structure.

[0012] As a preferred embodiment of this utility model, the positioning mechanism includes:

[0013] The positioning plate is provided in two, and both positioning plates are movably snapped onto the outer surface of the third connecting plate. The front end of both third connecting plates is provided with mounting holes, and the far ends of both positioning plates are provided with threaded holes.

[0014] The positioning pins are provided in two, and the two positioning pins are respectively movably engaged in two positioning plates and two limiting holes;

[0015] The second screw is provided in two parts, and the two second screws are respectively threaded into two threaded holes. Anti-slip plastic pads are fixedly connected to the close ends of the two second screws.

[0016] A nut, which is threaded onto the circumferential surface of a lead screw;

[0017] A movable block, which is slidably connected in the mounting groove, is fixedly connected to the circumferential surface of the nut, and is fixedly connected to the bottom end of the movable support plate;

[0018] A hexagonal nut, which is fixedly connected to the circumferential surface of the lead screw.

[0019] As a preferred embodiment of this utility model, the front end of the movable support plate is fixedly connected to two height measuring strips, and the top end of the mounting plate is fixedly connected to a wear-resistant pad.

[0020] As a preferred embodiment of this utility model, the inner circumferential wall of the mounting groove is provided with a drain outlet, and both ends of the mounting plate are provided with a storage groove.

[0021] As a preferred embodiment of this utility model, both ends of the mounting plate are fixedly connected to a first connecting plate, and the four corners of the bottom end of the mounting plate are fixedly connected to a movable wheel.

[0022] In a preferred embodiment of this utility model, a second connecting plate is installed at the top of the mounting plate, and a connecting handle is fixedly connected to the rear end of the second connecting plate.

[0023] In a preferred embodiment of this utility model, a plastic ring is fixedly connected to the outer surface of the mounting plate, and a lighting lamp is fixedly connected to the front end of the mounting plate.

[0024] Compared with the prior art, the beneficial effects of this utility model are:

[0025] 1. In this solution, multiple components in the positioning mechanism work together to achieve the multi-functionality of the outward expansion limiting component. Two positioning plates are movably engaged with the outer surface of the third connecting plate, providing a bearing foundation for the entire positioning operation. The positioning pin precisely limits the position of the positioning plate, ensuring the accuracy of the initial installation of the positioning mechanism and providing a precise positioning prerequisite for subsequent fixing operations. The second screw is threaded into the threaded hole of the positioning plate, and the anti-slip plastic pad at its near end makes close contact with the surface of the building structure when tightened, generating friction to firmly clamp and fix the support mechanism to the building structure, preventing loosening and displacement during the support process. This multi-functional outward expansion limiting design effectively solves the problem of the single function of the outward expansion limiting component, enabling the support mechanism to comprehensively and effectively limit the building structure, significantly improving the stability of the support, ensuring that the building structure remains stable during the reinforcement process, reducing safety risks, and improving the quality of reinforcement construction.

[0026] 2. In this solution, by setting two height scales at the front end of the movable support plate, the operator can intuitively observe the vertical height change of the movable support plate when adjusting the support height. Fine-tuning can be achieved by rotating the handle on the circumferential surface of the first screw. The operator can accurately know the height value of the movable support plate according to the scale of the height scales and compare it with the design requirements or other reference standards, thereby accurately adjusting the support height to the appropriate position, ensuring the stability and uniformity of the support, and effectively solving the problem of inaccurate height selection. Attached Figure Description

[0027] The accompanying drawings are provided to further illustrate the present invention and form part of the specification. They are used together with the embodiments of the present invention to explain the present invention, but do not constitute a limitation thereof. In the drawings:

[0028] Figure 1 This is a perspective view of the present utility model;

[0029] Figure 2 This is a first-view sectional perspective view of the present invention;

[0030] Figure 3 In this utility model Figure 2 A magnified view of part A;

[0031] Figure 4 This is a first-person exploded perspective view of the present invention;

[0032] Figure 5 In this utility model Figure 4 A magnified view of section B.

[0033] In the diagram: 1. Mounting plate; 101. Storage slot; 102. Drain outlet; 2. First connecting plate; 3. Limiting rod; 4. Mounting slot; 5. Caster wheel; 6. Hex nut; 7. Plastic ring; 8. Second connecting plate; 9. Connecting handle; 10. Third connecting plate; 11. Wear-resistant pad; 12. Positioning plate; 13. Screw; 14. Moving support plate; 15. Height measurement strip; 16. Rotating handle; 17. First screw; 18. Nut; 19. Moving block; 20. Lighting lamp; 21. Second screw; 22. Anti-slip plastic pad; 23. Positioning pin. Detailed Implementation

[0034] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0035] Example 1

[0036] Please see Figures 1-5 The present invention provides the following technical solution:

[0037] An auxiliary support mechanism for reinforcing building structures, comprising:

[0038] Mounting plate 1, with a mounting groove 4 at the top. Screw rods 13 are rotatably connected to the inner walls of both sides of the mounting groove 4. One end of the screw rod 13 passes through one side of the inner wall of the mounting groove 4 and is rotatably connected to one side of the mounting plate 1.

[0039] A movable support plate 14 is provided on the upper side of the mounting plate 1. A threaded hole is provided at the top of the movable support plate 14. Two limiting holes are provided at the top of the movable support plate 14. A first screw 17 is threadedly connected to the threaded hole. A rotating handle 16 is fixedly connected to the circumferential surface of the first screw 17. A third connecting plate 10 is provided on the upper side of the movable support plate 14.

[0040] Two limiting rods 3 are provided. Two movable support plates 14 are slidably connected to two limiting holes, and both limiting rods 3 are fixedly connected to the bottom end of the third connecting plate 10. The third connecting plate 10 is rotatably connected to the outer surface of the first screw 17.

[0041] The positioning mechanism is located on the upper side of the third connecting plate 10 and is used to position and fix the building structure.

[0042] In a specific embodiment of this utility model, the mounting groove 4 at the top of the mounting plate 1 is used to accommodate and mount the lead screw 13, so that the lead screw 13 can rotate within the mounting groove 4, thereby realizing the subsequent position adjustment function of the moving support plate 14.

[0043] Rotation of the lead screw 13 can drive the movable support plate 14, which is threaded to it, to move laterally. By rotating the lead screw 13, the position of the movable support plate 14 can be precisely adjusted to adapt to different support requirements and changes in the size of the building structure.

[0044] The movable support plate 14 is one of the components that directly contacts the building structure and provides support. Its threaded hole at the top is threadedly connected to the first screw 17. By rotating the first screw 17, the vertical position of the movable support plate 14 can be finely adjusted, further precisely adjusting the support height to the building structure. For example, if the building structure has a certain degree of tilt or unevenness, the height difference can be compensated by rotating the first screw 17, ensuring the stability and uniformity of the support.

[0045] The rotary handle 16 provides the operator with a convenient operating handle, increases the torque during operation, and makes it easier for the operator to turn the first screw 17.

[0046] The limiting rod 3 engages with the limiting hole of the movable support plate 14, guiding and restricting the vertical movement of the movable support plate 14. This ensures that the movable support plate 14 rises and falls smoothly in the vertical direction, preventing instability such as tilting or twisting during the support process, thereby guaranteeing the stability and reliability of the entire support mechanism and effective support for the building structure.

[0047] The third connecting plate 10 is rotatably connected to the outer surface of the first screw 17, so that when the first screw 17 rotates, the third connecting plate 10 can remain relatively stable and will not undergo unnecessary displacement or rotation with the rotation of the first screw 17, thereby ensuring that the movable support plate 14 can accurately respond to the lifting and adjusting action of the first screw 17 and achieve precise support for the building structure.

[0048] The main function of the positioning mechanism is to firmly fix the support mechanism to the building structure, preventing it from shifting or loosening during the support process. It can employ appropriate positioning methods, such as clamps, bolt connections, and magnetic attraction, depending on the shape, material, and surface characteristics of different building structures.

[0049] It should be noted that the specific model of the lighting lamp 20 used shall be selected by those skilled in the art, and the above-mentioned lighting lamp 20 and other related technologies are all existing technologies, which will not be elaborated upon in this solution.

[0050] Please refer to the details. Figures 1-5 The positioning mechanisms include:

[0051] Positioning plate 12, two positioning plates 12 are provided, both positioning plates 12 are movably snapped onto the outer surface of the third connecting plate 10, the front ends of both third connecting plates 10 are provided with mounting holes, and the far ends of both positioning plates 12 are provided with threaded holes.

[0052] Positioning pin 23, there are two positioning pins 23, and the two positioning pins 23 are respectively movably engaged in the two positioning plates 12 and the two limiting holes;

[0053] The second screw 21 is provided in two parts. The two second screws 21 are threadedly connected to the two threaded holes respectively. The close ends of the two second screws 21 are fixedly connected with anti-slip plastic pads 22.

[0054] Nut 18 is threaded onto the circumferential surface of lead screw 13;

[0055] The movable block 19 is slidably connected in the mounting groove 4, fixedly connected to the circumferential surface of the nut 18, and fixedly connected to the bottom end of the movable support plate 14.

[0056] Hex nut 6 is fixedly connected to the circumferential surface of lead screw 13.

[0057] In this embodiment, both positioning plates 12 are movably snapped onto the outer surface of the third connecting plate 10. This allows the positioning plates 12 to be installed and positioned based on the third connecting plate 10, becoming an important load-bearing component in the entire positioning mechanism. Other positioning-related components can then function based on the positioning plates 12 to jointly achieve the positioning and fixing function of the building structure.

[0058] The mounting holes at the front end of the positioning plate 12 and the threaded holes at the far end provide accurate positions and connection bases for the installation of components such as the positioning pin 23 and the second screw 21. Each component works together with these holes to complete the positioning operation.

[0059] Two positioning pins 23 are respectively movably engaged with two positioning plates 12 and corresponding limiting holes, playing a role in precisely defining the position. This ensures that the positioning plates 12 will not arbitrarily shift laterally or longitudinally at their respective installation positions, guaranteeing that the entire positioning mechanism is in an accurate position from the initial installation stage. This provides a precise positioning prerequisite for subsequent fixing operations, helping the support mechanism to accurately align with the parts of the building structure that need reinforcement, ensuring the effectiveness of support and reinforcement.

[0060] The second screw 21 is threaded into the threaded hole of the positioning plate 12. When the second screw 21 is rotated, it can move axially under the action of the thread. Anti-slip plastic pads 22 are fixedly connected to the close ends of the two second screws 21. When the second screw 21 is tightened, the anti-slip plastic pads 22 can make close contact with the surface of the building structure and generate friction, thereby firmly clamping and fixing the support mechanism to the building structure. This prevents the support mechanism from loosening or shifting due to external forces or other factors during use, ensuring that the support force acts stably on the building structure and maintaining the reinforcement effect.

[0061] When the lead screw 13 is rotated, the nut 18 will move along the axial direction of the lead screw 13, thereby driving the moving block 19, which is fixedly connected to its circumferential surface, to move together. The moving block 19 is fixedly connected to the moving support plate 14, thus achieving the adjustment of the position of the moving support plate 14.

[0062] The movable block 19 is slidably connected in the mounting groove 4, which not only ensures that it moves smoothly in the direction defined by the mounting groove 4, but also transmits the movement of the nut 18 to the movable support plate 14 through the fixed connection nut 18, ensuring that the movable support plate 14 can accurately change its position with the rotation of the screw 13 and the movement of the nut 18, making the adjustment of the entire support mechanism in the horizontal direction more stable and reliable, and ensuring flexible adjustment of the support position of the building structure.

[0063] The hexagonal nut 6 is fixedly connected to the circumferential surface of the lead screw 13. It can play a certain role in auxiliary fixing or limiting. Personnel can use a wrench to adjust the angle of the hexagonal nut 6.

[0064] Please refer to the details. Figures 1-3 The front end of the movable support plate 14 is fixedly connected to two height measurement strips 15, and the top end of the mounting plate 1 is fixedly connected to a wear-resistant pad 11.

[0065] In this embodiment, the two height scale bars 15 primarily function to visually display the vertical position and height of the movable support plate 14. During the reinforcement and support of the building structure, operators can accurately determine the height of the movable support plate 14 by observing the scale of the height scale bars 15, facilitating comparison with design requirements or other reference standards.

[0066] When the wear-resistant pad 11 is adjusted in position or when it rubs against the surface of the mounting plate 1 during the support process, the wear-resistant pad 11 can withstand the friction, reduce the wear of the mounting plate 1 itself, and extend the service life of the mounting plate 1.

[0067] Please refer to the details. Figure 2 The inner circumference of the mounting groove 4 is provided with a drain outlet 102, and both ends of the mounting plate 1 are provided with a storage groove 101.

[0068] In this embodiment: Drain 102 takes into account that in actual use scenarios, the mounting groove 4 may accumulate water due to rainwater, construction water, etc. The existence of drainage outlet 102 can drain the accumulated water in time, avoid the accumulated water from soaking the screw rod 13 and other components installed in the mounting groove 4 for a long time, and prevent the components from being affected by moisture, rust, corrosion, etc., which will affect their normal rotation and service life.

[0069] Storage slot 101 can be used to store small tools, spare parts, or auxiliary connecting parts related to the support mechanism when not in use, making the construction site more tidy and orderly, and making it convenient for operators to access the required items at any time.

[0070] Please refer to the details. Figures 1-5 The mounting plate 1 is fixedly connected to the first connecting plate 2 at both ends, and the mounting plate 1 is fixedly connected to the four corners of the bottom end with a movable wheel 5.

[0071] In this embodiment: the first connecting plate 2 can serve as an interface for extended connection, facilitating connection with other external structures or auxiliary devices. The first connecting plate 2 uses through-hole connecting rods to limit the position of the mounting plate 1.

[0072] The five casters give the entire support structure mobility. On the construction site, operators can easily push the support structure to the specific location where structural reinforcement is needed, without requiring a large amount of manpower for transportation.

[0073] Please refer to the details. Figures 1-3 A second connecting plate 8 is installed on the top of the mounting plate 1, and a connecting handle 9 is fixedly connected to the rear end of the second connecting plate 8.

[0074] In this embodiment, the connecting handle 9 provides an easy position for the operator to apply force. By holding the connecting handle 9, the operator can push or pull the mounting plate 1 more easily with the help of the connection structure between the second connecting plate 8 and the mounting plate 1. With the help of the bottom moving wheels 5, the support mechanism can be moved smoothly. During the movement, the direction and speed can be better controlled, and the support mechanism can be moved accurately to the predetermined working position.

[0075] Please refer to the details. Figures 1-5 A plastic ring 7 is fixedly connected to the outer surface of the mounting plate 1, and a light 20 is fixedly connected to the front end of the mounting plate 1.

[0076] In this embodiment, the plastic ring 7 can protect the edge of the mounting plate 1, preventing it from being damaged by bumps during transportation, movement, or collision with surrounding objects.

[0077] The lighting 20 can provide the necessary illumination, enabling operators to clearly observe the position and operation of each component of the support mechanism, as well as the relevant conditions of the building structure, so as to facilitate accurate installation, adjustment and reinforcement operations and ensure construction safety and work quality.

[0078] The working principle and usage process of this utility model are as follows: The operator holds the connecting handle 9 and, using the connection structure between the second connecting plate 8 and the mounting plate 1, pushes or pulls the mounting plate 1. The moving wheels 5 at the four corners of the bottom of the mounting plate 1 then move the support mechanism toward the part of the building structure that needs reinforcement. During movement, the connecting handle 9 precisely controls the direction and speed to ensure accurate proximity to the predetermined working position. If obstacles or uneven ground around the building structure affect the placement of the support mechanism, the first connecting plate 2 can be used as an extension connection interface to connect external auxiliary devices such as traction ropes to assist in adjusting the position. Alternatively, obstacles can be cleared and the ground leveled beforehand to ensure the support mechanism is successfully positioned.

[0079] Then, adjust the height. First, observe the two height scale bars 15 at the front end of the movable support plate 14 and determine the initial value of the required support height according to design requirements or relevant reference standards. Next, rotate the handle 16 on the circumferential surface of the first screw 17. Due to the threaded connection between the first screw 17 and the threaded hole at the top of the movable support plate 14, rotating the first screw 17 will cause the movable support plate 14 to move vertically. Closely observe the height change of the movable support plate 14 using the height scale bars 15 and adjust it to approximately the desired height. If the building structure is tilted or uneven, continue to fine-tune the first screw 17 to compensate for the height difference, ensuring a stable and uniform support state at the contact point between the movable support plate 14 and the building structure, thereby ensuring the stability and uniformity of the support.

[0080] After height adjustment, lateral position adjustment is performed. Rotating the lead screw 13 causes the nut 18, threaded onto its circumferential surface, to move axially along the lead screw 13. Since the moving block 19 is fixedly connected to the circumferential surface of the nut 18, and the moving block 19 is slidably connected within the mounting groove 4 and fixedly connected to the bottom end of the moving support plate 14, the movement of the nut 18 will cause the moving support plate 14 to move horizontally. Based on the dimensions of the building structure and support requirements, the distance between the two moving support plates 14 is precisely adjusted by rotating the lead screw 13, allowing them to be accurately aligned with the parts of the building structure that require support, adapting to different support span requirements.

[0081] In the positioning and fixing steps, the two positioning plates 12 are first movably attached to the outer surface of the third connecting plate 10, so that the positioning plates 12 are initially positioned and installed against the third connecting plate 10. At this time, the mounting holes at the front end of the positioning plates 12 and the threaded holes at the far ends are ready to install other components. Next, the two positioning pins 23 are inserted into the two positioning plates 12 and their corresponding limiting holes, respectively. The positioning pins 23 are used to precisely define the position of the positioning plates 12, ensuring that the positioning plates 12 are in the correct position at the initial stage of installation. This provides a precise positioning prerequisite for subsequent fixing operations, allowing the support mechanism to be accurately aligned with the reinforcement parts of the building structure. Next, the two second screws 21 are threaded into the threaded holes of the two positioning plates 12 respectively. Then, the second screws 21 are rotated to move axially under the action of the threads until the anti-slip plastic pads 22 at the close ends of the two second screws 21 are in close contact with the surface of the building structure, generating friction. This firmly clamps and fixes the support mechanism to the building structure, preventing loosening or displacement due to external forces or other factors during use, ensuring that the support force acts stably on the building structure, and maintaining the reinforcement effect.

[0082] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. An auxiliary support mechanism for reinforcing building structures, characterized in that, include: Mounting plate (1), the top of the mounting plate (1) is provided with mounting groove (4), and the inner walls of both sides of the mounting groove (4) are rotatably connected with screw rod (13). One end of the screw rod (13) movably passes through one side of the inner wall of the mounting groove (4) and is rotatably connected to one side of the mounting plate (1). A movable support plate (14) is provided on the upper side of the mounting plate (1). The top end of the movable support plate (14) is provided with a threaded hole and two limiting holes are provided on the top end of the movable support plate (14). A first screw (17) is threadedly connected to the threaded hole. A rotating handle (16) is fixedly connected to the circumferential surface of the first screw (17). A third connecting plate (10) is provided on the upper side of the movable support plate (14). Limiting rods (3), two limiting rods (3) are provided, and two movable support plates (14) are slidably connected in two limiting holes respectively. Both limiting rods (3) are fixedly connected to the bottom end of the third connecting plate (10), and the third connecting plate (10) is rotatably connected to the outer surface of the first screw (17); and The positioning mechanism is located on the upper side of the third connecting plate (10) and is used to position and fix the building structure.

2. The auxiliary support mechanism for strengthening building structures according to claim 1, characterized in that: The positioning mechanism includes: Positioning plate (12), two positioning plates (12) are provided, both positioning plates (12) are movably snapped onto the outer surface of the third connecting plate (10), the front ends of both third connecting plates (10) are provided with mounting holes, and the far ends of both positioning plates (12) are provided with threaded holes; Positioning pin (23), two positioning pins (23) are provided, and the two positioning pins (23) are respectively movably engaged in two positioning plates (12) and two limiting holes; The second screw (21) is provided in two parts. The two second screws (21) are threaded into two threaded holes respectively. Anti-slip plastic pads (22) are fixedly connected to the close ends of the two second screws (21). Nut (18), said nut (18) is threaded onto the circumferential surface of the lead screw (13); The movable block (19) is slidably connected in the mounting groove (4), the movable block (19) is fixedly connected to the circumferential surface of the nut (18), and the movable block (19) is fixedly connected to the bottom end of the movable support plate (14). A hexagonal nut (6) is fixedly connected to the circumferential surface of the lead screw (13).

3. The auxiliary support mechanism for strengthening building structures according to claim 2, characterized in that: The front end of the movable support plate (14) is fixedly connected to two height measurement strips (15), and the top end of the mounting plate (1) is fixedly connected to a wear-resistant pad (11).

4. The auxiliary support mechanism for strengthening building structures according to claim 3, characterized in that: The mounting groove (4) has a drain outlet (102) on its inner circumference, and the mounting plate (1) has a storage groove (101) at both ends.

5. The auxiliary support mechanism for strengthening a building structure according to claim 4, characterized in that: The mounting plate (1) is fixedly connected to both ends of a first connecting plate (2), and the four corners of the bottom end of the mounting plate (1) are fixedly connected to movable wheels (5).

6. The auxiliary support mechanism for strengthening a building structure according to claim 5, characterized in that: The top of the mounting plate (1) is fitted with a second connecting plate (8), and the rear end of the second connecting plate (8) is fixedly connected with a connecting handle (9).

7. The auxiliary support mechanism for strengthening a building structure according to claim 6, characterized in that: A plastic ring (7) is fixedly connected to the outer surface of the mounting plate (1), and a lighting lamp (20) is fixedly connected to the front end of the mounting plate (1).

Citation Information

Patent Citations

  • Auxiliary supporting mechanism for reinforcing building structure

    CN221590554U