Supporting structure for building structure reinforcement

By installing buffer and adjustment components on the inner wall of the supporting steel pipe, and utilizing components such as bidirectional screws and springs, the problems of inflexible adjustment and vibration buffering of the supporting structure are solved, thereby achieving the stability and ease of installation of the supporting structure and improving the safety and durability of the building structure.

CN224119969UActive Publication Date: 2026-04-14HEILONGJIANG ZHONGMING CHENQI ENGINEERING DESIGN CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HEILONGJIANG ZHONGMING CHENQI ENGINEERING DESIGN CO LTD
Filing Date
2025-04-27
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

Existing structural reinforcement supports cannot flexibly control the tightness of the supports and are inconvenient to buffer and absorb vibrations, affecting the flexibility of support adjustment.

Method used

A support structure for reinforcing building structures was designed, which includes a buffer component and an adjustment component for supporting the inner wall of the steel pipe. By using components such as a bidirectional screw, an adjustment knob, a buffer block, and a spring, the support can be flexibly adjusted and vibration buffered.

Benefits of technology

It enables flexible adjustment of the support structure and vibration damping, improves the stability and ease of installation of the support, and enhances the safety and durability of the building structure.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a support structure for building structure reinforcement, which relates to the related technical field of building structure reinforcement and comprises a support steel pipe, buffer components are symmetrically arranged on the inner wall of the support steel pipe, and adjusting components are arranged at openings on two sides of the support steel pipe. According to the supporting structure for building structure reinforcement, the two-way screw rod is movably fixed through the fixing supporting plate, the adjusting knob drives the two-way screw rod to rotate, the distance between the lifting circular pipes is conveniently controlled, auxiliary rotation can be conveniently conducted through a wrench through an auxiliary groove, and lifting limiting of the lifting circular pipes is facilitated by fixing a limiting supporting column and an opening through a connecting supporting plate; a second spring and a second telescopic rod are kept in a contraction state, and when the lifting round pipe is jacked outwards, the second spring rebounds to control the second telescopic rod to contract to provide support for the lifting round pipe, so that the jacking limiting effect is conveniently improved, and a buffer jacking block is in contact with a building reinforcing structure; and the first springs are matched with the first telescopic rods, so that vibration borne by the building reinforcing structure is conveniently buffered and absorbed.
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Description

Technical Field

[0001] This utility model relates to the technical field of building structure reinforcement, specifically a support structure for building structure reinforcement. Background Technology

[0002] Structural reinforcement is a technology that improves the load-bearing capacity and durability of building structures by strengthening and repairing them. In buildings, structural reinforcement plays a crucial role in ensuring their safety and durability. In existing technologies, reinforcement is often achieved by installing support columns on the building structure. However, the support stability of the support columns is insufficient, which affects the reinforcement effect. Therefore, there is an urgent need for a support structure for building structural reinforcement.

[0003] Currently, the support structures used for building structural reinforcement are not flexible enough to control the tightness of the supports, and are not easy to buffer and absorb vibrations, which affects the flexibility of support adjustment. Utility Model Content

[0004] The purpose of this utility model is to provide a support structure for reinforcing building structures, so as to solve the problems mentioned in the background art, such as the inconvenience of flexibly controlling the tightness of the support, the inconvenience of buffering and absorbing vibrations, and the impact on the flexibility of support adjustment.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a support structure for reinforcing building structures, comprising a support steel pipe, wherein buffer components are symmetrically arranged on the inner wall of the support steel pipe, and adjustment components are arranged at the openings on both sides of the support steel pipe, wherein the adjustment components include fixed support plates, the fixed support plates are symmetrically arranged on one side opening of the support steel pipe, and the inner wall of the fixed support plates is rotatably connected to both ends of a bidirectional screw, wherein an adjustment knob is provided at the top of the bidirectional screw, and an auxiliary groove is provided at the top of the adjustment knob.

[0006] Preferably, the buffer assembly includes a lifting tube, a supporting top plate is provided on the top of the lifting tube, one end of a first telescopic rod is connected to one of the four corners of the supporting top plate, the other end of the first telescopic rod is connected to a buffer block, one end of a first spring is connected to one of the four corners of the supporting top plate, and the other end of the first spring is connected to a buffer block.

[0007] Preferably, a first support plate is provided on one side of the bottom outer wall of the lifting tube, and a second support plate is provided on the other side of the bottom outer wall of the lifting tube, and the first support plate and the second support plate are symmetrically distributed. The first support plate is provided with a connecting screw hole adapted to the bidirectional screw.

[0008] Preferably, the inner wall of the lifting tube is slidably provided with a matching limiting support column, and a connecting support plate is provided on one side of the middle part of the limiting support column. The connecting support plate is connected and fixed to the inner wall of the opening on the other side of the supporting steel tube. The two ends of the second telescopic rod are respectively connected between the connecting support plate and the second support plate, and the two ends of the second spring are respectively connected between the connecting support plate and the second support plate.

[0009] Preferably, the top and bottom of the supporting steel pipe are respectively provided with mounting plates, and the four corners of the mounting plates are provided with screw holes. The screw holes are connected and fixed to the building structure by bolts that are adapted to them.

[0010] Preferably, the second spring is movably wound around the outside of the second telescopic rod.

[0011] Preferably, the first spring is movably wound around the outside of the first telescopic rod.

[0012] Compared with the prior art, the beneficial effects of this utility model are:

[0013] 1. The supporting structure for structural reinforcement of this building uses a fixed support plate to fix the bidirectional screw rod. The adjustment knob drives the bidirectional screw rod to rotate. The bidirectional screw rod is coated with lubricating oil to improve the smoothness of lifting. The connecting screw hole, in conjunction with the bidirectional screw rod, can drive the first support plate to lift, thereby facilitating the control of the distance between the lifting tubes and the lifting of the support plate. The auxiliary groove allows for auxiliary rotation with a wrench to control the lifting accuracy. The limiting column is fixed to the opening through the connecting support plate to limit the lifting of the lifting tubes. The second spring and the second telescopic rod remain in a retracted state. When the lifting tubes are lifted outward, the second spring rebounds to control the retraction of the second telescopic rod to provide support between the lifting tubes, thus improving the limiting effect of the lifting.

[0014] 2. The supporting structure for reinforcing the building structure makes contact with the building reinforcement structure through the buffer top block, which facilitates support. The first spring and the first telescopic rod facilitate the buffering and absorption of vibrations received by the building reinforcement structure, which helps to improve the support effect of the building reinforcement structure. The mounting plate and bolts facilitate installation and fixation with the building reinforcement structure, making installation convenient. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0016] Figure 2 This is a partial structural schematic diagram of the present invention;

[0017] Figure 3 This is a cross-sectional structural diagram of the present invention;

[0018] Figure 4This is a schematic diagram of the buffer component structure of this utility model.

[0019] In the diagram: 1. Supporting steel pipe; 2. Buffer assembly; 201. Lifting round pipe; 202. Supporting top plate; 203. First telescopic rod; 204. First spring; 205. Buffer top block; 206. First support plate; 207. Second support plate; 3. Adjustment assembly; 301. Fixed support plate; 302. Two-way screw; 303. Adjustment knob; 304. Auxiliary groove; 305. Connecting screw hole; 306. Limiting support column; 307. Connecting support plate; 308. Second telescopic rod; 309. Second spring; 4. Mounting support plate; 5. Screw hole; 6. Bolt. Detailed Implementation

[0020] 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.

[0021] Please see Figure 1-4This utility model provides a technical solution: a support structure for reinforcing building structures, including a support steel pipe 1, buffer components 2 symmetrically arranged on the inner wall of the support steel pipe 1, and adjustment components 3 arranged at the openings on both sides of the support steel pipe 1. The adjustment components 3 include fixed support plates 301, which are symmetrically arranged on one side opening of the support steel pipe 1. The inner wall of the fixed support plates 301 is rotatably connected to both ends of a bidirectional screw 302, and the top end of the bidirectional screw 302 is provided with an adjustment knob 303. The top of the 03 is provided with an auxiliary groove 304. The first support plate 206 is provided with a connecting screw hole 5305 that matches the bidirectional screw 302. The inner wall of the lifting round tube 201 is slidably provided with a matching limiting support 306. A connecting support plate 307 is provided on one side of the middle of the limiting support 306. The connecting support plate 307 is connected and fixed to the inner wall of the opening on the other side of the supporting steel pipe 1. The two ends of the second telescopic rod 308 are respectively connected between the connecting support plate 307 and the second support plate 207. The two ends of the second spring 309 are respectively connected between the second support plates 207. The second spring 309 is movably wrapped around the outside of the second telescopic rod 308. The double-acting screw 302 is movably fixed by the fixed support plate 301. The adjusting knob 303 drives the double-acting screw 302 to rotate. The double-acting screw 302 is coated with lubricating oil to improve the smoothness of lifting. The first support plate 206 can be driven to lift and lower through the connecting screw hole 5305 in conjunction with the double-acting screw 302, thereby facilitating the control of the distance between the lifting tubes 201. The distance facilitates the lifting of the support plate 202, and the auxiliary groove 304 allows for easy rotation with a wrench, making it easier to control the lifting accuracy. The limiting support column 306 is fixed to the opening through the connecting support plate 307, which facilitates the limiting of the lifting of the lifting tube 201. The second spring 309 and the second telescopic rod 308 remain in a contracted state. When the lifting tube 201 is lifted outward, the second spring 309 rebounds to control the second telescopic rod 308 to contract and provide support between the lifting tubes 201, which helps to improve the limiting effect of the lifting.

[0022] The buffer assembly 2 includes a lifting tube 201. A support plate 202 is provided on the top of the lifting tube 201. One end of a first telescopic rod 203 is connected to one of the four corners of the support plate 202. The other end of the first telescopic rod 203 is connected to a buffer block 205. One end of a first spring 204 is connected to one of the four corners of the support plate 202. The other end of the first spring 204 is connected to the buffer block 205. The first spring 204 is movably wound around the outside of the first telescopic rod 203. A first support plate 206 is provided on one side of the bottom outer wall of the lifting tube 201, and a second support plate is provided on the other side of the bottom outer wall of the lifting tube 201. 207, and the first support plate 206 and the second support plate 207 are symmetrically distributed. The top and bottom of the supporting steel pipe 1 are respectively provided with mounting support plates 4. The four corners of the mounting support plates 4 are provided with screw holes 5. The screw holes 5 are connected and fixed to the building structure by setting the appropriate bolts 6. The buffer top block 205 contacts the building reinforcement structure for easy support. The first spring 204 and the first telescopic rod 203 facilitate the buffering and absorption of vibrations received by the building reinforcement structure, which helps to improve the support effect of the building reinforcement structure. The mounting support plates 4 and the bolts 6 are easy to install and fix to the building reinforcement structure, which is convenient for installation.

[0023] Working principle: First, the bidirectional screw 302 is movably fixed by the fixed support plate 301. The adjusting knob 303 drives the bidirectional screw 302 to rotate. The bidirectional screw 302 is coated with lubricating oil, which can improve the smoothness of lifting. Through the connecting screw hole 5305, the bidirectional screw 302 can drive the first support plate 206 to lift, thereby facilitating the control of the distance between the lifting tubes 201 and facilitating the lifting of the support plate 202. The auxiliary groove 304 facilitates auxiliary rotation with a wrench, making it easier to control the lifting accuracy. The limiting support column 306 is fixed to the opening through the connecting support plate 307 to limit the lifting of the lifting tubes 201. The second spring... 309 and the second telescopic rod 308 remain in a retracted state. When the lifting tube 201 is pushed outward, the second spring 309 rebounds to control the retraction of the second telescopic rod 308, providing support between the lifting tubes 201 and facilitating the improvement of the lifting limit effect. The buffer block 205 contacts the building reinforcement structure, facilitating its support. The first spring 204, in conjunction with the first telescopic rod 203, facilitates the buffering and absorption of vibrations received by the building reinforcement structure, helping to improve the support effect of the building reinforcement structure. The mounting plate 4, in conjunction with the bolts 6, facilitates the installation and fixing with the building reinforcement structure, making installation convenient. This completes the operation process of a support structure for building reinforcement.

[0024] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A supporting structure for reinforcing building structures, characterized in that, The system includes a supporting steel pipe (1), with buffer components (2) symmetrically arranged on the inner wall of the supporting steel pipe (1). Adjustment components (3) are provided at the openings on both sides of the supporting steel pipe (1). The adjustment components (3) include a fixed support plate (301), which is symmetrically arranged on one side opening of the supporting steel pipe (1). The inner wall of the fixed support plate (301) is rotatably connected to both ends of a bidirectional screw (302). An adjustment knob (303) is provided at the top of the bidirectional screw (302), and an auxiliary groove (304) is provided at the top of the adjustment knob (303).

2. The supporting structure for reinforcing a building structure according to claim 1, characterized in that: The buffer assembly (2) includes a lifting tube (201), a supporting top plate (202) is provided on the top of the lifting tube (201), one end of a first telescopic rod (203) is connected to the four corners of the supporting top plate (202), the other end of the first telescopic rod (203) is connected to a buffer top block (205), one end of a first spring (204) is connected to the four corners of the supporting top plate (202), and the other end of the first spring (204) is connected to the buffer top block (205).

3. A supporting structure for reinforcing a building structure according to claim 2, characterized in that: The bottom side outer wall of the lifting tube (201) is provided with a first support plate (206), and the bottom side outer wall of the lifting tube (201) is provided with a second support plate (207). The first support plate (206) and the second support plate (207) are symmetrically distributed. The first support plate (206) is provided with a connecting screw hole (5) (305) adapted to the bidirectional screw (302).

4. A supporting structure for reinforcing a building structure according to claim 2, characterized in that: The inner wall of the lifting tube (201) is slidably provided with a matching limiting support (306). A connecting support plate (307) is provided on one side of the middle part of the limiting support (306). The connecting support plate (307) is connected and fixed to the inner wall of the opening on the other side of the supporting steel tube (1). The two ends of the second telescopic rod (308) are respectively connected between the connecting support plate (307) and the second support plate (207). The two ends of the second spring (309) are respectively connected between the connecting support plate (307) and the second support plate (207).

5. A supporting structure for reinforcing a building structure according to claim 1, characterized in that: The top and bottom of the supporting steel pipe (1) are respectively provided with mounting plates (4), and the four corners of the mounting plates (4) are provided with screw holes (5). The screw holes (5) are connected and fixed to the building structure by bolts (6) that are compatible with them.

6. A supporting structure for reinforcing a building structure according to claim 4, characterized in that: The second spring (309) is movably wound around the outside of the second telescopic rod (308).

7. A supporting structure for reinforcing a building structure according to claim 2, characterized in that: The first spring (204) is movably wound around the outside of the first telescopic rod (203).