A robust reinforcing structure for use in construction engineering
Patent Information
- Application Number
- CN202522348113.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-05
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-11-05
AI Technical Summary
[0003]现有的建筑工程用的稳固式增强装置通常为固定式结构,即不能灵活的调节稳固增强结构的加固范围,导致不便于对不同长度的钢管或钢筋进行加固使用,限制了稳固式增强结构的实用性和适用范围
通过加固范围调节结构的设置,在主稳固结构的顶部和底部分别设置第一副稳固结构和第二副稳固结构后,第一副稳固结构和第二副稳固结构依靠空槽和支撑块的活动连接能够在主稳固结构两侧设置的固定板上活动,拉动第一副稳固结构和第二副稳固结构调节位置后,通过限位架和限位槽的卡合来对支撑块进行限位,以此对第一副稳固结构和第二副稳固结构进行固定,能够改变主稳固结构的加固范围,便于对不同长度的钢管或钢筋进行加固使用,提升了实用性和适用范围。
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Figure CN224785077U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a stable reinforcement structure, and more particularly to a stable reinforcement structure for use in building engineering, belonging to the field of building engineering technology. Background Technology
[0002] During the construction process, various scaffolding structures built with steel pipes and reinforcing bars are required. The connections between steel pipes and reinforcing bars need to be fixed with stabilizing reinforcement devices to make the scaffolding structure more stable, facilitate its use during construction, and ensure construction safety.
[0003] Existing stabilization reinforcement devices used in building engineering are usually fixed structures, meaning that the reinforcement range of the stabilization reinforcement structure cannot be flexibly adjusted. This makes it inconvenient to reinforce steel pipes or reinforcing bars of different lengths, thus limiting the practicality and applicability of stabilization reinforcement structures.
[0004] Therefore, there is an urgent need for an improved, robust reinforcement structure based on building engineering to solve the aforementioned problems. Utility Model Content
[0005] The purpose of this utility model is to provide a stable reinforcement structure for building engineering. By adjusting the reinforcement range of the structure, a first and a second auxiliary stabilizing structure are set at the top and bottom of the main stabilizing structure, respectively. The first and second auxiliary stabilizing structures can move on the fixed plates set on both sides of the main stabilizing structure by means of the movable connection of the slot and the support block. By adjusting the position of the first and second auxiliary stabilizing structures, the reinforcement range of the main stabilizing structure can be changed, which is convenient for reinforcing steel pipes or steel bars of different lengths, thus improving practicality and applicability.
[0006] To achieve the above objectives, the main technical solutions adopted by this utility model include: A stabilizing reinforcement structure for building engineering includes a main stabilizing structure with a reinforcement range adjustment structure. The reinforcement range adjustment structure includes fixed plates symmetrically arranged on both sides of the main stabilizing structure. Two slots are formed on the fixed plates, and support blocks are movably connected inside the slots. A first secondary stabilizing structure and a second secondary stabilizing structure are respectively provided at the top and bottom of the main stabilizing structure. The first secondary stabilizing structure and the second secondary stabilizing structure are respectively fixedly connected to two adjacent support blocks. Two springs are fixedly installed on one side of each support block. A limit frame is movably installed on the support block and fixedly connected to the two springs. A plurality of limit slots are evenly formed on one side of the fixed plate.
[0007] Preferably, two sliding grooves are formed on the inner side of the empty groove, and a slider is slidably installed inside the sliding groove, and the slider is fixedly connected to the support block.
[0008] Preferably, a fixing frame is fixedly installed on the top of the support block, a positioning rod is movably installed on the fixing frame, and a positioning groove is provided on the limiting frame.
[0009] Preferably, a first magnetic block is fixedly installed on the top of the positioning groove, and a second magnetic block is fixedly installed on the inner side of the fixing frame.
[0010] Preferably, a plurality of scale plates are fixedly installed on the outer wall of the fixing plate, and pointers are fixedly installed on both sides of the support block.
[0011] Preferably, the main stabilizing structure, the first secondary stabilizing structure, and the second secondary stabilizing structure each include a first stabilizing sleeve and a second stabilizing sleeve. The first stabilizing sleeve and one side of the second stabilizing sleeve are movably connected by a connecting shaft. The other side of the first stabilizing sleeve and the second stabilizing sleeve are fixedly installed with a fixing block, and a bolt is installed between the two fixing blocks.
[0012] Preferably, the main stabilizing structure, the first secondary stabilizing structure, and the second secondary stabilizing structure are all internally fixedly equipped with a plurality of anti-slip teeth.
[0013] This utility model has at least the following beneficial effects: By setting up a reinforcement range adjustment structure, a first and a second auxiliary stabilizing structure are respectively set at the top and bottom of the main stabilizing structure. The first and second auxiliary stabilizing structures can move on the fixed plates set on both sides of the main stabilizing structure by means of the movable connection of the slot and the support block. After the first and second auxiliary stabilizing structures are pulled to adjust their positions, the support block is limited by the engagement of the limiting frame and the limiting slot, thereby fixing the first and second auxiliary stabilizing structures. This can change the reinforcement range of the main stabilizing structure, making it convenient to reinforce steel pipes or steel bars of different lengths, thus improving practicality and applicability. Attached Figure Description
[0014] The accompanying drawings, which are included to provide a further understanding of this application and form part of this application, illustrate exemplary embodiments and are used to explain this application, but do not constitute an undue limitation of this application. In the drawings: Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a rear view of the overall structure of this utility model; Figure 3 This is a side view of the overall structure of this utility model; Figure 4 This is a top view of the overall structure of this utility model; Figure 5 For the present utility model Figure 4 Enlarged view of point A in the middle; Figure 6 This is a schematic diagram of the positioning rod and positioning groove structure of this utility model.
[0015] In the diagram, 1. Main stabilizing structure; 2. Reinforcement range adjustment structure; 3. Fixing plate; 4. Hollow groove; 5. Support block; 6. First secondary stabilizing structure; 7. Second secondary stabilizing structure; 8. Spring; 9. Limiting frame; 10. Limiting groove; 11. Slide groove; 12. Slider; 13. Fixing frame; 14. Positioning rod; 15. Positioning groove; 16. First magnetic block; 17. Second magnetic block; 18. Scale plate; 19. Pointer; 20. First stabilizing sleeve; 21. Second stabilizing sleeve; 22. Connecting shaft; 23. Fixing block; 24. Bolt; 25. Anti-slip teeth. Detailed Implementation
[0016] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the protection scope of the present utility model.
[0017] like Figures 1-6 As shown, this embodiment provides a stable reinforcement structure embodiment for building engineering.
[0018] A stabilizing reinforcement structure for building engineering includes a main stabilizing structure 1, a reinforcement range adjustment structure 2 on the main stabilizing structure 1, and a fixing plate 3 symmetrically arranged on both sides of the main stabilizing structure 1. The fixing plate 3 has two slots 4, and a support block 5 is movably connected inside the slot 4. The top and bottom of the main stabilizing structure 1 are respectively provided with a first auxiliary stabilizing structure 6 and a second auxiliary stabilizing structure 7. The first auxiliary stabilizing structure 6 and the second auxiliary stabilizing structure 7 are respectively fixedly connected to two adjacent support blocks 5. Two springs 8 are fixedly installed on one side of the support block 5. A limit frame 9 is movably installed on the support block 5 and is fixedly connected to the two springs 8. A plurality of limit slots 10 are evenly opened on one side of the fixing plate 3.
[0019] By setting the reinforcement range adjustment structure 2, after setting the first auxiliary stabilizing structure 6 and the second auxiliary stabilizing structure 7 at the top and bottom of the main stabilizing structure 1 respectively, the first auxiliary stabilizing structure 6 and the second auxiliary stabilizing structure 7 can move on the fixed plates 3 set on both sides of the main stabilizing structure 1 by means of the movable connection of the slot 4 and the support block 5. After pulling the first auxiliary stabilizing structure 6 and the second auxiliary stabilizing structure 7 to adjust their positions, after aligning one end of the limiting frame 9 with the limiting groove 10, the elastic contraction of the spring 8 drives the limiting frame 9 to move so that one end of it engages with the limiting groove 10. The engagement of the limiting frame 9 and the limiting groove 10 limits the support block 5, thereby fixing the first auxiliary stabilizing structure 6 and the second auxiliary stabilizing structure 7. When the first auxiliary stabilizing structure 6 and the second auxiliary stabilizing structure 7 are moved away from or closer to the main stabilizing structure 1, they can be adaptively adjusted according to the actual length of the steel pipe or rebar. By changing the reinforcement range of the main stabilizing structure 1, it is convenient to reinforce steel pipes or rebars of different lengths, thus improving practicality and applicability.
[0020] In this embodiment, as Figures 1-6 As shown, two sliding grooves 11 are opened on the inner side of the slot 4. A slider 12 is slidably installed inside the sliding groove 11, and the slider 12 is fixedly connected to the support block 5. A fixing frame 13 is fixedly installed on the top of the support block 5. A positioning rod 14 is movably installed on the fixing frame 13. A positioning groove 15 is opened on the limiting frame 9. A first magnetic block 16 is fixedly installed on the top of the positioning groove 15. A second magnetic block 17 is fixedly installed on the inner side of the fixing frame 13.
[0021] With the sliding groove 11 and slider 12, the empty groove 4 and the support block 5 are slidably connected by the sliding groove 11 and slider 12. This not only reduces the friction between the support block 5 and the empty groove 4, allowing the support block 5 to move more easily within the empty groove 4, but also, because the slider 12 slides inside the sliding groove 11, it also limits the support block 5, making it less prone to wobbling. This ensures the perpendicularity of the first and second auxiliary stabilizing structures 6 and 7 relative to the main stabilizing structure 1, preventing skewing. Furthermore, with the fixing frame 13, positioning rod 14, and positioning groove 15, the limiting frame 9 is engaged with the limiting groove 10. The positioning rod 14 is pushed down and inserted into the positioning groove 15. After the positioning rod 14 and the positioning groove 15 are combined, the limiting frame 9 is secured to prevent vibration from causing the limiting frame 9 to fall out of the limiting groove 10. Due to the setting of the first magnetic block 16 and the second magnetic block 17, since it is necessary to pull one end of the limiting frame 9 out of the limiting groove 10 before adjustment, the positioning rod 14 needs to be disengaged from the positioning groove 15 before pulling the limiting frame 9. After the positioning rod 14 is lifted and disengaged, the first magnetic block 16 and the second magnetic block 17 on its top are attached to attract the positioning rod 14, so as to prevent the positioning rod 14 from falling when the limiting frame 9 is pulled and affecting the operation.
[0022] In this embodiment, as Figures 1-6 As shown, several scale plates 18 are fixedly installed on the outer wall of the fixed plate 3, and pointers 19 are fixedly installed on both sides of the support block 5. The main stabilizing structure 1, the first secondary stabilizing structure 6 and the second secondary stabilizing structure 7 each include a first stabilizing sleeve 20 and a second stabilizing sleeve 21. The first stabilizing sleeve 20 and the second stabilizing sleeve 21 are movably connected on one side by a connecting shaft 22. Fixing blocks 23 are fixedly installed on the other side of the first stabilizing sleeve 20 and the second stabilizing sleeve 21. Bolts 24 are installed between the two fixing blocks 23. Several anti-slip teeth 25 are fixedly installed inside the main stabilizing structure 1, the first secondary stabilizing structure 6 and the second secondary stabilizing structure 7.
[0023] The scale plate 18 and pointer 19 allow for precise positioning of the adjustment distance between the first and second stabilizing structures 6 and 7. When adjusting the first and second stabilizing structures 6 and 7, the scale plate 18 and pointer 19 are used to confirm the distance moved, ensuring that the adjustment lengths of the first and second stabilizing structures 6 and 7 are equal. This avoids affecting the stability of the reinforcement due to inconsistent adjustment lengths. The first stabilizing sleeve 20, the second stabilizing sleeve 21, the connecting shaft 22, the fixing block 23, and the bolts 24 form the main stabilizing structure 1, the first secondary stabilizing structure 6, and the second secondary stabilizing structure 7. A connecting shaft 22 is provided on one side of the first stabilizing sleeve 20 and the second stabilizing sleeve 21 for connection, and the other side is fixed by the combination of the fixing block 23 and the bolt 24. When the bolt 24 is removed to open the first stabilizing sleeve 20 and the second stabilizing sleeve 21, the connection of the connecting shaft 22 ensures that the first stabilizing sleeve 20 and the second stabilizing sleeve 21 are always connected during the opening process, which avoids the separation of the first stabilizing sleeve 20 and the second stabilizing sleeve 21. It is also more convenient to wrap and connect the steel pipe or the reinforcing bar. The anti-slip teeth 25 can increase the clamping force of the first stabilizing sleeve 20 and the second stabilizing sleeve 21 on the steel pipe or the reinforcing bar, so that the first stabilizing sleeve 20 and the second stabilizing sleeve 21 are installed more securely and prevent loosening and slippage.
[0024] In this embodiment, as Figures 1-6 As shown in the figure, the working process of a stabilizing reinforcement structure for building engineering provided in this embodiment is as follows: After adjusting the positions of the first and second stabilizing structures 6 and 7, align one end of the limiting frame 9 with the limiting groove 10. Then, rely on the elastic contraction of the spring 8 to move the limiting frame 9 so that one end engages with the limiting groove 10. The engagement of the limiting frame 9 and the limiting groove 10 limits the support block 5, thereby fixing the first and second stabilizing structures 6 and 7. Push the positioning rod 14 into the positioning groove 15 to fix the limiting frame 9 a second time. Then, wrap the main stabilizing structure 1 around the connection of the steel pipe or rebar and connect the bolt 24 to the two fixing blocks 23 to fasten the main stabilizing structure 1 to the steel pipe or rebar. Then, wrap and fix the first and second stabilizing structures 6 and 7 to the steel pipe or rebar in the same way to complete the reinforcement of the steel pipe or rebar.
[0025] The foregoing description illustrates and describes several preferred embodiments of the present invention. However, as previously stated, it should be understood that the present invention is not limited to the forms disclosed herein and should not be construed as excluding other embodiments. It can be used in various other combinations, modifications, and environments, and can be altered within the scope of the inventive concept described herein through the foregoing teachings or techniques or knowledge in related fields. Any modifications and variations made by those skilled in the art that do not depart from the spirit and scope of the present invention should be within the protection scope of the appended claims.
Claims
1. A stabilizing reinforcement structure for building engineering, comprising a main stabilizing structure (1), characterized in that: The main stabilizing structure (1) is provided with a reinforcement range adjustment structure (2). The reinforcement range adjustment structure (2) includes a fixing plate (3) symmetrically arranged on both sides of the main stabilizing structure (1). Two slots (4) are opened on the fixing plate (3). A support block (5) is movably connected inside the slot (4). The top and bottom of the main stabilizing structure (1) are respectively provided with a first auxiliary stabilizing structure (6) and a second auxiliary stabilizing structure (7). The first auxiliary stabilizing structure (6) and the second auxiliary stabilizing structure (7) are respectively fixedly connected to two adjacent support blocks (5). Two springs (8) are fixedly installed on one side of the support block (5). A limit frame (9) is movably installed on the support block (5), and the limit frame (9) is fixedly connected to the two springs (8). Several limit slots (10) are evenly opened on one side of the fixing plate (3).
2. The robust reinforcement structure for building engineering according to claim 1, characterized in that: Two sliding grooves (11) are provided on the inner side of the empty groove (4). A slider (12) is slidably installed inside the sliding groove (11), and the slider (12) is fixedly connected to the support block (5).
3. The robust reinforcement structure for building engineering according to claim 1, characterized in that: A fixing frame (13) is fixedly installed on the top of the support block (5), a positioning rod (14) is movably installed on the fixing frame (13), and a positioning groove (15) is opened on the limiting frame (9).
4. A robust reinforcement structure for building engineering according to claim 3, characterized in that: A first magnetic block (16) is fixedly installed on the top of the positioning groove (15), and a second magnetic block (17) is fixedly installed on the inner side of the fixing frame (13).
5. A robust reinforcement structure for building engineering according to claim 1, characterized in that: Several scale plates (18) are fixedly installed on the outer wall of the fixed plate (3), and pointers (19) are fixedly installed on both sides of the support block (5).
6. A robust reinforcement structure for building engineering according to claim 1, characterized in that: The main stabilizing structure (1), the first secondary stabilizing structure (6) and the second secondary stabilizing structure (7) each include a first stabilizing sleeve (20) and a second stabilizing sleeve (21). The first stabilizing sleeve (20) and one side of the second stabilizing sleeve (21) are movably connected by a connecting shaft (22). The other side of the first stabilizing sleeve (20) and the second stabilizing sleeve (21) are fixedly installed with fixing blocks (23), and bolts (24) are installed between the two fixing blocks (23).
7. A robust reinforcement structure for building engineering according to claim 1, characterized in that: The main stabilizing structure (1), the first secondary stabilizing structure (6) and the second secondary stabilizing structure (7) are all fixedly equipped with a number of anti-slip teeth (25).