Building curtain wall embedded part mounting structure

By designing positioning and reinforcement components, the problem of poor installation accuracy of embedded parts was solved, achieving precise positioning and stable connection of embedded parts, thus improving the safety and construction efficiency of curtain wall installation.

CN223689083UActive Publication Date: 2025-12-19YIZHENG XINCHENG CONSTR ENG CO LTD
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Patent Information

Application Number
CN202422707033.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-06
Publication Date
2025-12-19
Estimated Expiration
2034-11-06

AI Technical Summary

Technical Problem

Traditional methods of installing embedded parts have poor precision, which can lead to the embedded parts shifting, tilting, or being uneven during the concrete pouring process. This affects the accuracy and safety of the curtain wall installation, and problems frequently occur, especially in large and complex buildings.

Method used

The system employs positioning and reinforcement components. The positioning component includes a positioning plate and a connecting rod, which are connected to the positioning plate via anchor bars and hooked to the reinforcing steel cage via connecting hooks. The positioning plate abuts against the reinforcing steel cage to ensure accurate positioning of the embedded parts. The reinforcement component is welded to the reinforcing steel cage via fixing clamps to enhance the connection strength.

Benefits of technology

This improved the installation accuracy and stability of embedded parts, reduced the risk of offset and tilting, ensured the stability of embedded parts during concrete pouring, improved construction efficiency, and reduced costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of building curtain wall embedded part installation, in particular to a building curtain wall embedded part installation structure which comprises a positioning assembly, the positioning assembly comprises a positioning plate and a connecting rod, the positioning plate is provided with a through hole allowing an anchoring rib to penetrate through, and one end of the connecting rod is rotationally connected with the positioning plate; the other end is provided with a connecting part and is connected with the steel reinforcement framework; in addition, a reinforcing assembly is further included and comprises a fixing clamp and a connecting piece, and the fixing clamp is rotationally connected with the connecting piece and used for enhancing the stability and reliability of the structure. The technical effects that the installation precision and stability of the embedded part are improved, the installation steps are simplified, and the working efficiency is improved are achieved.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of building curtain wall embedded part installation, and in particular to a building curtain wall embedded part installation structure. BACKGROUND

[0002] As an important part of modern buildings, building curtain walls not only improve the aesthetics of buildings, but also improve the functionality of buildings. With the acceleration of urbanization, the demand for building curtain walls continues to grow, especially in high-rise buildings and large public facilities. The safety and stability of the curtain wall have become one of the key factors in engineering design and construction, and the embedded part as an important connecting component connecting the curtain wall and the main structure directly affects the structural safety and service life of the curtain wall.

[0003] At present, the embedded part installation usually adopts a structure composed of a simple steel plate and an anchoring bar, and is fixed by binding or welding with the steel reinforcement framework of the main structure. In the actual construction process, the elevation and plane position of the embedded part are often controlled by relying on traditional manual operation methods using a line and a ruler. However, this manual operation method cannot guarantee the accurate installation of the embedded part, and common problems include the deviation, inclination and unevenness of the embedded part during pouring of concrete, especially the position change caused by fluidity during pouring of concrete, which seriously affects the quality and performance of the embedded part.

[0004] Therefore, the traditional embedded part installation method has the problem of poor accuracy, especially in the design and construction process of large and complex buildings, the position deviation, inclination or unevenness of the embedded part frequently occurs, which directly affects the accuracy and safety of subsequent curtain wall installation. CONTENT OF THE INVENTION

[0005] In order to improve the firmness of the embedded part, the application provides a building curtain wall embedded part installation structure.

[0006] The building curtain wall embedded part installation structure provided by the application adopts the following technical scheme:

[0007] A building curtain wall embedded part installation structure, comprising a positioning assembly, the positioning assembly comprising a positioning plate and a connecting rod, the positioning plate being provided with a through hole for the anchoring bar to pass through, one end of the connecting rod being rotatably connected with the positioning plate, the other end of the connecting rod being provided with a connecting portion and being connected with the steel reinforcement framework through the connecting portion.

[0008] By adopting the technical scheme, the anchoring rib passes through to realize the connection between the positioning plate and the embedded part, and each anchoring rib can be connected with the positioning plate, so that the positioning plate can realize the fixation of multiple anchoring ribs on the embedded part. When installing the embedded part, the position of the positioning plate is adjusted, and the positioning plate is abutted with the steel reinforcement cage to realize the positioning of the embedded part, and then the connecting rod is connected with the steel reinforcement cage to realize the fixation of the embedded rib, thereby realizing the accurate and stable installation of the embedded part.

[0009] Preferably, the connecting part comprises a sleeve and a connecting hook, one end of the sleeve is rotatably connected with the connecting hook, the other end is screwed with the connecting rod, and the connecting hook is hung with the steel reinforcement cage.

[0010] By adopting the technical scheme, the connecting hook is hung with the steel reinforcement cage to realize the stable connection between the connecting part and the steel reinforcement cage, thereby improving the overall stability of the embedded part installation structure.

[0011] Preferably, the positioning plate is arranged in the form of a ring plate, and the anchoring rib passes through the inner side of the positioning plate and abuts against the inner wall of the positioning plate.

[0012] By adopting the technical scheme, the positioning plate arranged in the form of a ring plate can better adapt to anchoring ribs of different diameters, improve the application range, and ensure that the anchoring rib is more stable during positioning, thereby reducing the risk of deviation.

[0013] Preferably, a fixing plate is arranged on the positioning plate, the fixing edge is attached to the surface of the anchoring rib, and the fixing plate is welded with the anchoring rib.

[0014] By adopting the technical scheme, the positioning plate is welded with the anchoring rib through the fixing plate, thereby enhancing the connection strength between the positioning plate and the anchoring rib, and improving the overall stability of the embedded part.

[0015] Preferably, it further comprises a reinforcing assembly; the reinforcing assembly comprises a fixing clamp and a connecting piece;

[0016] The fixing clamp is provided with two and is rotatably connected with the connecting piece; the fixing clamp comprises two arc-shaped plates, the two arc-shaped plates are hinged and fixed with each other through a locking piece, and one of the arc-shaped plates is connected with the connecting piece;

[0017] One of the fixing clamps is connected with the anchoring rib, and the other fixing clamp is connected with the steel reinforcement cage.

[0018] By adopting the technical scheme, the two arc-shaped plates are fixed through the locking piece to realize the reliable connection between the embedded part and the main structure, thereby improving the firmness of the embedded part. The design of multiple welding holes further enhances the connection strength between the fixing clamp and the steel reinforcement cage and the anchoring rib. The long strip-shaped arrangement of the connecting hole facilitates the adjustment of the opening of the fixing clamp, thereby ensuring the accurate installation of the embedded part.

[0019] Preferably, the locking member comprises a fastening screw, the fastening screw is screwed with one of the arc-shaped plates, and the other arc-shaped plate is provided with a connecting plate, the connecting plate is provided with a connecting hole, and the fastening screw is arranged in the connecting hole.

[0020] By adopting the above technical scheme, the fastening screw is arranged in the connecting hole, thereby realizing reliable locking of the fixing clamp and improving structural stability.

[0021] Preferably, the connecting hole is in a strip shape and is arranged perpendicularly to the arc-shaped plate.

[0022] By adopting the above technical scheme, the connecting hole is in a strip shape and is arranged perpendicularly to the arc-shaped plate, so that movement of the fastening screw in the connecting hole can adjust the opening degree of the fixing clamp, thereby adapting to steel reinforcement frameworks and anchoring bars of different sizes and improving adaptability of the fixing clamp and stability of installation of the embedded part.

[0023] Preferably, a plurality of welding holes are arranged on the fixing clamp.

[0024] By adopting the above technical scheme, the plurality of welding holes arranged on the fixing clamp can realize stable welding between the fixing clamp and the steel reinforcement framework and between the fixing clamp and the anchoring bar, thereby enhancing stability of the entire building curtain wall embedded part installation structure and ensuring accurate positioning and reliable fixing of the embedded part in the construction process.

[0025] In summary, the present application has at least one of the following beneficial technical effects:

[0026] 1. By arranging the positioning plate and the connecting rod in the positioning assembly, the elevation and the plane position of the embedded part can be effectively controlled, repeated adjustment in the traditional construction method is reduced, and installation accuracy of the embedded part is improved.

[0027] 2. The combination of the sleeve and the connecting hook of the connecting part can firmly connect the positioning assembly with the steel reinforcement framework, avoid displacement or inclination of the embedded part during pouring of concrete, and ensure stability of the embedded part.

[0028] 3. The fixing clamp and the connecting member of the reinforcing assembly are used in cooperation, which can further enhance the connection strength between the embedded part and the steel reinforcement framework, reduce position change in the concrete pouring process, and improve overall firmness of the embedded part. BRIEF DESCRIPTION OF DRAWINGS

[0029] Figure 1 is a schematic view of the cooperation relationship between the anchoring bar and the positioning plate in the embodiment of the present application;

[0030] Figure 2 is a structural schematic view of the positioning assembly in the embodiment of the present application;

[0031] Figure 3is a schematic view of the cooperation relationship between the reinforcing assembly and the anchoring bars in the embodiment of the present application;

[0032] Figure 4 is a schematic view of the structure of the reinforcing assembly in the embodiment of the present application.

[0033] In the drawings, 1 is a positioning assembly; 11 is a positioning plate; 111 is a through hole; 112 is a fixing plate; 12 is a connecting rod; 121 is a sleeve; 122 is a connecting hook; 2 is a reinforcing assembly; 21 is a fixing clamp; 212 is a connecting plate; 213 is a connecting hole; 214 is a locking piece; 215 is a welding hole; 4 is a steel plate; 5 is an anchoring bar. DETAILED DESCRIPTION

[0034] The following will be described in detail with reference to the accompanying drawings Figures 1-4 The present application will be further described in detail.

[0035] The building curtain wall embedded part mounting structure provided by the embodiment of the present application is used for positioning and fixing the embedded part. The common embedded part includes a steel plate 4 and anchoring bars 5 fixed on the steel plate. Usually, the anchoring bars 5 are provided in multiple and connected with the building shear wall steel reinforcement framework by binding or welding. When pouring the shear wall, the embedded part is embedded in the shear wall.

[0036] Referring to Figure 1 and Figure 2 , the building curtain wall embedded part mounting structure includes a positioning assembly 1. Specifically, the positioning assembly 1 includes a positioning plate 11 and a connecting rod 12. The positioning plate 11 is provided in a ring shape. The positioning plate 11 is provided with a through hole 111 for the anchoring bars to pass through. One end of the connecting rod 12 is rotationally connected with the positioning plate 11. The other end is provided with a connecting part and connected with the steel reinforcement framework through the connecting part.

[0037] Thus, the anchoring bars pass through the through hole 111, thereby realizing the connection between the positioning plate 11 and the embedded part. Each anchoring bar can be connected with the positioning plate 11. Thus, the positioning plate 11 can realize the fixation of multiple anchoring bars on the embedded part. When installing the embedded part, the position of the positioning plate 11 is adjusted. The positioning plate 11 is abutted with the steel reinforcement framework, thereby realizing the positioning of the embedded part. Then, the connecting rod 12 is connected with the steel reinforcement framework, thereby realizing the fixation of the embedded part, and thus realizing the accurate and stable installation of the embedded part. In addition, the number of the positioning plates 11 can be adjusted according to the situation. The embedded bars can be connected with the steel reinforcement framework at different positions, thereby further improving the stability.

[0038] In one embodiment of the present application, the specific shape of the positioning plate 11 can be rectangular or circular. The through hole 111 is provided in multiple and corresponds to the number and position of the anchoring bars, so that the anchoring bars can pass through the through hole 111. In another embodiment, the positioning plate 11 is provided in a ring shape. The central hollow area is the through hole 111.

[0039] Further, the connecting part comprises a sleeve 121 and a connecting hook 122, one end of the sleeve 121 is rotationally connected with the connecting hook 122, the other end is screwed with the connecting rod 12, and the connecting hook 122 is hung with the steel bar framework. The specific shape of the connecting hook 122 is an arc-shaped plate, and its cross section is C-shaped, which can be hung on the steel bar framework and be attached to the surface of the steel bar framework, thereby improving the stability. The inner wall of the hook is provided with anti-skid lines to increase the friction and prevent the displacement of the embedded part during the pouring of concrete. The hook can also be directly welded with the steel bar framework after the positioning of the embedded bar is completed.

[0040] By tightening the sleeve 121, the connecting hook 122 can be stably connected with the steel bar framework, thereby realizing the connection between the positioning plate 11 and the steel bar framework.

[0041] The connecting part comprises a plurality of and is distributed around the positioning plate 11, so as to be connected with different positions of the steel bar framework, thereby realizing the accurate positioning and stable fixation of the positioning plate 11.

[0042] In addition, the positioning assembly 1 further comprises a fixed plate 112. The fixed plate 112 is arranged on the inner wall and mainly functions to be attached to the surface of the anchor bar and be welded. The fixed plate 112 can further enhance the overall stability of the embedded part and strengthen the bonding strength between the embedded part and the cast-in-place concrete, so as to improve the load capacity of the embedded part. The specific material of the fixed plate 112 can be steel or other high-strength materials in addition to aluminum alloy plates. The shape of the fixed plate 112 can be adjusted according to actual needs, so as to better attach to the cylindrical anchor bar.

[0043] Further, referring to Figure 3 and Figure 4 , the embodiment of the application further adds a reinforcing assembly 2; the reinforcing assembly 2 comprises a fixed clamp 21 and a connecting piece. The fixed clamp 21 is provided with two and is rotationally connected with the connecting piece. The fixed clamp 21 comprises two arc-shaped plates, the two arc-shaped plates are hinged and are fixed with each other through a locking piece 214, and one of the arc-shaped plates is connected with the connecting piece. One of the fixed clamps 21 is connected with the anchor bar, and the other fixed clamp 21 is connected with the steel bar framework. The design of the fixed clamp 21 adopts a double-arc-shaped plate structure, which can more closely attach to the anchor bar and the steel bar framework, thereby ensuring that the connection between the two is more stable.

[0044] The fixing clamp 21 is fixed through the locking piece 214 between the two arc-shaped plates, and the locking piece 214 includes a fastening screw which is screwed with one of the arc-shaped plates, and the other arc-shaped plate is provided with a connecting plate 212, and the connecting plate 212 is provided with a connecting hole 213, and the fastening screw is arranged in the connecting hole 213. The connecting hole 213 is in a long strip shape and is arranged vertically to the arc-shaped plate, and when the arc-shaped plate rotates, the fastening screw can move in the connecting hole 213, so as to adjust the opening of the fixing clamp 21. This design allows the fixing clamp 21 to be fine-tuned during installation according to actual needs to adapt to different sizes of steel reinforcement and anchor bars. The long strip design of the connecting hole 213 also allows the fastening screw to move in the hole, increasing the flexibility of the fixing clamp 21.

[0045] In addition, a plurality of welding holes 215 are formed in the fixing clamp 21, and the welding holes 215 are used for welding the fixing clamp 21 with the steel reinforcement and the fixing clamp 21 with the anchor bar, further enhancing the firmness of the entire embedded part.

[0046] The implementation principle of the embodiment is that through the cooperation of the positioning assembly 1 and the reinforcing assembly 2, the installation accuracy and stability of the embedded part are significantly improved. The positioning plate 11 and the connecting rod 12 in the positioning assembly 1 and their cooperating parts are designed and selected by precise structure and material to ensure that the embedded part always maintains accurate position during installation. The fixing clamp 21 in the reinforcing assembly 2 is designed with a unique locking piece 214, which enhances the connection strength between the embedded part and the steel reinforcement, avoiding the problems of deviation and inclination during installation of traditional embedded parts. The optimized design of the entire embedded part installation structure not only improves the construction efficiency, but also reduces the construction cost, further promoting the development of the building curtain wall industry.

[0047] The above are preferred embodiments of the present application, and do not limit the protection scope of the present application, therefore: any equivalent changes made on the structure, shape, principle of the present application should be covered within the protection scope of the present application.

Claims

1. A building curtain wall embedded member mounting structure, characterized by: The utility model provides a positioning assembly (1) comprising a positioning plate (11) and a connecting rod (12), the positioning plate (11) is provided with a through hole (111) for anchoring rib, one end of the connecting rod (12) is rotatably connected with the positioning plate (11), the other end is provided with a connecting part, and the connecting part is connected with the steel bar framework.

2. The architectural curtain wall embedment mounting structure according to claim 1, wherein: The connecting part comprises a sleeve (121) and a connecting hook (122), one end of the sleeve (121) is rotatably connected with the connecting hook (122), the other end is screwed with the connecting rod (12), and the connecting hook (122) is hung with the steel bar framework.

3. The architectural curtain wall embedment mounting structure of claim 1, wherein: The positioning plate (11) is arranged in the form of a ring plate, the anchoring rib passes through the inner side of the positioning plate (11) and abuts against the inner wall of the positioning plate (11).

4. The architectural curtain wall embedment mounting structure of claim 1, wherein: The positioning plate (11) is provided with a fixed plate (112), the fixed plate (112) is attached to the surface of the anchoring rib, and the fixed plate (112) is welded with the anchoring rib.

5. The architectural curtain wall embedment mounting structure according to claim 1, wherein: The utility model also comprises a reinforcing assembly (2), the reinforcing assembly (2) comprises a fixed clamp (21) and a connecting piece; The fixed clamp (21) is provided with two and is rotatably connected with the connecting piece; the fixed clamp (21) comprises two arc-shaped plates, the two arc-shaped plates are hinged and are fixed with each other through a locking piece (214), and one of the arc-shaped plates is connected with the connecting piece; One of the fixed clamps (21) is connected with the anchoring rib, and the other fixed clamp (21) is connected with the steel bar framework.

6. The architectural curtain wall embedment mounting structure according to claim 5, wherein: The locking piece (214) comprises a fastening screw, the fastening screw is screwed with one of the arc-shaped plates, the other arc-shaped plate is provided with a connecting plate (212), the connecting plate (212) is provided with a connecting hole (213), and the fastening screw is arranged in the connecting hole (213).

7. The architectural curtain wall embedment mounting structure of claim 6, wherein: The connecting hole (213) is arranged in the form of a long strip and is arranged perpendicularly to the arc-shaped plate.

8. The architectural curtain wall embedment mounting structure of claim 5, wherein: A plurality of welding holes (215) are formed in the fixed clamp (21).