A precise positioning auxiliary device for building embedded parts

CN224634325UActive Publication Date: 2026-08-14SHANDONG TIANQI REAL ESTATE GRP INC CORP
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-19
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

[0003]本实用新型的目的在于提供一种建筑预埋件精准定位辅助装置,以解决上述背景技术提出的目前市场上由于预埋件固定不牢易致混凝土浇筑时发生偏移、幕墙安装位置偏差、定位失准,定位时工序繁琐、工期长、施工低效,位移风险制约幕墙整体安装精度与结构安全的问题

Benefits of technology

[0011]与现有技术相比,本实用新型的有益效果是:该建筑预埋件精准定位辅助装置,先将辅助装置精确放置在结构梁内,然后辅助预埋件牢固地固定在结构梁上,保障了预埋件安装位置的精准度,确保在混凝土浇筑过程中预埋件不发生位移,为后续幕墙安装奠定坚实基础,减少因预埋件位置偏差引发的返工成本,不仅节省了人工成本,还能加快工程进度,运用精确的测量定位技术,可使预埋件安装误差符合严苛的设计标准,延长了幕墙使用寿命,其具体内容如下:

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Abstract

This utility model discloses a precise positioning auxiliary device for building embedded parts, including a structural beam and embedded parts. The structural beam includes horizontal and vertical angle steels, with positioning holes on the horizontal and vertical angle steels. A support frame is welded to the side of the vertical angle steel, and a threaded rod is connected through the support frame, with a nut threaded onto the threaded rod. This precise positioning auxiliary device first accurately places the auxiliary device inside the structural beam, then firmly fixes the embedded parts to the structural beam, ensuring the accuracy of the embedded parts' installation position. This ensures that the embedded parts do not shift during concrete pouring, laying a solid foundation for subsequent curtain wall installation, reducing rework costs caused by embedded part position deviations. It not only saves labor costs but also accelerates project progress. Utilizing precise measurement and positioning technology, the installation error of the embedded parts can meet stringent design standards, extending the service life of the curtain wall.
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Description

Technical Field

[0001] This utility model relates to the field of building curtain wall installation technology, specifically to an auxiliary device for precise positioning of building embedded parts. Background Technology

[0002] During curtain wall construction, embedded parts need to be installed in the main structure to provide reliable anchoring points for curtain wall installation. The accuracy of the embedded part positioning and the quality of the embedded construction directly affect the subsequent curtain wall installation quality. Traditional embedded methods suffer from poor positioning accuracy, are prone to displacement during construction, and are inconvenient to operate. Therefore, we designed a precise positioning auxiliary device for building embedded parts. This device is modularly assembled, easy to operate, and adjustable according to the size of the structural beam cross-section, making the positioning of embedded parts more accurate, facilitating quality control of curtain wall installation, and improving the overall quality of curtain wall installation. Utility Model Content

[0003] The purpose of this utility model is to provide an auxiliary device for precise positioning of building embedded parts, so as to solve the problems mentioned in the background art that the current market is prone to displacement during concrete pouring, curtain wall installation position deviation, and positioning inaccuracy due to the fact that the embedded parts are not firmly fixed, the positioning process is cumbersome, the construction period is long, the construction efficiency is low, and the displacement risk restricts the overall installation accuracy and structural safety of the curtain wall.

[0004] To achieve the above objectives, this utility model provides the following technical solution: a precise positioning auxiliary device for building embedded parts, comprising a structural beam and embedded parts, wherein the structural beam includes installed horizontal angle steel and vertical angle steel, the horizontal angle steel and vertical angle steel are provided with positioning holes, a support frame is welded to the side end of the vertical angle steel, a screw rod is connected through the support frame, and a nut is threaded onto the screw rod.

[0005] Preferably, an auxiliary component is welded to the side end of the vertical angle steel, the auxiliary component including a support plate installed on the side end of the vertical angle steel.

[0006] Preferably, the support plate has a connection hole and a limit frame is provided on the support plate.

[0007] Preferably, the limiting frame is threaded with a fixing bolt, which is inserted through the connection hole.

[0008] Preferably, a rod is connected through the limiting frame, and the rod is connected inside the positioning hole.

[0009] Preferably, the end of the insertion rod is provided with a handle, and the outside of the insertion rod is provided with a spring.

[0010] Preferably, a rubber sheet for shock absorption is provided on the outer side of the screw, and a gasket for heat insulation is provided on the outer side of the screw.

[0011] Compared with existing technologies, the beneficial effects of this utility model are as follows: This building embedded part precise positioning auxiliary device first accurately places the auxiliary device inside the structural beam, and then helps to firmly fix the embedded part on the structural beam, ensuring the accuracy of the embedded part installation position and ensuring that the embedded part does not shift during the concrete pouring process. This lays a solid foundation for subsequent curtain wall installation, reduces rework costs caused by embedded part position deviations, saves labor costs, and speeds up the project progress. By using precise measurement and positioning technology, the installation error of the embedded part can meet stringent design standards, extending the service life of the curtain wall. The specific details are as follows:

[0012] (1) By using a special positioning mold, the embedded parts are precisely positioned and firmly fixed on the structural beam, ensuring that the embedded parts do not shift during the concrete pouring process. By using precise measurement and positioning technology, the installation error of the embedded parts can meet the stringent design standards, ensuring that the position of the embedded parts is accurate and guaranteeing the aesthetics and safety of the curtain wall after installation.

[0013] (2) By using the connecting holes aligned with the support plate through the fixing bolts, the limit frame can be easily installed. This allows the user to insert the plug rod into the positioning hole on the vertical angle steel by using the handle, thus simplifying the installation process of the limit frame and reducing the installation difficulty.

[0014] (3) The quick connection structure can complete the assembly of the limit frame in a short time, which improves the construction efficiency. The spring on the outside of the plug can absorb external vibration and impact, buffer the disturbance caused by construction or environmental factors to the embedded parts, further enhance the stability of the device, and ensure the accuracy of the positioning of the embedded parts.

[0015] (4) The support frame connects the horizontal angle steel and the vertical angle steel through the cooperation of screws and nuts. The rubber sheet that runs through the screw facilitates vibration isolation, reduces the impact of vibration on the positioning of embedded parts during construction, and improves the overall installation stability.

[0016] (5) The gaskets on the screw are used for heat insulation to prevent the components from expanding and contracting due to temperature changes. By optimizing the construction process and quality control measures, the pre-embedded parts are guaranteed to meet the design and specification requirements, thereby improving the overall quality and reliability of the building project. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0018] Figure 2 This is a cross-sectional view of the installation of the embedded parts for the curtain wall of this utility model;

[0019] Figure 3This is a schematic diagram of the overall front view of the present invention;

[0020] Figure 4 This is a schematic diagram of the connection structure between the vertical angle steel and the support plate of this utility model;

[0021] Figure 5 This utility model Figure 4 Enlarged structural diagram at point A in the middle;

[0022] Figure 6 This is a schematic diagram of the overall side view structure of this utility model;

[0023] Figure 7 This is a schematic diagram of the angle steel connection structure of this utility model.

[0024] In the diagram: 1. Structural beam; 2. Embedded part; 3. Horizontal angle steel; 4. Vertical angle steel; 5. Positioning hole; 6. Support plate; 7. Connecting hole; 8. Fixing bolt; 9. Limiting bracket; 10. Insert rod; 11. Handle; 12. Spring; 13. Support frame; 14. Screw; 15. Rubber sheet; 16. Nut; 17. Washer. Detailed Implementation

[0025] 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.

[0026] Example 1: In this example, the embedded part 2 is precisely positioned and firmly fixed to the structural beam 1 to ensure that the embedded part 2 does not shift during the concrete pouring process, thus guaranteeing the accuracy of the installation position of the embedded part 2. Figures 1-3 , Figure 6 and Figure 7The technical solution shown includes a structural beam 1 and embedded parts 2. The structural beam 1 includes horizontal angle steel 3 and vertical angle steel 4. Positioning holes 5 are provided on the horizontal angle steel 3 and vertical angle steel 4. A support frame 13 is welded to the side of the vertical angle steel 4. A screw rod 14 is threaded through the support frame 13 and a nut 16 is threaded onto the screw rod 14. By using a specially designed positioning mold, the embedded parts 2 are precisely positioned and firmly fixed to the structural beam 1, ensuring that the embedded parts 2 do not shift during concrete pouring, thereby effectively avoiding the occurrence of problems during concrete pouring. The impact force caused the embedded part 2 to shift, ensuring the accuracy of its installation position and laying a solid foundation for subsequent curtain wall installation. This reduced rework costs caused by positional deviations. Utilizing advanced construction techniques and tools reduced construction steps and simplified processes, saving labor costs, accelerating project progress, meeting project deadlines, and enhancing the construction unit's economic benefits and market competitiveness. Establishing unified construction standards and processes standardized the pre-embedding operation of embedded part 2, ensuring consistent construction quality and effectively preventing... To address the issue of inconsistent quality caused by differences in construction personnel operations, this method facilitates quality control, reduces potential quality hazards, and improves the overall quality of the building. Utilizing precise measurement and positioning technology ensures that the installation error of the embedded part 2 meets stringent design standards, guaranteeing the accurate positioning of the embedded part 2, ensuring the aesthetics and safety of the curtain wall after installation, and reducing structural risks caused by accumulated errors. The horizontal angle steel 3 and vertical angle steel 4 are easily connected quickly via the support frame 13, which is then easily connected via the engagement of the screw 14 and nut 16. The positioning holes 5 on the horizontal angle steel 3 and vertical angle steel 4 facilitate quick positioning and allow for subsequent use of the insertion rod 10 for limiting operations. The insertion rod 10 facilitates on-site assembly and disassembly, improving construction flexibility, enhancing connection stability and reliability, effectively preventing component loosening during construction, and ensuring the stability of auxiliary devices during use. Practical verification has shown that this method effectively improves the connection reliability between the embedded part 2 and the main structure, enhances the safety of the curtain wall, improves the curtain wall's ability to resist external loads, ensures building safety, and extends the service life of the curtain wall.

[0027] Example 2: In this example, the insertion rod 10 is inserted into the positioning hole 5 on the vertical angle steel 4 by using the handle 11, so that the limiting frame 9 and the vertical angle steel 4 can be quickly connected, reducing the installation difficulty. Specifically, as shown below... Figures 1-5As shown, an auxiliary component is welded to the side end of the vertical angle steel 4. The auxiliary component includes a support plate 6 installed on the side end of the vertical angle steel 4. The support plate 6 has a connecting hole 7 and a limit frame 9. A fixing bolt 8 is threaded onto the limit frame 9 and passes through the connecting hole 7. An insert rod 10 passes through the limit frame 9 and is connected to the positioning hole 5. A handle 11 is provided at the end of the insert rod 10, and a spring 12 is provided on the outside of the insert rod 10. The vertical angle steel 4 facilitates welding to the support plate 6. The installation of the limit frame 9 is facilitated by the fixing bolt 8 passing through the connecting hole 7 aligned with the limit frame 9 on the support plate 6. The user inserts the rod 10 into the positioning hole 5 on the vertical angle steel 4 using the handle 11, which quickly connects the limiting frame 9 to the vertical angle steel 4. This simplifies the installation process of the limiting frame 9, reduces the installation difficulty, and the quick connection structure allows the assembly of the limiting frame 9 to be completed in a short time, improving construction efficiency and effectively limiting the displacement of the embedded part 2. Furthermore, the spring 12 on the outside of the rod 10 improves the overall stability. The elasticity of the spring 12 can absorb external vibrations and impacts to a certain extent, buffering the disturbance to the embedded part 2 caused by construction or environmental factors, further enhancing the stability of the device and ensuring the accuracy of the positioning of the embedded part 2.

[0028] Example 3: In this example, the gasket 17 on the screw 14 is used for heat insulation to prevent thermal expansion and contraction of the components due to temperature changes, which could affect the installation accuracy and connection stability of the embedded part 2. Specifically, as follows... Figure 3 and Figure 7As shown, a rubber sheet 15 for shock absorption and a heat insulation pad 17 are provided on the outer side of the screw 14. The support frame 13 connects the horizontal angle steel 3 and the vertical angle steel 4 through the cooperation of the screw 14 and the nut 16. The rubber sheet 15 that runs through the screw 14 facilitates vibration isolation, reducing the impact of vibration on the positioning of the embedded part 2 during construction and preventing displacement of the embedded part 2 due to vibration. In addition, the pad 17 on the screw 14 provides heat insulation to prevent thermal expansion and contraction of the components due to temperature changes, which would affect the installation accuracy and connection stability of the embedded part 2 and improve the applicability of the device in complex environments. The above structure reduces the need for subsequent adjustments due to inaccurate embedding of the embedded part 2. The post-installation of embedded part 2, along with additional pull-out tests and acceptance procedures, reduces the need for remedial measures, saving material and labor costs, shortening the construction period, simplifying the acceptance process, and improving overall project management efficiency. This approach ensures accurate positioning of embedded part 2 and reduces the impact of disturbances during construction. By optimizing the construction process and quality control measures, the overall project guarantees that the pre-installation of embedded part 2 meets design and specification requirements, ensuring comprehensive compliance with construction quality standards. This provides strong support for the smooth implementation of building curtain wall projects and enhances the overall quality and reliability of building engineering. Content not described in detail in this specification belongs to existing technology known to those skilled in the art.

[0029] Although the present invention 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 the present invention should be included within the protection scope of the present invention.

Claims

1. A precision positioning auxiliary device for building embedded parts, comprising a structural beam (1) and an embedded part (2) arranged, characterized in that, The structural beam (1) includes installed horizontal angle steel (3) and vertical angle steel (4). Positioning holes (5) are provided on the horizontal angle steel (3) and vertical angle steel (4). A support frame (13) is welded to the side end of the vertical angle steel (4). A screw rod (14) is connected through the support frame (13). A nut (16) is threaded onto the screw rod (14).

2. The precision positioning auxiliary device for a building embedded part according to claim 1, characterized in that: The vertical angle steel (4) is welded to an auxiliary component, which includes a support plate (6) installed on the side of the vertical angle steel (4).

3. The precision positioning auxiliary device for a building embedded part according to claim 2, characterized in that: The support plate (6) has a connection hole (7) and a limit frame (9) is provided on the support plate (6).

4. The precision positioning auxiliary device for a building embedded part according to claim 3, characterized in that: The limiting frame (9) is threaded with a fixing bolt (8), which is connected through the connection hole (7).

5. The auxiliary device for precise positioning of building embedded parts according to claim 3, characterized in that: A rod (10) is connected through the limiting frame (9), and the rod (10) is connected inside the positioning hole (5).

6. The precision positioning auxiliary device for a building embedded part according to claim 5, characterized in that: The insertion rod (10) is provided with a handle (11) at its end, and a spring (12) is provided on the outside of the insertion rod (10).

7. The precision positioning auxiliary device for a building embedded part according to claim 1, characterized in that: A rubber sheet (15) for shock absorption is provided on the outside of the screw (14), and a gasket (17) for heat insulation is provided on the outside of the screw (14).