Embedded assembly for building construction

The combined structure of the upper circular plate, sliding component and embedded frame solves the problem of inconvenient connection between the embedded plate and the ground components, realizes flexible adjustment and stable fixation of the embedded plate position, and improves construction efficiency.

CN223766964UActive Publication Date: 2026-01-06HEBEI JIUZHOU MINING CO LTD
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Patent Information

Application Number
CN202520178791.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-05
Publication Date
2026-01-06
Estimated Expiration
2035-02-05

AI Technical Summary

Technical Problem

The connection between the existing embedded plate and the ground components cannot be adjusted, which makes the connection inconvenient and makes it difficult to control the extension of the embedded plate on the embedded rod, which can easily lead to tilting and other problems.

Method used

The structure adopts a combination of upper circular plate, sliding component, embedded frame and lower circular plate. The position of the embedded plate is adjusted by sliding connection and threaded connection. Combined with limit component and bolt fixation, stability and adaptability are ensured.

Benefits of technology

It improves the adaptability and stability of the embedded components, makes it easier for operators to adjust the position of the embedded plate, reduces the risk of tilting, and improves work efficiency.

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Abstract

The utility model relates to the technical field of building construction, in particular to an embedded assembly for building construction, which comprises an upper circular plate, a sliding assembly, an embedded frame and a lower circular plate, the sliding assembly is slidably connected with the upper plate surface of the upper circular plate in a relatively fixed manner, and the upper end of the embedded frame is detachably connected with the lower plate surface of the upper circular plate and the upper plate surface of the lower circular plate; the embedded frame comprises a plurality of embedded rods, upper connecting pieces and lower connecting pieces, the upper ends of the embedded rods are arranged on the upper circular plate in a penetrating mode, a plurality of connecting holes are formed in the embedded rods, and the upper connecting pieces and the lower connecting pieces are arranged in the connecting holes in a penetrating mode. The sliding assembly is in sliding connection with the upper circular plate, so that the pre-embedded assembly can be conveniently connected with ground components at different positions, the adaptability of the pre-embedded assembly can be improved, the position of the upper circular plate on the pre-embedded rod can be adjusted through the connection mode of the inserting holes, the upper circular plate is prevented from inclining when adjusted, and the practicability of the pre-embedded assembly is improved. And due to the connection mode of the inserting holes, time and labor are saved when the position of the embedded plate is adjusted, the working efficiency of operators is improved, and the stability of the embedded rod is further improved.
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Description

Technical Field

[0001] This application relates to the field of building construction technology, and in particular to a pre-embedded component for building construction. Background Technology

[0002] Currently, embedded parts are components that are pre-installed or buried in concealed works. They are components that are placed during the pouring of the structure and are used for overlapping when building the superstructure to facilitate the installation and fixing of external engineering equipment foundations.

[0003] Currently, embedded parts are usually fixed structures, such as embedded plates used to connect above-ground components. To ensure stability after pouring, embedded rods are usually installed at the bottom of the embedded plate and embedded in the concrete to improve the stability of the embedded plate.

[0004] The existing technical solutions mentioned above have the following drawbacks: the connection between the embedded plate and the ground component cannot be adjusted according to the site conditions, which makes it inconvenient to connect with the ground component and may result in rework. At the same time, the extension of the embedded plate on the embedded rod is difficult to control, and the embedded plate is prone to tilting when adjusting it. Utility Model Content

[0005] This application provides an embedded component for building construction in order to better control the amount of the embedded plate protruding from the embedded rod.

[0006] The above-mentioned technical objective of this application is achieved through the following technical solution:

[0007] An embedded component for building construction includes an upper circular plate, a sliding component, an embedded frame, and a lower circular plate. The sliding component is slidably connected to the upper plate surface of the upper circular plate in a relatively fixed manner. The upper end of the embedded frame and the lower plate surface of the upper circular plate are detachably connected to the upper plate surface of the lower circular plate.

[0008] The embedded frame includes multiple embedded rods, an upper connector, and a lower connector. The upper end of each embedded rod passes through an upper circular plate. Both the upper and lower connectors are formed by fixing one end of multiple circular rods together. The other end of each circular rod has a threaded section. The upper and lower connectors are located at both ends of the embedded rods. Multiple connecting holes are formed along the axial direction on the periphery of the embedded rod. The threaded sections of the upper and lower connectors pass through the connecting holes. The threaded sections are threadedly connected to two nuts, which clamp the embedded rods together.

[0009] By adopting the above technical solution, the sliding connection between the sliding component and the upper circular plate can facilitate the connection of the pre-embedded component to ground components at different positions, thereby improving the adaptability of the pre-embedded component. The position of the upper circular plate on the pre-embedded rod can be adjusted by inserting the upper connector into different connection holes to prevent tilting when adjusting the upper circular plate. The connection method of the insertion hole makes it time-saving and labor-saving to adjust the position of the pre-embedded plate, and better controls the extension of the pre-embedded plate on the pre-embedded rod, thereby improving the work efficiency of the operator. The lower connector can improve the stability of the pre-embedded frame after connection.

[0010] Optionally, the lower circular plate has multiple sliding openings on its surface, and the pre-embedded rod can be inserted into the sliding openings.

[0011] By adopting the above technical solution, the sliding joint effectively reduces the overall weight of the lower circular plate, making it easier for operators to carry. The sliding joint also increases the contact area between the concrete and the lower circular plate, increasing the stability of the connection between the lower circular plate and the concrete.

[0012] Optionally, a circular pad is provided at the midpoint of the side of the lower circular plate near the upper circular plate, and a groove is formed at the midpoint of the surface of the circular pad, with the upper connector disposed in the groove.

[0013] By adopting the above technical solution, the groove can increase the contact area between the connector and the round pad, improve the stability of the connection between the upper connector and the lower round plate, and thus improve the overall stability of the embedded component.

[0014] Optionally, the upper circular plate has multiple bolts passing through its surface, and the lower circular plate has multiple threaded holes, with the bolts and the threaded holes being threadedly connected.

[0015] By adopting the above technical solution and fixing it with threaded connection, a stable connection between the upper circular plate, the lower circular plate and the upper connecting part can be guaranteed.

[0016] Optionally, the upper circular plate has a sliding groove on its surface, and the sliding component includes a slider. The slider is slidably connected to the sliding groove. The upper circular plate has multiple pin holes along the length of the sliding groove, and the upper end face of the slider is provided with a limiting component that engages with the pin holes.

[0017] By adopting the above technical solution, the connection method of the slide block improves the degree of freedom of the sliding component, enhances the adaptability of the pre-embedded component, and the pin hole and limiting component can limit the slider and increase the stability of the slider connection.

[0018] Optionally, the limiting component includes a mounting cylinder with closed ends and insertion holes at both ends. A limiting pin is slidably inserted into the insertion holes. A frustum located inside the mounting sleeve is machined on the limiting pin, and a compressed spring is sleeved on the limiting pin. The lower end of the spring is connected to the frustum.

[0019] By adopting the above technical solution, the limit pin can automatically spring back and engage with the pin hole of the upper circular plate, improving the stability of the limit pin engagement, facilitating the operator's use, and increasing operating efficiency.

[0020] Optionally, the sliding assembly further includes a square tube and a long plate, the long plate being fixedly connected to the upper end face of the slider, and the outer wall of the square tube being respectively attached to and fixedly connected to the surface of the long plate and the upper end face of the slider.

[0021] By adopting the above technical solution, the stability of the connection between the square tube and the slider is improved, thereby improving the stability of the connection between the sliding component and the ground component.

[0022] Optionally, the lower end of the embedded rod is machined with a tapered section.

[0023] By adopting the above technical solution, the tapered section at the lower end of the embedded rod facilitates the insertion of the embedded frame into the concrete, thereby improving the work efficiency of the operators.

[0024] In summary, this application has the following technical effects:

[0025] 1. By setting up an upper circular plate, a sliding component, a pre-embedded frame, and a lower circular plate, the sliding connection between the sliding component and the upper circular plate can facilitate the connection of the pre-embedded component to ground components at different locations, which can improve the adaptability of the pre-embedded component. The position of the upper circular plate on the pre-embedded rod can be adjusted by the insertion hole to prevent tilting when adjusting the upper circular plate. The insertion hole connection method makes adjusting the position of the pre-embedded plate time-saving and labor-saving, improving the work efficiency of the operator.

[0026] 2. By setting a sliding groove, including a slider, a pin hole, and a limiting component, the connection method of the sliding groove slider improves the degree of freedom of the sliding component and enhances the adaptability of the pre-embedded component. The pin hole and the limiting component work together to limit the slider and increase the stability of the slider connection.

[0027] 3. By incorporating an installation cylinder, a limit pin, a frustum, and a spring, the limit pin can automatically spring back and engage with the pin hole on the upper circular plate, improving the stability of the limit pin engagement, facilitating operator use, and increasing operational efficiency. Attached Figure Description

[0028] Figure 1 This is a structural diagram of the object of this application;

[0029] Figure 2 This is a structural diagram of the limiting component of this application;

[0030] Figure 3 This is a structural diagram of the circular plate in this application.

[0031] Explanation of reference numerals in the attached drawings: 1. Upper circular plate; 11. Insertion hole; 12. Slide groove; 13. Pin hole; 2. Sliding assembly; 21. Square tube; 22. Slider; 23. Long plate; 24. Rib plate; 25. Limiting assembly; 251. Mounting cylinder; 252. Limiting pin; 2521. Pin cap; 2522. Pin rod; 2523. Frustum; 253. Spring; 3. Embedded frame; 31. Embedded rod; 32. Connecting hole; 33. Upper connector; 34. Lower connector; 35. Nut; 4. Lower circular plate; 41. Circular washer; 42. Groove; 43. Slide opening; 44. Bolt; 45. Threaded hole. Detailed Implementation

[0032] The present application will be further described in detail below with reference to the accompanying drawings.

[0033] This application discloses an embedded component for building construction, referring to... Figure 1 The embedded component includes an upper circular plate 1, a sliding component 2, an embedded frame 3, and a lower circular plate 4. The sliding component 2 is slidably mounted on the upper surface of the upper circular plate 1 and can be relatively fixed to the upper circular plate 1. The ground component is connected to the upper circular plate 1 through the sliding component 2. The lower surface of the upper circular plate 1 is detachably connected to one end of the embedded frame 3 and the lower circular plate 4. The embedded frame 3 provides support and fixation for the upper circular plate 1. The lower circular plate 4 can enhance the connection stability between the upper circular plate 1 and the embedded frame 3. The other end of the embedded frame 3 is inserted into the poured concrete. After the concrete solidifies, the embedded component can be stably fixed in the concrete.

[0034] Reference Figure 1 The upper circular plate 1 has six insertion holes 11 at its edge. The axis of the insertion holes 11 is perpendicular to the surface of the upper circular plate 1, and the six insertion holes 11 are evenly distributed around the midpoint of the surface of the upper circular plate 1. Two parallel sliding grooves 12 are formed on both sides of the diameter of the upper circular plate 1. The two sliding grooves 12 are parallel to the diameter of the upper circular plate 1 and are spaced apart. The side of the sliding groove 12 is inverted T-shaped. Several pin holes 13 are also formed on the upper surface of the upper circular plate 1. The pin holes 13 are located on the side of the sliding groove 12 away from the midpoint of the surface of the upper circular plate 1 and are spaced apart from the sliding groove 12. The pin holes 13 are evenly distributed in a straight line along the length of the sliding groove 12.

[0035] Reference Figure 1The sliding assembly 2 includes a square tube 21 and a slider 22. The lower end of the slider 22 is slidably connected to the slide groove 12, and the outer wall of the lower end of the slider 22 is in contact with the inner wall of the slide groove 12. The upper end of the slider 22 is plate-shaped, and the plate surface of the slider 22 is in contact with the plate surface of the upper circular plate 1. Two long plates 23 are spaced apart on the plate surface of the slider 22. The plate surface of the long plates 23 is perpendicular to the plate surface of the slider 22, and the length direction of the long plates 23 is perpendicular to the length direction of the slide groove 12. Two ribs 24 are also provided on the opposite sides of the two long plates 23 on the slider 22. The sides of the ribs 24 are triangular. One right-angled side of the rib 24 is in contact with and fixed to the plate surface of the long plate 23, and the other right-angled side of the rib 24 is in contact with and fixed to the plate surface of the slider 22, which can increase the stability of the connection between the long plates 23 and the slider 22. The square tube 21 is fixedly connected to the two sliders 22, and the outer wall of the square tube 21 is respectively attached to the surface of the two long plates 23 and the upper plate surface of the sliders 22. This allows the square tube 21 to be fixed on the sliders 22 and slidably connected to the upper circular plate 1, increasing the range of motion of the square tube 21 and improving its adaptability.

[0036] Reference Figure 2 The sliding assembly 2 also includes a limiting assembly 25, which is fixedly connected to the upper plate surface of the slider 22. The limiting assembly 25 includes a vertically arranged mounting cylinder 251 and a limiting pin 252. Both ends of the mounting cylinder 251 are closed ends. An insertion hole is opened at the axial position of the closed end of the mounting cylinder 251, penetrating the mounting cylinder 251 and the plate surface of the slider 22. The limiting pin 252 includes a pin rod 2522 and a pin cap 2521 fixedly connected to one end of the pin rod 2522. The pin rod 2522 is slidably inserted into the insertion hole, and the length of the pin rod 2522 is greater than the length of the mounting cylinder 251. The pin cap 2521 is located outside the end of the mounting cylinder 251 opposite to the upper circular plate 1 and is used to lift the pin rod 2522. A frustum 2523 is machined near the lower end of the limiting pin 252, and the outer wall of the frustum 2523 is slidably connected to the inner wall of the mounting cylinder 251. A spring 253 is sleeved on the limiting pin 252. The lower end of the spring 253 is fixedly connected to the upper surface of the frustum 2523, and the upper end of the spring 253 is fixedly connected to the inner wall of the closed end of the mounting cylinder 251. The spring 253 is in a compressed state inside the mounting cylinder 251, which allows the lower surface of the frustum 2523 to abut against the inner wall of the mounting cylinder 251. The lower end of the pin 2522 can be inserted into the pin hole 13 to restrict the relative movement of the slider 22 and the upper circular plate 1. When the limiting pin 252 is lifted, the pin 2522 disengages from the pin hole 13, and the slider 22 and the upper circular plate 1 can move relative to each other.

[0037] Reference Figure 1The embedded frame 3 includes six embedded rods 31, an upper connector 33, and a lower connector 34. The upper end of the embedded rod 31 passes through the insertion hole 11, and the outer wall of the embedded rod 31 fits against the inner wall of the insertion hole 11. The end of the embedded rod 31 away from the upper circular plate 1 is processed into a tapered section, which can reduce the contact area between the embedded rod 31 and the poured concrete, making it easier for the embedded rod 31 to be inserted into the poured concrete. Several connecting holes 32 are opened on the outer wall of the embedded rod 31. The connecting holes 32 are evenly spaced in a straight line along the length direction of the embedded rod 31, and the axis of the connecting holes 32 is perpendicular to the axis of the embedded rod 31. The upper connector 33 and the lower connector 34 are both made of six round rods, one end of which is fixed at a point to form a star-shaped structure. The six round rods are evenly arranged at equal angles and their length direction is in the same plane. The other end of the round rods is provided with a threaded section. The lower connector 34 is located at the end of the embedded rod 31 away from the upper circular plate 1. The end of the lower connector 34 passes through the connecting hole 32. The threaded section is connected to two nuts 35. The two nuts 35 clamp the embedded rod 31 in the middle, so that the lower connector 34 and the embedded rod 31 are relatively fixed. The lower connector 34 can provide support and fixation for the lower end of the embedded rod 31, improving the stability of the embedded rod 31 when it is inserted into the concrete.

[0038] Reference Figure 3 A circular pad 41 is provided at the midpoint of the side of the lower circular plate 4 near the upper circular plate 1. A cross-shaped groove 42 is formed at the midpoint of the surface of the circular pad 41. The upper connector 33 is placed in the groove 42, and the outer wall of the upper connector 33 fits against the inner wall of the groove 42. The groove 42 increases the contact area between the connector and the circular pad 41, improving the stability of the connection between the upper connector 33 and the lower circular plate 4. Six U-shaped sliding openings 43 are formed on the surface of the lower circular plate 4. The six sliding openings 43 are evenly distributed around the center of the surface of the lower circular plate 4, and the openings of the sliding openings 43 face away from the center of the surface of the lower circular plate 4. The embedded rod 31 can be inserted into the sliding openings 43. The sliding openings 43 effectively reduce the overall weight of the lower circular plate 4, making it convenient for operators to carry. The sliding openings 43 also increase the contact area between the concrete and the lower circular plate 4, increasing the stability of the connection between the lower circular plate 4 and the concrete. One side of the upper connector 33 is in contact with the side of the upper circular plate 1 that is close to the lower circular plate 4, and the other side of the upper connector 33 is in contact with the side of the lower circular plate 4 that is close to the upper circular plate 1. The upper circular plate 1 and the lower circular plate 4 clamp the upper connector in the middle. The side of the lower circular plate 4 that is close to the upper circular plate 1 is provided with six threaded holes 45. The six threaded holes 45 are evenly distributed around the center of the lower circular plate 4. Six bolts 44 are passed through the side of the upper circular plate 1 that is away from the lower circular plate 4. The upper circular plate 1 and the lower circular plate 4 are fixed by the threaded connection of the bolts 44 and the threaded holes 45, which can ensure the stable connection of the upper circular plate 1, the lower circular plate 4 and the upper connector 33.

[0039] Reference Figure 1The sliding connection between the sliding component 2 and the upper circular plate 1 allows the pre-embedded component to be easily connected to ground components at different locations, which can improve the adaptability of the pre-embedded component. The position of the upper circular plate 1 on the pre-embedded rod 31 can be adjusted by inserting the upper connector 33 into different connection holes 32, so as to prevent the upper circular plate 1 from tilting. This makes the adjustment of the extension of the pre-embedded plate time-saving and labor-saving, and improves the work efficiency of the operator.

[0040] This specific embodiment is merely an explanation of this application and is not intended to limit it. After reading this specification, those skilled in the art can make modifications to this embodiment without contributing any inventive step, but such modifications are protected by patent law as long as they fall within the scope of the claims of this application.

Claims

1. A pre-embedded assembly for use in construction, characterized in that: The utility model relates to a circular plate (1), sliding assembly (2), preburied frame (3) and lower circular plate (4) are included, sliding assembly (2) with upper circular plate (1) upper board surface relatively fixed sliding connection, preburied frame (3) upper end and upper circular plate (1) lower board surface with lower circular plate (4) upper board surface are all detachable connection; Preburied frame (3) includes a plurality of preburied rods (31), upper connecting piece (33) and lower connecting piece (34), preburied rod (31) upper end is arranged on upper circular plate (1), upper connecting piece (33) and lower connecting piece (34) are all formed by the one end of a plurality of round rods, and the other end of the round rod is provided with a threaded section, and upper connecting piece (33) and lower connecting piece (34) are located at the both ends of preburied rod (31) respectively, a plurality of connecting holes (32) are formed on the peripheral wall of preburied rod (31) along the axial direction, the threaded section of upper connecting piece (33) and lower connecting piece (34) is arranged in the connecting hole (32), and two nuts (35) are threadedly connected with the threaded section, and the two nuts (35) clamp preburied rod (31).

2. A pre-embedded assembly for use in building construction according to claim 1, characterized in that: A plurality of sliding openings (43) are formed in the surface of the lower circular plate (4), and the preburied rod (31) can be inserted into the sliding openings (43).

3. A pre-embedded assembly for use in building construction according to claim 2, characterised in that: A circular pad (41) is arranged at the midpoint of the surface of the lower circular plate (4) close to the upper circular plate (1), a recess (42) is formed at the midpoint of the surface of the circular pad (41), and the upper connecting piece (33) is arranged in the recess (42).

4. A pre-burying assembly for building construction according to claim 3, characterized in that: A plurality of bolts (44) are arranged through the surface of the upper circular plate (1), and a plurality of threaded holes (45) are formed in the surface of the lower circular plate (4), and the bolts (44) and the threaded holes (45) are threadedly connected.

5. A pre-embedded assembly for use in building construction according to claim 1, characterized in that: A sliding groove (12) is formed in the upper surface of the upper circular plate (1), the sliding assembly (2) comprises a sliding block (22), the sliding block (22) is slidably connected with the sliding groove (12), a plurality of bolt holes (13) are formed in the upper surface of the upper circular plate (1) along the length direction of the sliding groove (12), and a limiting assembly (25) is arranged on the upper end surface of the sliding block (22) and is matched with the bolt holes (13).

6. A pre-embedded assembly for use in building construction according to claim 5, wherein: The limiting assembly (25) comprises a mounting cylinder (251), both ends of the mounting cylinder (251) are closed, a plug hole is formed at both ends of the mounting cylinder (251), a limiting pin (252) is slidably arranged in the plug hole, a circular truncated cone (2523) is formed on the limiting pin (252) and located in the mounting sleeve, a spring (253) in a compressed state is sleeved on the limiting pin (252), and the lower end of the spring (253) is connected with the circular truncated cone (2523).

7. A pre-embedded assembly for use in building construction according to claim 5, wherein: The sliding assembly (2) further comprises a square tube (21) and a long plate (23), the long plate (23) is fixedly connected with the upper end surface of the sliding block (22), and the outer wall of the square tube (21) is attached to and fixedly connected with the surface of the long plate (23) and the upper end surface of the sliding block (22).

8. A pre-embedded assembly for use in building construction according to claim 2, characterized in that: A tapered section is formed on the lower end of the preburied rod (31).