Embedded part for civil engineering construction
By designing an adjustable embedded parts structure, the problems of difficult installation and inaccurate docking of traditional embedded parts are solved, and the construction efficiency is improved and the accuracy of docking is achieved.
Patent Information
- Application Number
- CN202510457329.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-14
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2045-04-14
AI Technical Summary
The installation method of traditional embedded parts and structural parts requires a large number of welding or bolt connection operations on site. The position of embedded parts after installation is difficult to adjust, resulting in the subsequent installed components and embedded parts that cannot be accurately connected, increasing the construction difficulty and rework rate.
A civil engineering construction embedded part including an embedded part and an assembly part is designed. The embedded part is composed of an embedded frame body with an anti-corrosion coating on the surface. The assembly part is composed of an assembly frame body and a guide device for installation of structural parts. The guide device includes X-axis, Y-axis and Z-axis adjustment components to realize the precise fine adjustment of the assembly frame body.
Through precise fine-tuning functions, it can adapt to the installation needs of different structures, realize accurate docking of components, reduce construction difficulty and rework rate, and improve construction efficiency.
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Figure CN119981265A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of embedded parts, and in particular to an embedded part for civil engineering construction. Background Art
[0002] Embedded parts are usually used to fix equipment, pipelines, railings, steel structures and other components. The quality of their installation directly affects the construction progress and safety of subsequent projects.
[0003] Embedded parts are components pre-embedded in concrete during the structural construction process. They consist of two parts: one is the component embedded in the concrete, and the other is the component that will be connected or function with the embedded component later. The embedded parts serve as the basis for the subsequent structure or equipment installation. For example, in construction projects, it is used to fix steel column feet and connect structural parts such as curtain wall keels. By using embedded parts, different structural components can be firmly connected together to ensure the stability and integrity of the entire building structure. In some large-scale equipment installation projects, embedded parts can provide stable support and fixing points for the equipment to prevent the equipment from shaking or shifting during operation.
[0004] The traditional installation method of embedded parts and structural parts requires a large number of welding or bolt connection operations on site. The position of the embedded parts after installation is often difficult to adjust, resulting in the inability to accurately connect the subsequently installed components with the embedded parts, increasing the construction difficulty and rework rate. In addition, traditional embedded parts are often one-piece structures, and the installation method requires a large number of welding connection operations on site, which has low construction efficiency and is easily affected by weather and environmental factors. Summary of the invention
[0005] In view of the above problems existing in the prior art, the present invention is proposed.
[0006] Therefore, the purpose of the present invention is to provide an embedded part for civil engineering construction. The problem to be solved is that the traditional installation method of embedded parts and structural parts requires a large number of welding or bolt connection operations on site. The position of the embedded parts after installation is often difficult to adjust, resulting in the inability to accurately connect the subsequently installed components with the embedded parts, increasing the construction difficulty and rework rate.
[0007] In order to achieve the above-mentioned purpose, the present invention provides the following technical solutions: an embedded part for civil engineering construction, comprising an embedded part and an assembly part, wherein the embedded part comprises an embedded frame body with an anti-corrosion coating sprayed on the surface, the top of the embedded frame body is provided with symmetrically distributed slide grooves, the assembly part comprises an assembly frame body located above the embedded frame body and used for installing structural parts, a guide device for adjusting the position of the assembly frame body is further provided between the embedded frame body and the assembly frame body, an auxiliary device for limiting the movement of the assembly frame body is further provided in the assembly frame body, and an anchoring device for anchoring the embedded frame body is provided at the bottom of the embedded frame body; The guide device includes an X-axis adjustment component located above the embedded frame body and used to adjust the X-axis position of the assembly frame body, the X-axis adjustment component is provided with a Y-axis adjustment component for adjusting the Y-axis position of the assembly frame body, and the Y-axis adjustment component is provided with a Z-axis adjustment component for adjusting the Z-axis position of the assembly frame body; The X-axis adjustment assembly includes a first X-axis guide rail and a second X-axis guide rail which are respectively slidably connected to the assembly frame body and are adapted to the slide groove. The first X-axis guide rail and the second X-axis guide rail are both fixedly installed in the embedded frame body by screws, and the first X-axis guide rail and the second X-axis guide rail are both provided with a stepped support frame on the side away from the assembly frame body, and the second X-axis guide rail is also rotatably connected to an X-axis screw with a threaded surface.
[0008] As a preferred solution of the embedded parts for civil engineering construction described in the present invention, the Y-axis adjustment assembly includes a Y-axis guide rail slidably connected to the first X-axis guide rail and the second X-axis guide rail, and the Y-axis guide rail is threadedly connected to one end of the X-axis screw extending into the second X-axis guide rail, a Y-axis screw is also rotatably connected in the Y-axis guide rail, a Y-axis slider is slidably connected to the Y-axis guide rail, and one end of the Y-axis slider extending into the Y-axis guide rail is threadedly connected to the Y-axis screw.
[0009] As a preferred solution of the embedded parts for civil engineering construction described in the present invention, the Z-axis adjustment assembly includes a Z-axis guide rail located between the first X-axis guide rail and the second X-axis guide rail and fixedly mounted on the Y-axis slider, and a Z-axis screw is also rotatably connected in the Z-axis guide rail, and one end of the Z-axis screw extends into the Z-axis guide rail and is connected to the assembly frame body with a threaded fit.
[0010] As a preferred solution of the embedded parts for civil engineering construction described in the present invention, the top of the assembly frame body is fixedly installed with symmetrically distributed welding support frames for fixing structural parts, rubber pads are provided between the welding support frames and in the assembly frame body, the welding support frames are L-shaped and have threaded holes corresponding to the rubber pads, and the assembly frame body is also provided with symmetrically distributed hidden grooves.
[0011] As a preferred solution of the embedded parts for civil engineering construction described in the present invention, the auxiliary device includes an extension block slidably connected in a hidden groove and corresponding to the step support frame, the extension block is located at one end of the assembly frame body and is fixedly installed with an auxiliary sliding block, and both ends of the assembly frame body are also rotatably connected with auxiliary screws with threads on the surface, and one end of the auxiliary screw extends into the assembly frame body and is connected to the auxiliary sliding block with threads.
[0012] As a preferred solution for the embedded parts for civil engineering construction described in the present invention, triangular reinforcing ribs are fixedly installed on the four corners of the embedded frame body, and symmetrically distributed side ears for screw fixing are also provided on both sides of the embedded frame body, and the side ears and the embedded frame body are an integrally formed structure.
[0013] As a preferred solution of the embedded parts for civil engineering construction described in the present invention, the anchoring device includes an anchor rod body that is gap-matched with the embedded frame body, the end of the anchor rod body that is away from the embedded frame body is fixedly installed with an embedded end, the anchor rod body extends into the embedded frame body and one end is fixedly installed with an anchor frame that is slidably connected to the embedded frame body, the embedded frame body is also rotatably connected with symmetrically distributed adjusting screws, and the end of the adjusting screw that extends into the embedded frame body is connected to the anchor frame threadedly.
[0014] As a preferred solution of the embedded parts for civil engineering construction described in the present invention, wherein: the anchor rod body is respectively provided with first and second discharge holes distributed in a circular array and corresponding to each other, and the embedded end is located between the first and second discharge holes, a drainage bucket mounted on the outside of the anchor rod body is fixedly installed on the top of the embedded end, and the embedded end is also provided with drainage grooves corresponding to the first and second discharge holes.
[0015] In summary, the present invention includes at least one of the following beneficial effects: 1. The present invention provides a guide device composed of an X-axis adjustment component, a Y-axis adjustment component and a Z-axis adjustment component on the embedded frame body, thereby realizing precise fine-tuning of the assembly frame body connected to the structural member, thereby adapting to the installation needs and accurate docking of different structures.
[0016] 2. The present invention adopts a detachable and adjustable design of the embedded part and the assembly part including the anchoring device, so that the embedded part can be installed in advance, reducing the operation steps, thereby increasing the installation speed of the prefabricated component compared with the traditional one-piece embedded parts.
[0017] 3. In the present invention, after the concrete injected into the anchor rod body flows out through the first discharge hole, it is guided by the drainage bucket into the drainage trough and connected with the concrete flowing out of the second discharge hole, thereby increasing the contact area between the concrete and the anchor rod body and utilizing the anchoring force of the stratum to maintain the stability of the building. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings required for use in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in the present invention. For ordinary technicians in this field, other drawings can also be obtained based on these drawings.
[0019] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention; Figure 2 It is a schematic diagram of the decomposition structure of the present invention; Figure 3 This is a diagram of the assembly frame body and the guide device of the present invention in coordination with each other for installation; Figure 4 It is a structural diagram of the structural guide device of the present invention; Figure 5 For the present invention Figure 4 A schematic diagram of the enlarged structure of part A; Figure 6 is a cross-sectional view of the assembly stand body of the present invention; Figure 7 This is a diagram of the structure of the embedded component frame body and the anchoring device of the present invention; Figure 8 This is a structural diagram of the anchor rod and embedded end of the present invention for coordinated installation.
[0020] Description of reference numerals: 1. Embedded frame body; 101. Slide; 102. Reinforcement rib; 103. Side ear; 2. Assembly frame body; 201. Welding support frame; 202. Rubber pad; 203. Hidden groove; 3. Guide device; 301. X-axis adjustment assembly; 3011. First X-axis guide rail; 3012. Second X-axis guide rail; 3013. Step support frame; 3014. X-axis screw; 302. Y-axis adjustment assembly; 3021. Y-axis guide rail; 3022. Y-axis screw ; 3023, Y-axis slider; 303, Z-axis adjustment assembly; 3031, Z-axis guide rail; 3032, Z-axis screw; 4, auxiliary device; 401, extension block; 402, auxiliary slider; 403, auxiliary screw; 5, anchoring device; 501, anchoring rod body; 5011, first discharge hole; 5012, second discharge hole; 502, embedded end; 5021, drainage bucket; 5022, drainage trough; 503, anchor rack; 504, adjustment screw. DETAILED DESCRIPTION
[0021] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0022] The embodiment of the invention discloses a pre-embedded part for civil engineering construction.
[0023] Example 1 Reference Figure 1-8 , which is the first embodiment of the present invention, provides a pre-embedded part for civil engineering construction, the pre-embedded part for civil engineering construction includes an embedded part and an assembly part, the embedded part includes an embedded frame body 1 with an anti-corrosion coating sprayed on the surface, the top of the embedded frame body 1 is provided with symmetrically distributed slide grooves 101, the assembly part includes an assembly frame body 2 located above the embedded frame body 1 and used for installing structural parts, a guide device 3 for adjusting the position of the assembly frame body 2 is also provided between the embedded frame body 1 and the assembly frame body 2, and an auxiliary device 3 for limiting the movement of the assembly frame body 2 is also provided in the assembly frame body 2 The bottom of the embedded frame body 1 is provided with an anchoring device 5 for anchoring the embedded frame body 1. The guide device 3 includes an X-axis adjustment component 301 located above the embedded frame body 1 and used to adjust the X-axis position of the assembly frame body 2. The X-axis adjustment component 301 is provided with a Y-axis adjustment component 302 for adjusting the Y-axis position of the assembly frame body 2. The Y-axis adjustment component 302 is provided with a Z-axis adjustment component 303 for adjusting the Z-axis position of the assembly frame body 2. The X-axis adjustment component 301 includes two parts respectively connected in a sliding manner in the assembly frame body 2 and adapted to the slide groove 101. The first X-axis guide rail 3011 and the second X-axis guide rail 3012 are fixedly installed in the embedded frame body 1 by screws, and the first X-axis guide rail 3011 and the second X-axis guide rail 3012 are both provided with a stepped support frame 3013 on the side away from the assembly frame body 2, and the second X-axis guide rail 3012 is also rotatably connected with an X-axis screw rod 3014 with a thread on the surface. The embedded frame body 1 is the main structure of the embedded part, and its surface is sprayed with an anti-corrosion coating to improve durability. The assembly frame body The body 2 is used for the installation of structural parts and can be separated from the embedded frame body 1. The first X-axis guide rail 3011 and the second X-axis guide rail 3012 are respectively slidably connected in the slide groove 101 in the embedded frame body 1 and fixed by screws. A stepped support frame 3013 is provided to provide additional stability and support after the height is adjusted. By rotating the X-axis screw 3014, the Y-axis guide rail 3021 slides on the first X-axis guide rail 3011 and the second X-axis guide rail 3012, thereby fine-tuning the position of the Y-axis guide rail 3021 in the X-axis direction.
[0024] The Y-axis adjustment component 302 includes a Y-axis guide rail 3021 that is slidably connected to the first X-axis guide rail 3011 and the second X-axis guide rail 3012, and the Y-axis guide rail 3021 is threadedly connected to one end of the X-axis screw 3014 extending to the second X-axis guide rail 3012, and a Y-axis screw 3022 is also rotatably connected to the Y-axis guide rail 3021, and a Y-axis slider 3023 is slidably connected to the Y-axis guide rail 3021, and one end of the Y-axis slider 3023 extending to the Y-axis guide rail 3021 is threadedly connected to the Y-axis screw 3022, and the Y-axis screw 3022 is rotated, and the Y-axis slider 3023 slides on the Y-axis guide rail 3021 to achieve fine-tuning of the Y-axis.
[0025] The Z-axis adjustment component 303 includes a Z-axis guide rail 3031 located between the first X-axis guide rail 3011 and the second X-axis guide rail 3012 and fixedly mounted on the Y-axis slider 3023. A Z-axis screw rod 3032 is also rotatably connected to the Z-axis guide rail 3031. One end of the Z-axis screw rod 3032 extends to the Z-axis guide rail 3031 and is threadedly connected to the assembly frame body 2. The Z-axis guide rail 3031 can limit the moving direction of the assembly frame body 2. Rotating the Z-axis screw rod 3032 can achieve precise adjustment of the Z-axis direction of the assembly frame body 2.
[0026] A symmetrically distributed welding support frame 201 for fixing the structural parts is fixedly installed on the top of the assembly frame body 2. Rubber pads 202 are provided between the welding support frames 201 and in the assembly frame body 2. The welding support frames 201 are L-shaped and have threaded holes corresponding to the rubber pads 202. The assembly frame body 2 also has symmetrically distributed hidden grooves 203. The welding support frames 201 can be connected to the structural parts by screws to complete the installation with the assembly frame body 2. The rubber pads 202 are used to reduce vibration and noise.
[0027] The auxiliary device 4 includes an extension block 401 which is slidably connected in the hidden groove 203 and corresponds to the step support frame 3013. The extension block 401 is located at one end of the assembly frame body 2 and is fixedly installed with an auxiliary slider 402. The two ends of the assembly frame body 2 are also rotatably connected with auxiliary screws 403 with threads on the surface. The auxiliary screw 403 extends to one end of the assembly frame body 2 and is threadedly connected to the auxiliary slider 402. The extension block 401 can adapt to the different heights of the step support frame 3013 by protruding from the corresponding hidden groove 203, limit the movement of the assembly frame body 2 after adjustment, and realize different protruding lengths of the extension block 401 connected to the corresponding auxiliary slider 402 by rotating the auxiliary screw 403.
[0028] The four corners of the embedded frame body 1 are fixedly installed with triangular reinforcing ribs 102, and the two sides of the embedded frame body 1 are also provided with symmetrically distributed side ears 103 for screw fixing, and the side ears 103 and the embedded frame body 1 are an integrally formed structure, and the reinforcing ribs 102 are used to increase the overall bearing capacity of the embedded frame body 1 which is a frame structure, and the side ears 103 can be fixed to the ground by screws, while increasing the ground contact area and maintaining stability.
[0029] The anchoring device 5 includes an anchor rod body 501 which is gap-matched with the embedded frame body 1. The end of the anchor rod body 501 away from the embedded frame body 1 is fixedly installed with an embedded end 502. The anchor rod body 501 extends into the embedded frame body 1 and one end is fixedly installed with an anchor frame 503 which is slidably connected to the embedded frame body 1. The embedded frame body 1 is also rotatably connected with a symmetrically distributed adjusting screw 504. The adjusting screw 504 extends into one end of the embedded frame body 1 and is threadedly connected to the anchor frame 503. Concrete can be injected into the anchor rod body 501 to firmly anchor the embedded frame body 1 in the concrete structure, thereby enhancing the overall strength of the embedded structure and enabling it to withstand greater loads and stresses. By rotating the adjusting screw 504, the anchor frame 503 drives the anchor rod body 501 to rise, thereby meeting the requirements of different anchoring depths.
[0030] The anchor rod body 501 is provided with first discharge holes 5011 and second discharge holes 5012 which are distributed in a circular array and correspond to each other, and the embedded end 502 is located between the first discharge hole 5011 and the second discharge hole 5012. A drainage bucket 5021 which is sleeved on the outside of the anchor rod body 501 is fixedly installed on the top of the embedded end 502. The embedded end 502 is also provided with a drainage groove 5022 corresponding to the first discharge hole 5011 and the second discharge hole 5012. Concrete flowing out of the first discharge hole 5011 can be guided by the drainage bucket 5021 and enter the drainage groove 5022 to connect with the concrete flowing out of the second discharge hole 5012, thereby increasing the contact area between the concrete and the anchor rod body 501, and utilizing the anchoring force of the stratum to maintain the stability of the building.
[0031] During use, the embedded end 502 of the anchor rod body 501 is first placed in the pre-embedded foundation pit, and by rotating the adjusting screw 504, the anchor frame 503 drives the anchor rod body 501 to rise, so as to meet the needs of different anchoring depths, so that the embedded frame body 1 with increased structural strength through the reinforcing ribs 102 and the one-piece side ears 103 are located above the ground, and after the adjustment is completed, the foundation pit is backfilled and concrete is injected into the anchor rod body 501. After the concrete flows out through the first discharge hole 5011, it is guided by the drainage bucket 5021 and enters the drainage groove 5022 to connect with the concrete flowing out of the second discharge hole 5012, thereby increasing the contact area between the concrete and the anchor rod body 501, and utilizing the anchoring force of the stratum to maintain the stability of the building. In addition, an anti-corrosion coating is applied to the embedded frame body 1 to improve durability. By adopting a detachable and adjustable method for the embedded part and the assembly part, the embedded part can be installed in advance, reducing the operation steps, thereby reducing the cost compared to conventional methods. The unified embedded parts can improve the installation speed of prefabricated components, and the first X-axis guide rail 3011 and the second X-axis guide rail 3012 are respectively installed in the slide groove 101 in the embedded frame body 1 and fixed, and the screws on the welding support frame 201 on the assembly frame body 2 are connected with the structural parts to complete the installation of the structural parts and the assembly frame body 2, and the vibration and noise are reduced by the rubber pad 202. When the position needs to be adjusted, the Y-axis guide rail 3021 is adjusted by rotating the X-axis screw rod 3014. Slide on the first X-axis guide rail 3011 and the second X-axis guide rail 3012 to fine-tune the position of the Y-axis guide rail 3021 in the X-axis direction, then rotate the Y-axis screw 3022, and the Y-axis slider 3023 slides on the Y-axis guide rail 3021 to achieve fine-tuning of the Y-axis, and finally rotate the Z-axis screw 3032 to move the assembly frame body 2 along the Z-axis guide rail 3031, thereby achieving adjustment of the assembly frame body 2 in three axes to meet the assembly requirements and accurate docking of different structural parts.
[0032] The remaining structures are the same as those of Example 1.
[0033] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention rather than to limit it. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present invention may be modified or replaced by equivalents without departing from the spirit and scope of the technical solutions of the present invention, which should all be included in the scope of the claims of the present invention.
Claims
1. A pre-embedded part for civil engineering construction, characterized in that: The invention comprises an embedded part and an assembly part, wherein the embedded part comprises an embedded frame body (1) with an anti-corrosion coating sprayed on the surface, the top of the embedded frame body (1) is provided with symmetrically distributed slide grooves (101), the assembly part comprises an assembly frame body (2) located above the embedded frame body (1) and used for installing structural parts, a guide device (3) for adjusting the position of the assembly frame body (2) is also provided between the embedded frame body (1) and the assembly frame body (2), an auxiliary device (4) for limiting the movement of the assembly frame body (2) is also provided in the assembly frame body (2), and an anchoring device (5) for anchoring the embedded frame body (1) is provided at the bottom of the embedded frame body (1); The guide device (3) comprises an X-axis adjustment component (301) located above the embedded frame body (1) and used to adjust the X-axis position of the assembly frame body (2); the X-axis adjustment component (301) is provided with a Y-axis adjustment component (302) for adjusting the Y-axis position of the assembly frame body (2); and the Y-axis adjustment component (302) is provided with a Z-axis adjustment component (303) for adjusting the Z-axis position of the assembly frame body (2); The X-axis adjustment assembly (301) comprises a first X-axis guide rail (3011) and a second X-axis guide rail (3012) which are respectively slidably connected in the assembly frame body (2) and are both compatible with the slide groove (101); the first X-axis guide rail (3011) and the second X-axis guide rail (3012) are both fixedly installed in the embedded frame body (1) by screws; and the first X-axis guide rail (3011) and the second X-axis guide rail (3012) are both provided with a stepped support frame (3013) on the side facing away from the assembly frame body (2); and the second X-axis guide rail (3012) is also rotatably connected with an X-axis screw rod (3014) having a threaded surface.
2. The embedded part for civil engineering construction according to claim 1, characterized in that: The Y-axis adjustment assembly (302) comprises a Y-axis guide rail (3021) slidably connected to the first X-axis guide rail (3011) and the second X-axis guide rail (3012), and the Y-axis guide rail (3021) is threadedly connected to one end of the X-axis screw rod (3014) extending to the second X-axis guide rail (3012), the Y-axis screw rod (3022) is also rotatably connected to the Y-axis guide rail (3021), a Y-axis slider (3023) is slidably connected to the Y-axis guide rail (3021), and one end of the Y-axis slider (3023) extending to the Y-axis guide rail (3021) is threadedly connected to the Y-axis screw rod (3022).
3. The embedded part for civil engineering construction according to claim 2, characterized in that: The Z-axis adjustment assembly (303) comprises a Z-axis guide rail (3031) located between the first X-axis guide rail (3011) and the second X-axis guide rail (3012) and fixedly mounted on the Y-axis slider (3023); a Z-axis screw rod (3032) is also rotatably connected to the Z-axis guide rail (3031); one end of the Z-axis screw rod (3032) extending into the Z-axis guide rail (3031) is threadedly connected to the assembly frame body (2).
4. The embedded part for civil engineering construction according to claim 1, characterized in that: The top of the assembly frame body (2) is fixedly mounted with symmetrically distributed welding support frames (201) for fixing structural parts, and rubber pads (202) are provided between the welding support frames (201) and in the assembly frame body (2), the welding support frames (201) are L-shaped and have threaded holes corresponding to the rubber pads (202), and the assembly frame body (2) is also provided with symmetrically distributed hidden grooves (203).
5. The embedded part for civil engineering construction according to claim 1, characterized in that: The auxiliary device (4) comprises an extension block (401) slidably connected in the hidden groove (203) and corresponding to the step support frame (3013); the extension block (401) is located at one end of the assembly frame body (2) and is fixedly mounted with an auxiliary sliding block (402); both ends of the assembly frame body (2) are also rotatably connected with auxiliary screw rods (403) with threads on the surface; one end of the auxiliary screw rod (403) extends into the assembly frame body (2) and is threadedly connected to the auxiliary sliding block (402).
6. The embedded part for civil engineering construction according to claim 1, characterized in that: The four corners of the embedded frame body (1) are fixedly mounted with triangular reinforcing ribs (102), and symmetrically distributed side ears (103) for screw fixing are also provided on both sides of the embedded frame body (1), and the side ears (103) and the embedded frame body (1) are an integrally formed structure.
7. The embedded part for civil engineering construction according to claim 6, characterized in that: The anchoring device (5) comprises an anchor rod body (501) which is clearance-matched with the embedded frame body (1); an embedded end (502) is fixedly mounted on one end of the anchor rod body (501) which is away from the embedded frame body (1); an anchor frame (503) which is slidably connected to the embedded frame body (1) is fixedly mounted on one end of the anchor rod body (501) which extends into the embedded frame body (1); symmetrically distributed adjusting screws (504) are also rotatably connected to the embedded frame body (1); one end of the adjusting screws (504) which extends into the embedded frame body (1) is threadably connected to the anchor frame (503).
8. The embedded part for civil engineering construction according to claim 7, characterized in that: The anchor rod body (501) is provided with first discharge holes (5011) and second discharge holes (5012) distributed in a circular array and corresponding to each other, and the embedded end (502) is located between the first discharge hole (5011) and the second discharge hole (5012), and a drainage hopper (5021) sleeved on the outside of the anchor rod body (501) is fixedly installed on the top of the embedded end (502), and the embedded end (502) is also provided with a drainage groove (5022) corresponding to the first discharge hole (5011) and the second discharge hole (5012).
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