Fabricated building component based on BIM

By introducing straightening bodies and mechanisms into prefabricated building components, and utilizing motor drives and support structures to achieve accurate positioning and stable installation of modules, the problems of slow installation and tilting in existing technologies are solved, thereby improving installation efficiency and stability.

CN223689339UActive Publication Date: 2025-12-19江阴市城乡规划设计院有限公司
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Patent Information

Application Number
CN202423266053.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-12-19
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

Existing BIM-based prefabricated building components require multiple calibrations during assembly, resulting in slow installation processes and a tendency to tilt, leading to low efficiency.

Method used

The system employs a corrective body and mechanism, including a lifting rod, lifting block, rotating rod, and protective plate. The module is accurately positioned and stably installed via a motor drive, and triangular support is provided by a support cylinder and support rod to ensure stability.

Benefits of technology

It improves the installation efficiency of prefabricated building components, avoids module tilting, and ensures the accuracy and stability of the installation process. It is suitable for prefabricated building combinations based on BIM technology.

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Abstract

The utility model relates to the technical field of building components, and discloses a BIM (Building Information Modeling)-based fabricated building component. A first body and a correction body; correction bodies are arranged on the two sides of the first body, correction mechanisms are arranged outside the correction bodies, each correction mechanism comprises a lifting rod, a lifting block and a first rotating rod, an extension block is detachably connected to the outer portion of each correction body, and the lifting rod is rotationally connected to the bottom end of each extension block through a first motor; the position of the first body is fixed through the correcting body, the position of the first body is conveniently found and calibrated, the first body is prevented from inclining during installation through the correcting mechanism and the auxiliary mechanism, the installation efficiency of the first body can be improved, and the position of the installed first body can be fixed through the supporting cylinder and the supporting rod; and the correcting body can be detached to be repeatedly used and used for installing the first body at different positions, the working efficiency is improved, and the method is more suitable for assembly type building combination achieved through the BIM technology.
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Description

TECHNICAL FIELD

[0001] The utility model relates to building component technical field, concretely is a kind of fabricated building component based on BIM. BACKGROUND

[0002] Building Information Modeling is abbreviated as BIM, a kind of brand-new building information modeling technology, it integrates the information involved in the whole process of building project design, construction and operation management into a single, complete digital information model, wherein the application of BIM technology in fabricated building mainly reflects the integrated support of its whole process for design, production, construction, decoration and management, such as door, wall, assembly plate and the like are formed;

[0003] The existing fabricated building based on BIM technology is all for cement pouring after sequentially assembling and fixing multiple plates, but there are accurate installation of module plate during assembly, repeated slow calibration multiple times and stable installation of module during installation process to avoid inclination, and the installation process and the later fixing process are relatively troublesome, and the efficiency is relatively low.

[0004] In view of the above problems, a kind of fabricated building component based on BIM is proposed. UTILITY MODEL CONTENT

[0005] The utility model aims at providing a kind of fabricated building component based on BIM, solve the problem of slow installation process and low efficiency of the existing assembly technology in background art needing manual calibration position.

[0006] To achieve the above object, the utility model provides the following technical scheme: a kind of fabricated building component based on BIM, comprising: first body and correction body;The two sides of the first body are equipped with correction body, the outside of the correction body is equipped with correction mechanism, correction mechanism includes lifting rod, lifting block and first rotating rod, the outside of the correction body is detachably connected with extension block, the bottom of the extension block is rotatably connected with lifting rod by first motor, the outer side wall of lifting rod is threadedly connected with lifting block, lifting block is fixedly connected with first rotating rod, the outer side of first rotating rod is rotatably connected with protection plate, and the protection plate is located on the outer side of first body.

[0007] As a further description of the above technical scheme: the outer side wall of the lifting block is provided with auxiliary mechanism, and the auxiliary mechanism comprises a ring member and an auxiliary plate, the outer side wall of the lifting block is provided with a ring groove, the ring groove is rotatably connected with the ring member, and the outer side wall of the ring member is fixedly connected with the auxiliary plate.

[0008] As a further description of the above technical scheme: the outer side wall of the ring member is fixedly connected with a rack, the inside of the ring groove is rotatably connected with a driving gear by a second motor, and the driving gear is rotatably connected with the rack.

[0009] As the further description of the above technical solutions: one side of the protection plate is rotationally connected with a plurality of groups of supporting cylinders, the inside of the supporting cylinder is slidably connected with a supporting rod, and the front end of the supporting rod is rotationally connected with a positioning plate.

[0010] As the further description of the above technical solutions: the outer side wall of the protection plate is detachably connected with a bolt.

[0011] As the further description of the above technical solutions: the outer side wall of the supporting cylinder is fixedly connected with a circular ring buckle, and the circular ring buckle is threadedly connected with a fastening rod.

[0012] Compared with the prior art, the utility model has the advantages that:

[0013] The BIM-based fabricated building component has the advantages that: the position is fixed by the correcting body, the position of the first body is easy to find and calibrate, the inclination of the first body during installation is avoided by the correcting mechanism and the auxiliary mechanism, the installation efficiency of the first body is improved, the position of the installed first body is fixed by the supporting cylinder and the supporting rod, the correcting body can be disassembled and reused, the first body at different positions is installed, the working efficiency is improved, and the fabricated building combination based on the BIM technology is more suitable. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is a three-dimensional structure schematic view of the utility model;

[0015] Figure 2 It is a rear view structure schematic view of the utility model;

[0016] Figure 3 It is a top view internal structure schematic view of the lifting block in the utility model.

[0017] In the drawing: 1, first body; 2, correcting body; 3, correcting mechanism; 301, lifting rod; 302, lifting block; 303, first rotating rod; 304, first motor; 305, extension block; 306, protection plate; 4, auxiliary mechanism; 401, annular part; 402, auxiliary plate; 403, ring groove; 5, rack; 6, second motor; 7, driving gear; 8, supporting cylinder; 9, supporting rod; 10, positioning plate; 11, bolt; 12, circular ring buckle; 13, fastening rod. DETAILED DESCRIPTION

[0018] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described, obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor are within the protection scope of the present application.

[0019] In order to further understand the content of the present application, the present application will be described in detail in combination with the drawings.

[0020] In combination with Figure 1 , Figure 2 and Figure 3 , a fabricated building component based on BIM, comprising: a first body 1 and a correction body 2; both sides of the first body 1 are provided with the correction body 2, the outside of the correction body 2 is provided with a correction mechanism 3, the correction mechanism 3 comprises a lifting rod 301, a lifting block 302 and a first rotating rod 303, the outside of the correction body 2 is detachably connected with an extension block 305, the bottom end of the extension block 305 is rotatably connected with the lifting rod 301 through a first motor 304, the outer side wall of the lifting rod 301 is threadedly connected with the lifting block 302, the lifting block 302 is fixedly connected with the first rotating rod 303, the outer side of the first rotating rod 303 is rotatably connected with a protective plate 306, and the protective plate 306 is located on the outer side of the first body 1.

[0021] BIM building information model is a new tool of architecture, engineering and civil engineering, by establishing a virtual building engineering three-dimensional model, using digital technology, providing a complete building engineering information library consistent with the actual situation for this model, then directly manufacturing corresponding building modules in the factory and then assembling and pouring in the site to reduce site pollution, making a big directional change for building manufacturing industry, when building the BIM model, the model can be assembled according to the specified straight up and down requirements, but in actual application, due to various error factors, installation deviation may occur, when assembling the building, the installation and limiting of the first body 1 are assisted by the correction body 2, the lifting rod 301 in the correction mechanism 3 can move the lifting block 302, so as to ensure that the module manufactured by the BIM building is accurately positioned, avoiding uneven stress in the later stage, and the protective plate 306 stably supports and monitors the perpendicularity effect of the first body 1.

[0022] In combination with Figure 3The outer side wall of the lifting block 302 is provided with an auxiliary mechanism 4, the auxiliary mechanism 4 comprises a ring piece 401 and an auxiliary plate 402, the outer side wall of the lifting block 302 is provided with a ring groove 403, the ring groove 403 is rotatably connected with the ring piece 401, and the outer side wall of the ring piece 401 is fixedly connected with the auxiliary plate 402; the outer side wall of the ring piece 401 is fixedly connected with a rack 5, the inside of the ring groove 403 is rotatably connected with a driving gear 7 through a second motor 6, the driving gear 7 is meshedly connected with the rack 5, and the second motor 6 drives the rack 5 to rotate to drive the ring piece 401 to rotate, so that the auxiliary plate 402 is in contact with the first body 1 to assist in positioning the support effect in the later stage.

[0023] In combination Figure 1 A plurality of support cylinders 8 are rotatably connected to one side of the protection plate 306, a support rod 9 is slidably connected in the inside of the support cylinder 8, a positioning plate 10 is rotatably connected to the front end of the support rod 9, a bolt 11 is detachably connected to the outer side wall of the protection plate 306, a circular ring buckle 12 is fixedly connected to the outer side wall of the support cylinder 8, the circular ring buckle 12 is screwedly connected with a fastening rod 13, after the protection plate 306 is unfolded, the protection plate 306 is fixed to the ground through the bolt 11, and then the first body 1 is triangularly supported through the support cylinder 8 and the support rod 9, so that the stability is guaranteed, and the pouring and supporting effects in the later stage are facilitated.

[0024] Working principle, the correction body 2 is placed in the specified position, then the rack 5 is driven to rotate by the second motor 6 to drive the ring piece 401 to rotate, the first body 1 is placed and installed, when installing, the lifting rod 301 is rotated through the first motor 304, the lifting block 302 is lowered synchronously with the first body 1, the first body 1 is limited through the protection plate 306, and is installed in a vertical state, after installation is completed, the protection plate 306 is unfolded, the protection plate 306 is fixed to the ground through the bolt 11, and then the first body 1 is triangularly supported through the support cylinder 8 and the support rod 9, so that the stability is guaranteed, and the pouring and supporting effects in the later stage are facilitated.

[0025] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and modifications can be made to these embodiments without departing from the principles and spirits of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.

Claims

1. A BIM-based fabricated building component, characterized by: Include: The first body (1) and the correction body (2); Both sides of the first body (1) are provided with the correction body (2), the outside of the correction body (2) is provided with the correction mechanism (3), the correction mechanism (3) contains the lifting rod (301), the lifting block (302) and the first rotating rod (303), the outside of the correction body (2) is detachably connected with the extension block (305), the bottom end of the extension block (305) is rotatably connected with the lifting rod (301) through the first motor (304), the outer side wall of the lifting rod (301) is screw connected with the lifting block (302), the lifting block (302) is fixedly connected with the first rotating rod (303), the outer side of the first rotating rod (303) is rotatably connected with the protective plate (306), and the protective plate (306) is located on the outer side of the first body (1).

2. A BIM-based fabricated building component according to claim 1, characterized in that: The outer side wall of the lifting block (302) is provided with an auxiliary mechanism (4), the auxiliary mechanism (4) contains an annular part (401) and an auxiliary plate (402), the outer side wall of the lifting block (302) is provided with an annular groove (403), the inner part of the annular groove (403) is rotatably connected with the annular part (401), and the outer side wall of the annular part (401) is fixedly connected with the auxiliary plate (402).

3. A BIM-based fabricated building component according to claim 2, characterized in that: The outer side wall of the annular part (401) is fixedly connected with a rack (5), the inner part of the annular groove (403) is rotatably connected with a driving gear (7) through a second motor (6), and the driving gear (7) is meshedly connected with the rack (5).

4. The BIM-based fabricated building component of claim 1, wherein: One side of the protective plate (306) is rotatably connected with a plurality of support cylinders (8), the inner part of the support cylinder (8) is slidably connected with a support rod (9), and the front end of the support rod (9) is rotatably connected with a positioning plate (10).

5. The BIM-based fabricated building component of claim 1, wherein: The outer side wall of the protective plate (306) is detachably connected with a bolt (11).

6. A BIM-based fabricated building component according to claim 4, characterized in that: The outer side wall of the support cylinder (8) is fixedly connected with a circular ring buckle (12), and the circular ring buckle (12) is screw connected with a fastening rod (13).