Mechanical and electrical installation engineering construction device based on BIM technology

By using a single drive motor and synchronous rotation mechanism in the electromechanical installation engineering construction device, the problem of difficult synchronous drive of dual motors was solved, realizing synchronous rolling of rotating rolls, reducing costs and improving production efficiency.

CN224128223UActive Publication Date: 2026-04-17MINMETALS 23RD METALLURGICAL CONSTR GRP SECOND ENG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
MINMETALS 23RD METALLURGICAL CONSTR GRP SECOND ENG CO LTD
Filing Date
2025-02-11
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

In the existing technology, the construction equipment for electromechanical installation engineering uses a dual-motor driven drum, which results in high manufacturing costs and difficulties in synchronous driving.

Method used

A drive motor is used to make two rotating rolls rotate synchronously in opposite directions through a synchronous rotation mechanism. Combined with a controller and a power mechanism, synchronous rolling is achieved.

Benefits of technology

It achieves synchronous rotation of two rotating rolls at different distances, stabilizes the rolling pipeline, reduces manufacturing costs, and improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of engineering construction devices, in particular to a BIM (Building Information Modeling) technology-based mechanical and electrical installation engineering construction device, which comprises a controller comprising a calculation assembly, a transmitting assembly and a receiving assembly; the pipeline roller mechanism comprises a back panel and two first limiting sliding plates, the two first limiting sliding plates are slidably connected into first limiting sliding grooves in the back panel in an up-down limiting mode, and first rotating columns are rotatably connected to the two first limiting sliding plates in a limiting mode; and rotating rollers are fixedly mounted on the outer walls of the two first rotating columns, the two rotating rollers are matched to roll a pipeline, and first power mechanisms enabling the two first limiting sliding plates to move up and down are arranged on the two first limiting sliding plates correspondingly. According to the device, only one driving motor is adopted, so that the two rollers for rolling carry out synchronous rolling operation.
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Description

Technical Field

[0001] This utility model relates to the field of medical auxiliary treatment device technology, and in particular to a construction device for electromechanical installation engineering based on BIM technology. Background Technology

[0002] The core of BIM technology is the Building Information Model, which contains a large amount of design, construction, and operation management data.

[0003] BIM technology is shared and transmitted throughout the entire lifecycle of project planning, operation, and maintenance, enabling engineering and technical personnel to correctly understand and efficiently respond to various building information. It provides a basis for collaborative work for design teams and all parties involved in the construction, including building and operation units, and plays an important role in improving production efficiency, saving costs, and shortening construction periods.

[0004] For example, in the prior art, Chinese patent application number 202323448733.5 describes a construction system for electromechanical installation engineering based on BIM technology. This technology uses network technology and BIM software to enable multiple disciplines to collaborate in the early stages of electromechanical installation to complete 3D drawings, reducing conflicts and errors in construction drawing design. It also allows for the rapid generation of material lists and accurate pipeline dimensions in the early stages of construction.

[0005] However, it uses dual motors to drive the rollers, which not only increases the manufacturing cost, but also makes it difficult to drive the dual motors synchronously.

[0006] To address this, we designed a construction device for electromechanical installation engineering based on BIM technology, which uses only one drive motor to enable two rolling rollers to perform synchronous rolling operations. Utility Model Content

[0007] The technical problem to be solved by this utility model is to overcome the defects of the existing technology. This utility model proposes a construction device for electromechanical installation engineering based on BIM technology, which uses only one drive motor to enable two rolling rollers to perform synchronous rolling operations.

[0008] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is: a construction device for electromechanical installation engineering based on BIM technology, comprising:

[0009] The controller includes a computing component, a transmitting component, and a receiving component;

[0010] The pipeline rolling mechanism includes a back panel and two first limiting slide plates. The two first limiting slide plates are slidably connected to the back panel in the first limiting slide groove. Each of the two first limiting slide plates is rotatably connected to a first rotating column. Rotating rollers are fixedly installed on the outer walls of the two first rotating columns. The two rotating rollers cooperate to roll the pipeline. Each of the two first limiting slide plates is provided with a first power mechanism to move it up and down.

[0011] A synchronous rotation mechanism is mounted on the back plate to keep the rotating rollers with different spacings rotating synchronously. The synchronous reverse rotation mechanism, the first power mechanism, and the controller are electrically connected.

[0012] Furthermore, side plates are fixedly connected to both sides of the back panel, and a bottom plate is fixedly installed at the bottom of the back panel.

[0013] Furthermore, the first power mechanism includes a first electric telescopic rod, which is fixedly mounted on the back panel, and the telescopic end of the first electric telescopic rod is connected to the first limiting slide plate.

[0014] Furthermore, the synchronous rotation mechanism includes a first chain gear and a second mating gear. The first chain gear is fixedly installed on the outer wall of the first rotating column on the upper side, and the second mating gear is fixedly installed on the outer wall of the first rotating column on the lower side. The first limiting slide plate on the lower side is rotatably connected to a fourth rotating column. The outer wall of the fourth rotating column is fixedly connected to a third chain gear and a first mating gear. The first mating gear and the second mating gear mesh with each other.

[0015] The back panel is slidably connected to a second limiting slide plate through a second limiting groove on it. The second limiting slide plate is rotatably connected to a second rotating column. The outer wall of the second rotating column is fixedly connected to a second chain gear. The second chain gear, the first chain gear, and the third chain gear are all fitted with a drive chain, so that the two rotating rollers rotate synchronously in opposite directions.

[0016] A second electric telescopic rod is fixedly installed on the back panel, and the telescopic end of the second electric telescopic rod is connected to the second limiting slide plate.

[0017] It also includes a second power mechanism that enables the drive chain to drive.

[0018] Furthermore, the second power mechanism includes a fixed mounting plate, on which the fixed mounting plate is fixedly mounted. The fixed mounting plate is rotatably connected to the upper limit of the fixed mounting plate. The outer wall of the third rotating column is fixedly connected to a second bevel tooth, and the outer wall of the second rotating column is fixedly connected to a first bevel tooth. The first bevel tooth and the second bevel tooth mesh with each other. A drive motor is fixedly mounted on the fixed mounting plate, and the power output end of the drive motor is connected to the third rotating column.

[0019] Furthermore, the controller is electrically connected to the second electric telescopic pole, the first electric telescopic pole, and the drive motor, and is used to achieve high-efficiency construction operations based on BIM technology.

[0020] Compared with the prior art, the beneficial effects of this utility model include:

[0021] The distance between the two rotating rolls can be adjusted to roll the pipeline into different shapes.

[0022] Only one drive motor is needed to make the two rotating rolls rotate synchronously in opposite directions at different distances, so that the pipeline can be rolled stably. Attached Figure Description

[0023] The disclosure of this utility model is illustrated with reference to the accompanying drawings. It should be understood that the drawings are for illustrative purposes only and are not intended to limit the scope of protection of this utility model. In the drawings, the same reference numerals are used to refer to the same parts. Wherein:

[0024] Figure 1 This is a front view structural diagram of the device of this utility model;

[0025] Figure 2 This is a side view of the upper first rotating column of the device of this utility model;

[0026] Figure 3 For the present utility model Figure 1 A magnified structural diagram at point A;

[0027] Figure 4 For the present utility model Figure 1 A magnified structural diagram at point B.

[0028] The following are the labeling elements in the diagram: 1. Back panel; 2. Side panel; 3. First electric telescopic rod; 4. First limiting slide plate; 5. Drive chain; 6. Second limiting slide plate; 7. Second limiting groove; 8. Second electric telescopic rod; 9. Controller; 10. Base plate; 11. First rotating column; 12. First chain gear; 13. Rotating roller; 14. First limiting groove; 15. Second chain gear; 16. First bevel gear; 17. Second rotating column; 18. Second bevel gear; 19. Third rotating column; 20. Fixed mounting plate; 21. Drive motor; 22. Fourth rotating column; 23. First mating gear; 24. Second mating gear; 25. Third chain gear. Detailed Implementation

[0029] It is readily understood that, based on the technical solution of this utility model, those skilled in the art can propose various interchangeable structural methods and implementations without altering the essential spirit of this utility model. Therefore, the following detailed embodiments and accompanying drawings are merely illustrative descriptions of the technical solution of this utility model and should not be considered as the entirety of this utility model or as limitations or restrictions on the technical solution of this utility model.

[0030] Example 1:

[0031] Key reference Figure 1-4 The device mainly includes a back panel 1, a first limiting slide plate 4, a second limiting slide plate 6, and a rotating roller 13.

[0032] Side plates 2 are fixedly connected to both sides of the back panel 1, and a base plate 10 is fixedly installed at the bottom of the back panel 1.

[0033] Two first limiting slide plates 4 are slidably connected to the first limiting slide groove 14 on the back panel 1 at the upper and lower limits, and each of the two first limiting slide plates 4 is rotatably connected to a first rotating column 11. Rotating rollers 13 are fixedly installed on the outer walls of the two first rotating columns 11, and the two rotating rollers 13 cooperate to roll the pipeline.

[0034] Two first electric telescopic rods 3 are fixedly installed on the back panel 1. The power output ends of the two first electric telescopic rods 3 are connected to the first limiting slide plate 4, so that the distance between the two rotating rollers 13 is adjustable.

[0035] A first chain gear 12 is fixedly installed on the outer wall of the first rotating column 11 on the upper side, and a second mating gear 24 is fixedly installed on the outer wall of the first rotating column 11 on the lower side. A fourth rotating column 22 is rotatably connected to the first limiting slide plate 4 on the lower side. A third chain gear 25 and a first mating gear 23 are fixedly connected to the outer wall of the fourth rotating column 22. The first mating gear 23 and the second mating gear 24 mesh with each other.

[0036] The back panel 1 is slidably connected to the second limiting slide plate 6 through the second limiting slide groove 7 opened on it. The second limiting slide plate 6 is rotatably connected to the second rotating column 17. The outer wall of the second rotating column 17 is fixedly connected to the second chain gear 15. The second chain gear 15, the first chain gear 12, and the third chain gear 25 are all fitted with the drive chain 5.

[0037] A second electric telescopic rod 8 is fixedly installed on the back panel 1, and the telescopic end of the second electric telescopic rod 8 is connected to the second limiting slide plate 6.

[0038] A fixed mounting plate 20 is fixedly installed on the second limiting slide plate 6. A third rotating column 19 is rotatably connected to the fixed mounting plate 20. A second bevel tooth 18 is fixedly connected to the outer wall of the third rotating column 19. A first bevel tooth 16 is fixedly connected to the outer wall of the second rotating column 17. The first bevel tooth 16 and the second bevel tooth 18 mesh with each other. A drive motor 21 is fixedly installed on the fixed mounting plate 20. The power output end of the drive motor 21 is connected to the third rotating column 19.

[0039] Example 2: Based on Example 1, a technical means for efficient construction based on BIM technology is added.

[0040] Key reference Figure 2-4 This embodiment mainly includes controller 9.

[0041] The controller 9 is mounted on the back panel 1, and the controller 9 is equipped with a computing component, a transmitting component, and a receiving component.

[0042] The controller 9 is electrically connected to the second electric telescopic pole 8, the first electric telescopic pole 3, and the drive motor 21, enabling high-efficiency construction operations through BIM technology.

[0043] The other features of Example 2 are the same as those of Example 1.

[0044] In practice, the calculation component first utilizes network technology and BIM software to enable multiple disciplines to collaborate on completing 3D models during the early stages of electromechanical installation, reducing conflicts and errors in construction drawings. During the early stages of construction, a material list and precise pipeline dimensions are quickly generated. The precise distance between the two rotating rollers 13 during pipeline rolling is then calculated and transmitted to the calculation component. Data transmission is achieved through signal modulation via the transmitting and receiving components.

[0045] Specifically, adjusting the distance between the two rotating rollers 13 is equivalent to adjusting the extension and retraction of the upper first electric telescopic rod 3.

[0046] Then, the extension and retraction of the second electric telescopic rod 8 is adjusted to keep the drive chain 5 taut, so that the drive chain 5 can perform its ability to drive each chain gear.

[0047] At this time, the drive motor 21 causes the second bevel gear 18, the first bevel gear 16, the second rotating column 17, and the second chain gear 15 to rotate, and the drive chain 5 causes the second chain gear 15, the first chain gear 12, and the third chain gear 25 to rotate synchronously. The meshing action of the first mating gear 23 and the second mating gear 24 causes the two rotating rollers 13 to move in opposite directions, so that the two rotating rollers 13 roll the pipeline and smoothly push it out.

[0048] The technical scope of this utility model is not limited to the content described above. Those skilled in the art can make various modifications and variations to the above embodiments without departing from the technical concept of this utility model, and all such modifications and variations should fall within the protection scope of this utility model.

Claims

1. A mechanical and electrical installation engineering construction device based on BIM technology, characterized by, include: The controller (9) includes a computing component, a transmitting component, and a receiving component; The pipeline rolling mechanism includes a back panel (1) and two first limiting slide plates (4). The two first limiting slide plates (4) are slidably connected to the back panel (1) in the first limiting slide groove (14) and the two first limiting slide plates (4) are rotatably connected to the first rotating column (11). The outer wall of the two first rotating columns (11) is fixedly installed with a rotating roller (13). The two rotating rollers (13) cooperate to roll the pipeline. The two first limiting slide plates (4) are provided with a first power mechanism to move them up and down. A synchronous rotation mechanism is installed on the back panel (1) so that the rotating rollers (13) with different spacings keep rotating synchronously in opposite directions. The synchronous rotation mechanism, the first power mechanism and the controller (9) are electrically connected.

2. The mechanical and electrical installation engineering construction device based on BIM technology according to claim 1, characterized in that, Side plates (2) are fixedly connected to both sides of the back panel (1), and a bottom plate (10) is fixedly installed at the bottom of the back panel (1).

3. The mechanical and electrical installation engineering construction device based on BIM technology according to claim 2, characterized in that, The first power mechanism includes a first electric telescopic rod (3), which is fixedly installed on the back panel (1), and the telescopic end of the first electric telescopic rod (3) is connected to the first limiting slide plate (4).

4. The mechanical and electrical installation engineering construction device based on BIM technology according to claim 3, characterized in that, The synchronous rotation mechanism includes a first chain gear (12) and a second mating gear (24). The first chain gear (12) is fixedly installed on the outer wall of the first rotating column (11) on the upper side, and the second mating gear (24) is fixedly installed on the outer wall of the first rotating column (11) on the lower side. The first limiting slide plate (4) on the lower side is rotatably connected to a fourth rotating column (22). The outer wall of the fourth rotating column (22) is fixedly connected to a third chain gear (25) and a first mating gear (23). The first mating gear (23) and the second mating gear (24) mesh with each other. The back panel (1) is slidably connected to a second limiting slide plate (6) through a second limiting slide groove (7) on it. The second limiting slide plate (6) is rotatably connected to a second rotating column (17). The outer wall of the second rotating column (17) is fixedly connected to a second chain gear (15). The second chain gear (15), the first chain gear (12), and the third chain gear (25) are all fitted with a drive chain (5), so that the two rotating rollers (13) rotate synchronously in opposite directions. A second electric telescopic rod (8) is fixedly installed on the back panel (1), and the telescopic end of the second electric telescopic rod (8) is connected to the second limiting slide plate (6); It also includes a second power mechanism that drives the drive chain (5).

5. The mechanical and electrical installation engineering construction device based on BIM technology according to claim 4, characterized in that, The second power mechanism includes a fixed mounting plate (20), on which the fixed mounting plate (20) is fixedly mounted. The fixed mounting plate (20) is rotatably connected to the upper limit of the third rotating column (19). The outer wall of the third rotating column (19) is fixedly connected to the second bevel tooth (18), and the outer wall of the second rotating column (17) is fixedly connected to the first bevel tooth (16). The first bevel tooth (16) and the second bevel tooth (18) mesh with each other. The fixed mounting plate (20) is fixedly mounted to the drive motor (21), and the power output end of the drive motor (21) is connected to the third rotating column (19).

6. The mechanical and electrical installation engineering construction device based on BIM technology according to claim 5, characterized in that, The controller (9) is electrically connected to the second electric telescopic pole (8), the first electric telescopic pole (3), and the drive motor (21) for high-efficiency construction operations based on BIM technology.

Citation Information

Patent Citations

  • Mechanical and electrical installation engineering construction system based on BIM technology

    CN222288335U