Electrical vertical shaft of super high-rise building
By introducing maintenance doors and clamping mechanisms into the electrical shafts of super-high-rise buildings, the problem of interlaced and entangled electrical pipelines is solved, rapid and stable fixation is achieved and maintenance processes are simplified, and maintenance efficiency and safety are improved.
Patent Information
- Application Number
- CN202422450819.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-10
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2034-10-10
AI Technical Summary
Electrical pipelines in electrical shafts of existing super-high-rise buildings are easily interlaced and entangled, and the traditional fixing method is unstable, resulting in complex maintenance and safety hazards.
The design includes an access door and a clamping mechanism. The clamping mechanism consists of a bearing seat, a bidirectional screw, a limiting mechanism, a locking mechanism and a guide mechanism. The rapid fixation and precise position adjustment of the electrical pipeline are achieved by rotating the bidirectional screw.
It realizes rapid and stable fixation of electrical pipelines, simplifies maintenance processes, improves maintenance efficiency and safety, and avoids the risks of pipelines falling off and displaced.
Smart Images

Figure CN223202663U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of electrical shafts, in particular to an electrical shaft of a super high-rise building. Background Art
[0002] As we all know, in the construction of super-high-rise buildings, electrical shafts are a vital component of the building's power system, used to vertically connect electrical facilities on each floor. With the increase in building height and technological advancements, electrical shafts must not only meet the basic requirements of power transmission but also ensure the reliability and ease of maintenance of the power system. However, in existing electrical shaft designs, due to the wide variety of pipelines within the shaft, such as power cables and communication cables, if effective management measures are not implemented, these pipelines are prone to intertwining and entanglement, making subsequent maintenance difficult. Currently, many electrical shafts use traditional fixing methods such as strapping and hanging hooks. While simple and easy to use, these methods are inadequate for large numbers of pipelines, resulting in unstable fixing effects and the risk of pipelines falling off or shifting. When equipment or pipelines within the electrical shaft need to be inspected and maintained, if adequate organization and fixing are not done beforehand, the inspection and maintenance work will be complicated, time-consuming, and even potentially lead to safety accidents due to improper operation. Therefore, it is necessary to develop solutions to this technical problem. Utility Model Content
[0003] (1) Technical problems solved
[0004] In view of the deficiencies in the prior art, the utility model provides an electrical shaft for a super high-rise building.
[0005] (2) Technical solution
[0006] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: an electrical shaft of a super high-rise building, comprising a main body, a maintenance mechanism provided on the main body, the maintenance mechanism comprising an inspection door and a clamping mechanism, the inspection door being located on one side of the main body, the clamping mechanism comprising a bearing seat, a first fixing frame and a second fixing frame, the bearing seat being mounted on one side of the inner wall of the main body, a rectangular groove being provided between the bearing seat and the inner wall of the main body, a bidirectional screw being provided on the bearing seat, a rectangular hole being provided at one end of the bidirectional screw rod, a rectangular column being provided on the rectangular hole, and the rectangular column being provided on the rectangular hole. One end of the rectangular column rests on the rectangular groove, a limiting mechanism is provided between the rectangular column and the rectangular hole, a locking mechanism is provided between the rectangular column and the rectangular groove, the first fixing frame is installed on both sides of one end of the inner wall of the main body, and the second fixing frame is installed on both sides of the other end of the inner wall of the main body, a clamping frame is provided on the bidirectional screw rod, and the clamping frame is provided with two and symmetrically arranged, the first fixing frame, the second fixing frame and the clamping frame are all provided with clamping grooves, a guide mechanism is provided between the clamping frame and the inside of the main body, and the maintenance mechanism is provided with multiple and arranged in an array.
[0007] Furthermore, the present invention is improved in that the limiting mechanism includes a limiting groove and a limiting block, the limiting groove is opened on one side of the rectangular hole, the limiting block is located in the limiting groove, and the limiting block is connected to the rectangular column.
[0008] Furthermore, the present invention is improved in that the locking mechanism includes an iron absorption block and an iron plate, the iron absorption block is installed on the rectangular groove, and the iron plate is installed at one end of the rectangular column.
[0009] Furthermore, the present invention is improved in that the rectangular hole, the rectangular column and the rectangular groove all have a hexagonal structure.
[0010] Furthermore, the present invention is improved in that the guide mechanism includes a slide groove and a slider, the slide groove is opened on one side of the inner wall of the main body, the slider is connected to one end of the clamping frame, and the slider is slidably connected to the slide groove.
[0011] Furthermore, the present invention is improved in that the guide mechanisms are provided with two and are symmetrically arranged.
[0012] Furthermore, the present invention is improved in that both the slider and the slide groove are T-shaped.
[0013] Furthermore, the present invention is improved in that a plurality of clamping grooves are provided, and the clamping grooves are in an arc-shaped structure.
[0014] (3) Beneficial effects
[0015] Compared with the prior art, the present invention provides an electrical shaft for a super high-rise building, which has the following beneficial effects:
[0016] The electrical shaft of this super high-rise building can simultaneously drive two clamping frames to move in opposite directions by rotating the bidirectional screw, achieving rapid fixation of electrical pipelines. This design makes the installation process more efficient and faster, especially when handling a large number of pipelines, significantly reducing the fixation time. After completing the initial fixation, the bidirectional screw can be fine-tuned to further accurately fix the position of the electrical pipeline, ensuring that each pipeline can be firmly fixed in the predetermined position. The limit mechanism prevents the rectangular column from completely disengaging from the rectangular hole, ensuring the overall stability of the structure.
[0017] The guide mechanism ensures that the clamping frame maintains linear motion during movement, avoiding loose fixation due to offset. The clamping grooves on the first fixing frame and the second fixing frame are used in conjunction with the clamping frame to effectively prevent the displacement of the electrical pipeline after fixation, thereby improving the safety of the system. By setting up an inspection door, staff can easily enter the electrical shaft for inspection and maintenance without the need for complicated disassembly and assembly processes. By pulling the rectangular column and rotating the bidirectional screw, the electrical pipeline can be quickly released, making it easier for staff to access the pipeline for inspection or replacement, greatly improving maintenance efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 This is a schematic diagram of the structure of the utility model Figure 1 ;
[0019] Figure 2 This is a schematic diagram of the structure of the utility model Figure 2 ;
[0020] Figure 3 This is a top view of the structure of the utility model;
[0021] Figure 4 For this utility model Figure 1 A partially enlarged top view of the main body.
[0022] In the figure: 1. Main body; 2. Inspection door; 3. Bearing seat; 4. First fixing frame; 5. Second fixing frame; 6. Bidirectional screw; 7. Rectangular column; 8. Clamping frame; 9. Limit block; 10. Magnet block; 11. Iron plate; 12. Slide groove; 13. Slider. DETAILED DESCRIPTION
[0023] 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 embodiments described 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 making creative efforts are within the scope of protection of the present invention.
[0024] See also Figure 1-4The utility model is an electrical shaft of a super high-rise building, comprising a main body 1, on which is provided an inspection mechanism, the inspection mechanism comprising an inspection door 2 and a clamping mechanism, the inspection door 2 being located on one side of the main body 1, the clamping mechanism comprising a bearing seat 3, a first fixing frame 4 and a second fixing frame 5, the bearing seat 3 being mounted on one side of the inner wall of the main body 1, a rectangular groove being provided between the bearing seat 3 and the inner wall of the main body 1, a bidirectional screw rod 6 being provided on the bearing seat 3, one end of the bidirectional screw rod 6 being provided with a rectangular hole, a rectangular column 7 being provided on the rectangular hole, one end of the rectangular column 7 being abutted against the rectangular hole On the groove, a limiting mechanism is provided between the rectangular column 7 and the rectangular hole, a locking mechanism is provided between the rectangular column 7 and the rectangular groove, the first fixing frame 4 is installed on both sides of one end of the inner wall of the main body 1, and the second fixing frame 5 is installed on both sides of the other end of the inner wall of the main body 1, a clamping frame 8 is provided on the bidirectional screw rod 6, and the clamping frame 8 is provided with two and symmetrically arranged, the first fixing frame 4, the second fixing frame 5 and the clamping frame 8 are all provided with clamping grooves, a guide mechanism is provided between the clamping frame 8 and the interior of the main body 1, the maintenance mechanism is provided with multiple and array-arranged, in this embodiment, through the main The electrical pipelines and equipment are installed in the main body 1. The electrical pipelines and equipment can be easily inspected by opening the inspection door 2. The electrical pipelines need to be neatly fastened and placed in the main body 1 to prevent clutter and inconvenience in later maintenance work. At this time, the electrical pipelines are placed through the clamping grooves on the first fixing frame 4 and the second fixing frame 5. Then the personnel pulls the rectangular column 7, and one end of the rectangular column 7 leaves the rectangular groove. The limiting mechanism can prevent the rectangular column 7 from leaving the rectangular hole. Then, by rotating the bidirectional screw rod 6, the threads of different rotation directions on the bidirectional screw rod 6 can realize the two clamping frames 8 to move in opposite directions, and the guiding mechanism can make the clamping frame 8 stable and straight. The wire moves, so that one clamping frame 8 is close to the first fixing frame 4, and the other clamping frame 8 is close to the second fixing frame 5, so that the electrical pipeline is clamped by the clamping frame 8 and the clamping groove of the first fixing frame 4 or the second fixing frame 5, so that multiple electrical pipelines can be quickly clamped and fixed, and then the rectangular column 7 is pushed and the bidirectional screw rod 6 is fine-tuned, so that the bidirectional screw rod 6 is aligned and rests in the rectangular groove, so that the bidirectional screw rod 6 is fixed, and multiple electrical pipelines are clamped quickly and at the same time. When the electrical pipeline needs to be used during later maintenance, the bidirectional screw rod 6 is rotated by pulling the rectangular column 7, so that the electrical pipeline can be easily accessed and clamped, which is convenient for maintenance.
[0025] In this solution, the limiting mechanism includes a limiting groove and a limiting block 9. The limiting groove is opened on one side of the rectangular hole. The limiting block 9 is located in the limiting groove. The limiting block 9 is connected to the rectangular column 7. By connecting the rectangular column 7 through the limiting block 9 in the limiting groove, the rectangular column 7 can be limited to prevent the rectangular column 7 from escaping from the rectangular hole.
[0026] In this solution, the locking mechanism includes an iron magnet 10 and an iron plate 11. The iron magnet 10 is installed on the rectangular groove, and the iron plate 11 is installed at one end of the rectangular column 7. The iron magnet 10 absorbs the iron plate 11 at one end of the rectangular column 7, so that the rectangular column 7 is more firmly pressed against the rectangular groove.
[0027] In this solution, the rectangular hole, the rectangular column 7 and the rectangular groove are all hexagonal in structure, and the rectangular column 7 with a hexagonal structure can be easily inserted into the rectangular groove.
[0028] In this solution, the guide mechanism includes a slide groove 12 and a slider 13. The slide groove 12 is opened on one side of the inner wall of the main body 1. The slider 13 is connected to one end of the clamping frame 8. The slider 13 is slidably connected to the slide groove 12. The clamping frame 8 is connected through the slider 13 in the slide groove 12, so that the clamping frame 8 can move stably in a straight line.
[0029] In this solution, two guide mechanisms are provided and are symmetrically arranged. By providing two symmetrically arranged guide mechanisms, the movement stability of the clamping frame 8 can be further improved.
[0030] In this solution, the slider 13 and the slide groove 12 are both T-shaped structures. The slider 13 and the slide groove 12 having the T-shaped structure can prevent the slider 13 from escaping from the slide groove 12.
[0031] In this solution, there are multiple clamping grooves, and the clamping grooves are in an arc-shaped structure. Through the multiple clamping grooves and the arc-shaped structure, more electrical pipelines can be further clamped.
[0032] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An electrical shaft of a super high-rise building, comprising a main body (1), wherein the main body (1) is provided with a maintenance mechanism, characterized in that: The inspection mechanism includes an inspection door (2) and a clamping mechanism. The inspection door (2) is located on one side of the main body (1). The clamping mechanism includes a bearing seat (3), a first fixing frame (4) and a second fixing frame (5). The bearing seat (3) is installed on one side of the inner wall of the main body (1). A rectangular groove is provided between the bearing seat (3) and the inner wall of the main body (1). A bidirectional screw rod (6) is provided on the bearing seat (3). A rectangular hole is provided at one end of the bidirectional screw rod (6). A rectangular column (7) is provided on the rectangular hole. One end of the rectangular column (7) is against the rectangular groove. The rectangular column (7) and the A limiting mechanism is provided between the rectangular holes, a locking mechanism is provided between the rectangular column (7) and the rectangular groove, the first fixing frame (4) is installed on both sides of one end of the inner wall of the main body (1), and the second fixing frame (5) is installed on both sides of the other end of the inner wall of the main body (1), a clamping frame (8) is provided on the bidirectional screw rod (6), and the clamping frame (8) is provided with two and symmetrically arranged, the first fixing frame (4), the second fixing frame (5) and the clamping frame (8) are all provided with clamping grooves, a guide mechanism is provided between the clamping frame (8) and the inside of the main body (1), and the maintenance mechanism is provided with multiple and arranged in an array.
2. The electrical shaft of a super high-rise building according to claim 1, characterized in that: The limiting mechanism comprises a limiting groove and a limiting block (9), wherein the limiting groove is provided on one side of the rectangular hole, the limiting block (9) is located in the limiting groove, and the limiting block (9) is connected to the rectangular column (7).
3. The electrical shaft of a super high-rise building according to claim 2, characterized in that: The locking mechanism comprises an iron absorption block (10) and an iron plate (11), wherein the iron absorption block (10) is mounted on the rectangular groove, and the iron plate (11) is mounted on one end of the rectangular column (7).
4. The electrical shaft of a super high-rise building according to claim 3, characterized in that: The rectangular hole, the rectangular column (7) and the rectangular groove all have a hexagonal structure.
5. The electrical shaft of a super high-rise building according to claim 4, characterized in that: The guide mechanism includes a slide groove (12) and a slider (13), wherein the slide groove (12) is opened on one side of the inner wall of the main body (1), the slider (13) is connected to one end of the clamping frame (8), and the slider (13) is slidably connected to the slide groove (12).
6. The electrical shaft of a super high-rise building according to claim 5, characterized in that: The guide mechanisms are provided with two and are symmetrically arranged.
7. The electrical shaft of a super high-rise building according to claim 6, characterized in that: The slider (13) and the slide groove (12) both have a T-shaped structure.
8. The electrical shaft of a super high-rise building according to claim 7, characterized in that: There are multiple clamping grooves, and each clamping groove has an arc-shaped structure.