Supporting equipment table for electric power engineering

By installing a movable symmetrical stabilizer structure at the bottom of the switchgear, the problem of the switchgear being fixed to the ground and difficult to move is solved, thus achieving stable support and convenient maintenance of the switchgear.

CN224204634UActive Publication Date: 2026-05-05WUHAN MUMAI ENERGY TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WUHAN MUMAI ENERGY TECHNOLOGY CO LTD
Filing Date
2025-04-27
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

The existing power engineering switchgear is fixed to the ground and is difficult to move, making it difficult for maintenance personnel to reach the equipment on the wall side, increasing the difficulty of maintenance and affecting the quality.

Method used

A support platform including a symmetrical stabilizer frame was designed. Through a slider and guide groove structure, the bottom of the switch cabinet can be moved, providing stable support and facilitating maintenance.

Benefits of technology

This enables stable installation and convenient relocation of the switchgear, improving the convenience and efficiency of maintenance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of electric power engineering equipment, in particular to a supporting equipment table for electric power engineering, which comprises a supporting table mounted at the bottom of a switch cabinet, the supporting table comprises symmetrical stabilizing frames, mounting gaskets are fixedly connected to the bottoms of the side walls of the stabilizing frames, and guide grooves are formed in the top surfaces of the stabilizing frames. The inner wall of the guide groove is slidably connected with a sliding block. The stable frame is installed on the bottom face of the switch cabinet, the bottom of the switch cabinet can be supported, the switch cabinet is stably installed, meanwhile, when the position, close to the wall face, of the switch cabinet needs to be overhauled, the switch cabinet can be directly pulled, in the process, a sliding block slides in a guide groove, then a moving block slides on the inner wall of an extending groove, and the switch cabinet is conveniently overhauled. When the pull-out position is insufficient, the sliding block can be moved out of the guide groove, so that the stabilizing frame extends out to the maximum extent, the sliding block and the moving block are in a rectangular supporting state for the bottom of the switch cabinet after extending out, supporting is stable, the overall structure is simple, manufacturing and processing are convenient, and the switch cabinet is suitable for application and popularization.
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Description

Technical Field

[0001] This utility model relates to the field of power engineering equipment technology, and in particular to a support equipment platform for power engineering. Background Technology

[0002] Electrical engineering is an engineering field related to the production, transmission, distribution, and application of electrical energy. It encompasses the entire power system from power generation to consumption and is an important technological foundation for modern social development. Supporting equipment platforms in electrical engineering are important devices used to support and fix various electrical equipment.

[0003] Currently, power switchgear is used in substations, distribution rooms, and other locations to distribute and control electrical energy in high-voltage or medium-voltage power systems. Typically, switchgear is installed directly on the ground, with its bottom parallel to the ground. The installation height is usually between 1.3 and 1.5 meters. This ensures operational safety and facilitates maintenance and repair. In long-term operating substations and distribution rooms, wheelless switchgear is used. The bottom of the switchgear is directly connected to the ground or foundation using bolts or other fixing devices. This results in a relatively fixed position, high stability, and the ability to withstand large electrical loads and mechanical stresses. However, it also has some drawbacks:

[0004] During routine maintenance and repair of switchgear, switchgear fixed to the ground may make it difficult for maintenance personnel to reach the equipment on the wall side for repair. Since the switchgear cannot be moved, maintenance personnel may need to use special tools or postures to operate it, which not only increases the difficulty of maintenance, but may also affect the quality and efficiency of maintenance. Utility Model Content

[0005] To address the aforementioned problems, this utility model provides the following power engineering support platform, which installs a movable support platform on the switchgear, thus maintaining installation and usage stability while providing convenience during maintenance, thereby improving the above-mentioned issues.

[0006] The technical solution of this utility model is:

[0007] A support platform for power engineering includes a support platform installed at the bottom of a switchgear. The support platform includes a symmetrical stabilizer frame. Mounting pads are fixedly connected to the bottom of the side walls of the stabilizer frame. A guide groove is formed on the top surface of the stabilizer frame. A slider is slidably connected to the inner wall of the guide groove. The top surface of the slider is fixed to the bottom surface of the switchgear. One end of the stabilizer frame is open. A mounting plate is snapped into one end of the inner wall of the guide groove. A sliding rod is provided inside the guide groove. The mounting plate is fixedly connected to the end of the sliding rod. A sliding opening is formed on the surface of the slider, and the sliding opening slides with the sliding rod. A groove is formed at the open end of the slider facing the stabilizer frame. A snap-fit ​​block that fits and snaps into the groove is fixedly connected to the end of the sliding rod away from the mounting plate. A limiting structure is provided between the mounting plate and the inner wall of the guide groove, and this limiting structure is set along the length direction of the guide groove.

[0008] In a further technical solution, the length of the stabilizer is the same as the length of the bottom surface of the switch cabinet.

[0009] In a further technical solution, the limiting structure includes a support frame fixed to the surface of the mounting plate, and the support frame is rectangularly distributed. The inner wall of the guide groove is symmetrically provided with slides, and the slides do not penetrate the open end of the stabilizer. The end of the support frame away from the mounting plate is located on the inner wall of the slide and is slidably connected to the slide.

[0010] In a further technical solution, the top surface of the stabilizer is provided with a symmetrical extension groove, and a movable block is provided on the inner wall of the end of the extension groove away from the open part of the stabilizer. The movable block is slidably connected to the extension groove, and the top surface of the movable block is attached to the bottom surface of the switch cabinet.

[0011] In a further technical solution, a slot is provided at the end of the guide groove away from the open end of the stabilizer, and the shape of the slot matches the mounting plate and the support frame.

[0012] In a further technical solution, the bottom surface of the stabilizer is provided with an anti-slip pad.

[0013] The beneficial effects of this utility model are:

[0014] By installing the stabilizer on the bottom of the switchgear, the bottom of the switchgear can be supported, making the switchgear stable during installation. At the same time, when the switchgear needs to be inspected near the wall, the switchgear can be pulled directly. During the process, the slider slides in the guide groove, and then the moving block slides on the inner wall of the extension groove. When the pull-out position is insufficient, the slider can be moved out of the guide groove to maximize the extension of the stabilizer. After extension, the slider and the moving block form a rectangular support for the bottom of the switchgear, providing stable support. The overall structure is simple, easy to manufacture and process, and suitable for widespread use. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the overall structure of an embodiment of the present utility model;

[0016] Figure 2 This is a schematic diagram of the structure of the sliding rod extension stabilizer according to an embodiment of this utility model;

[0017] Figure 3 This is a partial cross-sectional structural diagram of the stabilizer frame according to an embodiment of the present invention;

[0018] Figure 4 This is a schematic diagram of the assembly structure of the stabilizer and slider in an embodiment of this utility model.

[0019] Explanation of reference numerals in the attached figures:

[0020] 1. Stabilizer; 2. Mounting pad; 3. Guide groove; 4. Slider; 5. Slide opening; 6. Slide rod; 7. Mounting plate; 8. Support frame; 9. Slide rail; 10. Groove; 11. Snap-fit ​​block; 12. Snap-fit ​​slot; 13. Extension groove; 14. Moving block. Detailed Implementation

[0021] The embodiments of this utility model will be further described below with reference to the accompanying drawings.

[0022] Example:

[0023] like Figures 1-4 As shown, a power engineering support platform includes a support platform installed at the bottom of a switchgear. The support platform includes a symmetrical stabilizer 1. The bottom surface of the stabilizer 1 is provided with an anti-slip pad to improve the stability of the stabilizer 1 when installed on the ground. Mounting pads 2 are fixedly connected to the bottom of the side wall of the stabilizer 1. A guide groove 3 is opened on the top surface of the stabilizer 1. A slider 4 is slidably connected to the inner wall of the guide groove 3. The top surface of the slider 4 is fixed to the bottom surface of the switchgear. One end of the stabilizer 1 is open. A mounting plate 7 is snapped into one end of the inner wall of the guide groove 3. A sliding rod 6 is provided inside the guide groove 3. The mounting plate 7 and the sliding rod 6 are connected... The end of the slider 4 is fixedly connected, and the surface of the slider 4 is provided with a sliding opening 5. The sliding opening 5 is slidably engaged with the sliding rod 6. The end of the slider 4 facing the open part of the stabilizer 1 is provided with a groove 10. The end of the sliding rod 6 away from the mounting plate 7 is fixedly connected with a snap-fit ​​block 11 that is adapted to snap-fit ​​with the groove 10. A limit structure is provided between the mounting plate 7 and the inner wall of the guide groove 3, and the limit structure is provided along the length direction of the guide groove 3. The length of the stabilizer 1 is consistent with the bottom length of the switch cabinet. When the slider 4 is slid, the stabilizer 1 can be moved to a space that is basically consistent with its own spatial cross section, which is convenient for personnel to move the position for maintenance.

[0024] In another embodiment, such as Figure 3 and Figure 4As shown, the limiting structure includes a support frame 8 fixed to the surface of the mounting plate 7, and the support frame 8 is rectangularly distributed. The inner wall of the guide groove 3 is symmetrically provided with slide rails 9, and the slide rails 9 do not penetrate the open end of the stabilizer 1. The end of the support frame 8 away from the mounting plate 7 is located on the inner wall of the slide rail 9 and is slidably connected to the slide rail 9. During the sliding process of the slider 4, it will be sleeved on the surface of the slide rod 6. When the slider 4 is located at the open end of the stabilizer 1, the locking block 11 is locked into the groove 10. At this time, continuing to drag the switch cabinet can make the slider 4 move out of the inner wall of the guide groove 3. Then, the locking state of the locking block 11 and the groove 10 can make the support frame 8 slide on the inner wall of the slide rail 9. When the support frame 8 slides to the end of the slide rail 9, the stabilizer 1 is fully extended. At this time, the switch cabinet can move out a space of two cross-sectional areas, which is sufficient for the staff to enter the side of the switch cabinets to inspect the position against the wall.

[0025] In another embodiment, such as Figures 2-4 As shown, the top surface of the stabilizer 1 is provided with a symmetrical extension groove 13. The inner wall of the extension groove 13 away from the open part of the stabilizer 1 is provided with a moving block 14. The moving block 14 is slidably connected to the extension groove 13, and the top surface of the moving block 14 is attached to the bottom surface of the switch cabinet. This can prevent uneven force on the bottom during the process of the stabilizer 1 being fully extended, and can make the moving block 14 slide synchronously when it is pressed down, reducing the downward pressure of the switch cabinet on the slider 4.

[0026] In another embodiment, such as Figure 4 As shown, a slot 12 is provided at the end of the guide groove 3 away from the open end of the stabilizer 1. The shape of the slot 12 matches the mounting plate 7 and the support frame 8, which facilitates the placement of the mounting plate 7 and the support frame 8.

[0027] When maintenance is required on the switchgear near the wall, simply pull the switchgear. The slider 4 slides in the guide groove 3, while the moving block 14 slides on the inner wall of the extension groove 13. Since the length of the stabilizer 1 is the same as the bottom length of the switchgear, sliding the slider 4 allows the stabilizer 1 to be moved to a space roughly matching its own cross-section, facilitating initial position adjustments. If the initial position is insufficient, continue pulling the switchgear. When the slider 4 is at the open end of the stabilizer 1, the locking block 11 at the end of the slide rod 6 away from the mounting plate 7 will engage in the groove 10 at the open end of the slider 4 facing the stabilizer 1. Continue dragging the switchgear at this point. The slider 4 will move out of the inner wall of the guide groove 3. At the same time, the engaging state of the locking block 11 and the groove 10 allows the support frame 8 to slide on the inner wall of the slide rail 9. When the support frame 8 slides to the end of the slide rail 9, the stabilizer 1 is fully extended. At this time, the switch cabinet can move out a space of two cross-sectional areas, which is enough for the staff to enter the side-by-side switch cabinets and inspect the position against the wall. During the process of the stabilizer 1 being fully extended, the moving block 14 will be pressed down by the switch cabinet and slide synchronously to avoid uneven force at the bottom and reduce the downward pressure of the switch cabinet on the slider 4. This makes the slider 4 and the moving block 14 provide a rectangular support for the bottom of the switch cabinet, providing stable support.

[0028] The above embodiments merely illustrate specific implementations of this utility model, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of this utility model patent. It should be noted that those skilled in the art can make several modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model.

Claims

1. A support platform for power engineering, comprising a support platform installed at the bottom of a switchgear, characterized in that: The support platform includes a symmetrical stabilizer (1). A mounting pad (2) is fixedly connected to the bottom of the side wall of the stabilizer (1). A guide groove (3) is provided on the top surface of the stabilizer (1). A slider (4) is slidably connected to the inner wall of the guide groove (3). The top surface of the slider (4) is fixed to the bottom surface of the switch cabinet. One end of the stabilizer (1) is open. A mounting plate (7) is snapped onto one end of the inner wall of the guide groove (3). A sliding rod (6) is provided inside the guide groove (3). The mounting plate (7)... The slider (4) is fixedly connected to the end of the slide rod (6). The surface of the slider (4) is provided with a sliding opening (5). The sliding opening (5) is slidably engaged with the slide rod (6). The end of the slider (4) facing the stabilizer (1) is provided with a groove (10). The end of the slide rod (6) away from the mounting plate (7) is fixedly connected with a snap-fit ​​block (11) that is adapted to snap-fit ​​the groove (10). A limiting structure is provided between the mounting plate (7) and the inner wall of the guide groove (3), and the limiting structure is provided along the length direction of the guide groove (3).

2. The power engineering support platform according to claim 1, characterized in that: The length of the stabilizer (1) is the same as the length of the bottom surface of the switch cabinet.

3. The power engineering support platform according to claim 1, characterized in that: The limiting structure includes a support frame (8) fixed on the surface of the mounting plate (7), and the support frame (8) is rectangularly distributed. The inner wall of the guide groove (3) is symmetrically provided with slides (9), and the slides (9) do not penetrate the open end of the stabilizer (1). The end of the support frame (8) away from the mounting plate (7) is located on the inner wall of the slide (9) and is slidably connected to the slide (9).

4. The power engineering support platform according to claim 1, characterized in that: The top surface of the stabilizer (1) is provided with a symmetrical extension groove (13). A movable block (14) is provided on the inner wall of one end of the extension groove (13) away from the opening of the stabilizer (1). The movable block (14) is slidably connected to the extension groove (13), and the top surface of the movable block (14) is attached to the bottom surface of the switch cabinet.

5. The power engineering support platform according to claim 1, characterized in that: The guide groove (3) has a slot (12) at one end away from the open end of the stabilizer (1), and the shape of the slot (12) matches the mounting plate (7) and the support frame (8).

6. The power engineering support platform according to claim 1, characterized in that: The bottom surface of the stabilizer (1) is provided with an anti-slip pad.