Electric cabinet structure
By designing a frame and adjustable components within the electrical cabinet, the back panel depth can be flexibly adjusted, solving the problem of existing electrical cabinets having difficulty adjusting the back panel depth and improving maintenance efficiency and stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-03
- Publication Date
- 2026-03-17
AI Technical Summary
The existing electrical cabinets do not allow for easy adjustment of the back panel depth as needed, which makes maintenance inconvenient and reduces maintenance efficiency.
An electrical cabinet structure was designed, including a frame, a first plate, and an adjusting component. By setting multiple through holes and adjusting components on the frame, the first plate is allowed to slide inside the electrical cabinet and is limited by the adjusting components, thereby achieving flexible adjustment of the back panel depth.
It improves the flexibility and stability of electrical component maintenance, meets the needs of different working conditions, and reduces the workload of staff.
Smart Images

Figure CN224006376U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the field of power equipment technology, and specifically relates to an electrical cabinet structure. Background Technology
[0002] An electrical cabinet is a common type of electrical equipment, typically consisting of a cabinet body and doors. Switching devices, measuring instruments, protective electrical appliances, and auxiliary equipment are assembled on the side and back panels of the enclosed or semi-enclosed cabinet. However, during use, it is inconvenient to adjust the depth of the back panel as needed. Utility Model Content
[0003] Purpose of the utility model: The embodiments of this application provide an electrical cabinet structure that aims to overcome the technical problem of inconvenience in adjusting the depth of the back panel as needed.
[0004] Technical solution: An electrical cabinet structure according to an embodiment of this application includes:
[0005] A frame having a receiving cavity and a plurality of first through holes spaced apart along the width direction;
[0006] The first plate is disposed within the receiving cavity and is slidably connected to the frame;
[0007] The adjusting member includes a first connecting part and a second connecting part. The first connecting part is connected to the first plate and has a second through hole. The second connecting part passes through the second through hole and the first through hole.
[0008] In some embodiments, the framework includes:
[0009] The body having the receiving cavity;
[0010] A support portion is disposed within the receiving cavity and connected to the body. The support portion is disposed on at least one side of the first plate along the height direction and is slidably connected to the first plate. The support portion has a plurality of first through holes.
[0011] In some embodiments, the support portion has a sliding groove extending along the width direction;
[0012] The first plate includes a body portion and a sliding portion. The sliding portion is provided on at least one side of the body portion in the height direction, and the sliding portion is disposed in the sliding groove.
[0013] In some embodiments, the support portion is provided with the first connecting portion on both sides in the length direction, and is fitted to the first connecting portion.
[0014] In some embodiments, the first connecting portion includes:
[0015] A fixing plate is connected to at least one side of the first plate in the height direction;
[0016] A guide plate is connected to the side of the fixing plate opposite to the first plate and is fitted to one side of the bearing part in the length direction. The guide plate has the second through hole.
[0017] In some embodiments, the first connecting portion has a plurality of second through holes, which are spaced apart along the width direction, and each second through hole corresponds to one of the first through holes.
[0018] In some embodiments, the frame has two openings communicating with the receiving cavity;
[0019] The electrical cabinet structure also includes:
[0020] Two second plates are arranged at intervals along the length direction and respectively cover the two openings. Each second plate includes a base plate and a rotating part. The base plate is connected to the frame. The rotating part is disposed on one side of the base plate along the width direction and is detachably connected to the base plate. The side of the rotating part opposite to the base plate is rotatably connected to the frame.
[0021] In some embodiments, the rotating part includes a plurality of mounting plates arranged along the height direction, each mounting plate being detachably connected to the base plate, and the side of each mounting plate opposite to the base plate being rotatably connected to the frame.
[0022] In some embodiments, the rotating part further includes a plurality of reinforcing plates, each of the reinforcing plates being disposed on one side of a mounting plate and connected to the mounting plate.
[0023] In some embodiments, the second plate further includes a pulling part, which is disposed on one side of the rotating part along the length direction and connected to the rotating part.
[0024] Beneficial Effects: The electrical cabinet structure of this application embodiment includes: a frame having a receiving cavity and a plurality of first through holes spaced apart along its width; a first plate disposed within the receiving cavity and slidably connected to the frame; and an adjusting member including a first connecting portion and a second connecting portion, the first connecting portion being connected to the first plate and having a second through hole, the second connecting portion passing through the second through hole and a first through hole. Through the adjusting member and the plurality of first through holes, the installation depth of the first plate within the receiving cavity can be adjusted as needed, improving the flexibility of the first plate installation and facilitating the inspection and maintenance of electrical components installed on the first plate. Attached Figure Description
[0025] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0026] Figure 1 This is a perspective view of the electrical cabinet structure according to an embodiment of this application;
[0027] Figure 2 This is a partial cross-sectional view of the connection between the support portion and the first plate in an embodiment of this application;
[0028] Figure 3 This is a perspective view of the first plate component according to an embodiment of this application;
[0029] Figure 4 Examples of this application Figure 3 Enlarged view of a portion of area A in the middle;
[0030] Figure 5 This is a perspective view of the first connecting portion according to an embodiment of this application;
[0031] Figure 6 This is a perspective view of the framework of an embodiment of this application;
[0032] Figure 7 This is a perspective view of the connection between the frame and the second plate in an embodiment of this application;
[0033] Figure 8 This is a perspective view of the connection between the frame and the second plate in an embodiment of this application, wherein the second plate includes multiple mounting plates;
[0034] Figure 9 This is a perspective view of the mounting plate in an embodiment of this application;
[0035] Figure 10 This is a perspective view of the connection between the frame and the second plate in an embodiment of this application, wherein part of the mounting plate is rotated to the position of the cabinet door;
[0036] Explanation of reference numerals in the attached drawings: 10-Frame; 11-Receiving cavity; 12-First through hole; 13-Body; 14-Bearing part; 141-Sliding groove; 15-Opening; 20-First plate; 21-Body part; 22-Sliding part; 30-Adjusting part; 31-First connecting part; 311-Second through hole; 312-Fixing plate; 313-Guide plate; 32-Second connecting part; 40-Second plate; 41-Base plate part; 42-Rotating part; 421-Mounting plate; 422-Reinforcing plate; 43-Pull-up part; X-Length direction; Y-Width direction; Z-Height direction. Detailed Implementation
[0037] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application.
[0038] In the description of this application, it should be understood that the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Therefore, features defined as "first" or "second" may explicitly or implicitly include one or more features. In the description of this application, "multiple" means two or more, and "at least one" can mean one, two, or more, unless otherwise explicitly specified.
[0039] Electrical control cabinets are common electrical devices, typically consisting of a cabinet body and doors. Switching devices, measuring instruments, protective electrical devices, and auxiliary equipment are assembled on the back and side panels of a closed or semi-closed cabinet. Their arrangement should meet the requirements for normal operation of the power system, facilitate maintenance, and not endanger personnel or surrounding equipment. In existing electrical cabinets, when internal electrical components are damaged and require maintenance, workers cannot access the deeper parts of the cabinet, making it inconvenient to maintain components mounted on the back panel. This necessitates removing all electrical components for maintenance, preventing adjustments to the back panel's position and depth, hindering operation of the installed equipment, increasing the workload of workers, and ultimately reducing maintenance efficiency.
[0040] In view of the above, embodiments of this application provide an electrical cabinet structure to overcome at least one of the above-mentioned technical problems.
[0041] Please see Figure 1 and Figure 2 In this embodiment of the application, the electrical cabinet structure includes: a frame 10, a first plate 20, and an adjusting member 30.
[0042] The frame 10 has a receiving cavity 11 and a plurality of first through holes 12 spaced apart along the width direction Y. The first plate 20 is disposed in the receiving cavity 11 and is slidably connected to the frame 10. The adjusting member 30 includes a first connecting part 31 and a second connecting part 32. The first connecting part 31 is connected to the first plate 20 and has a second through hole 311. The second connecting part 32 passes through the second through hole 311 and one of the first through holes 12.
[0043] Understandably, the frame 10, as the main supporting structure, plays a primary supporting role for the other structures on the electrical cabinet. Inside the frame 10 is a receiving cavity 11, in which the first plate 20 and the adjusting member 30 can be installed. The first plate 20 is the back panel of the electrical cabinet. During use, electrical components can be installed on the first plate 20. The first plate 20 can slide back and forth relative to the frame 10. If maintenance is required on the electrical components installed on the first plate 20, the handle structure on the first plate 20 can be pulled to slide it along the width direction Y, moving the first plate 20 to a position close to the cabinet door (i.e., close to the operator). This allows adjustment of the depth of the first plate 20 within the electrical cabinet (depth refers to the distance of the first plate 20 from the cabinet door in the width direction Y, which is not shown in the figure), facilitating maintenance of the electrical components on the first plate 20. An adjusting member 30 can be provided between the first plate 20 and the frame 10. A first connecting portion 31 on the adjusting member 30 is connected to the first plate 20. When the first plate 20 moves along the width direction Y, the first connecting portion 31 also moves along the width direction Y. Multiple first through holes 12 are provided on the frame 10 at intervals along the width direction Y. Simultaneously, a second through hole 311 is provided on the first connecting portion 31. During the movement of the first connecting portion 31 along the width direction Y, the second through hole 311 can communicate with one of the first through holes 12. During electrical component maintenance or after electrical component installation, the depth of the first plate 20 can be adjusted as needed to achieve a suitable depth. After adjusting the position of the first plate 20 from the cabinet door (that is, after adjusting the depth of the first plate 20 inside the electrical cabinet), the second connecting part 32 can be inserted into the second through hole 311 and the corresponding first through hole 12, respectively, so that the first plate 20 cannot slide along the width direction Y, thus limiting the position of the first plate 20 and improving the stability of the electrical components on the first plate 20 during maintenance or operation (the maintenance and operation processes are different from the movement of the first plate 20 and the electrical components). The second connecting part 32 can be a snap-fit structure, directly penetrating the first through hole 12 on the frame 10 and the second through hole 311 on the first connecting part 31, or it can be a bolt structure, which can more firmly connect the frame 10 and the first connecting part 31, preventing easy loosening, and further improving the stability of the first plate 20. In summary, this structure facilitates the adjustment of the depth of the first plate 20, improves the flexibility of the first plate 20 during installation, meets the usage requirements under different working conditions, and can also limit the adjustment of the first plate 20, thereby improving its stability during use.
[0044] Please see Figure 1 and Figure 2In conjunction with the above embodiments, in some embodiments, the frame 10 includes a body 13 and a support portion 14.
[0045] The body 13 has a receiving cavity 11. The supporting part 14 is disposed in the receiving cavity 11 and connected to the body 13. The supporting part 14 is disposed on at least one side of the first plate 20 along the height direction Z and is slidably connected to the first plate 20. The supporting part 14 has a plurality of first through holes 12.
[0046] It is understood that a support portion 14 can be provided on the frame 10, and the support portion 14 is connected to the body 13 of the frame 10 to support the first plate 20. The first plate 20 can slide on the support portion 14. The support portion 14 can be provided on one or both sides of the first plate 20 along the height direction Z, that is, the support portion 14 can be provided at the bottom of the first plate 20, or the support portion 14 can be provided at both the bottom and top of the first plate 20, and the first plate 20 is slidably connected to each support portion 14. Multiple first through holes 12 can be provided on the support portion 14, so that the support portion 14 is detachably connected to the adjusting member 30.
[0047] Please see Figure 2 , Figure 3 and Figure 4 In conjunction with the above embodiments, in some embodiments, the supporting portion 14 has a sliding groove 141 extending along the width direction Y. The first plate member 20 includes a body portion 21 and a sliding portion 22. The body portion 21 has a sliding portion 22 on at least one side in the height direction Z, and the sliding portion 22 is disposed in the sliding groove 141.
[0048] It is understood that a sliding groove 141 extending along the width direction Y can be provided on the support portion 14, and a sliding portion 22 (which can be a pulley) can be provided on the first plate 20. The support portion 14 can be provided on at least one side of the height direction Z of the body portion 21, so the sliding portion 22 is also provided on at least one side of the height direction Z of the body portion 21. The position and number of the sliding portions 22 correspond to the position and number of the support portion 14, so that each sliding portion 22 can be embedded into the sliding groove 141 of the corresponding support portion 14, so that the sliding portion 22 can slide inside the sliding groove 141, and the sliding groove 141 can play a certain guiding role for the sliding of the sliding portion 22.
[0049] Please see Figure 2 In conjunction with the above embodiments, in some embodiments, the bearing portion 14 is provided with first connecting portions 31 on both sides in the length direction X, and is fitted to the first connecting portions 31.
[0050] Understandably, in order to improve the stability of the first plate 20 sliding on the support portion 14, a first connecting portion 31 can be provided on both sides of the support portion 14 along the length direction X. The first connecting portion 31 on both sides of each support portion 14 is connected to the first plate 20. At the same time, the support portion 14 is in contact with the corresponding first connecting portion 31 on both sides of the length direction X. This allows the first connecting portion 31 on both sides of the support portion 14 to provide certain support and guidance for the first plate 20 during the sliding process, preventing the first plate 20 from tilting left or right during the sliding process and improving the stability of the first plate 20 during the sliding process.
[0051] Please see Figure 1 In conjunction with the above embodiments, in some embodiments, the first connecting part 31 includes a fixing plate 312 and a guide plate 313.
[0052] The fixing plate 312 is connected to at least one side of the first plate 20 in the height direction Z. The guide plate 313 is connected to the side of the fixing plate 312 away from the first plate 20 and is fitted to one side of the bearing part 14 in the length direction X. The guide plate 313 has a second through hole 311.
[0053] It is understandable that, since the supporting part 14 is located on at least one side of the first plate 20 in the height direction Z, in order to improve the stability of the first plate 20 during sliding, the first plate 20 also needs to be connected to the fixing plate 312 on the first connecting part 31 on at least one side in the height direction Z. A guide plate 313 is connected to the side of the fixing plate 312 facing away from the first plate 20. At least a large surface of the guide plate 313 is in contact with one side of the supporting part 14 in the length direction X, so that the guide plate 313 on the first connecting part 31 remains in contact with the supporting part 14 during sliding. Preferably, guide plates 313 are provided on both sides of the supporting part 14 along the length direction X. When the first plate 20 tends to tilt left or right during sliding, the guide plates 313 can exert a force on the supporting part 14 to suppress the tilting of the first plate 20, thereby ensuring the stability of the first plate 20 during sliding. The second through hole 311 is provided on the guide plate 313, which facilitates the connection between the second through hole 311 and the corresponding first through hole 12 on the bearing part 14, and makes it easier for the second connecting part 32 to pass through the second through hole 311 and the corresponding first through hole 12. At the same time, the guide plate 313 can also play a certain guiding role for the first plate 20, which can reduce the risk of the sliding part 22 sliding out of the corresponding sliding groove 141.
[0054] Please see Figure 2 , Figure 4 and Figure 5In conjunction with the above embodiments, in some embodiments, the first connecting portion 31 has a plurality of second through holes 311, the plurality of second through holes 311 are arranged at intervals along the width direction Y, and each second through hole 311 is correspondingly provided with a first through hole 12.
[0055] It is understood that multiple second through holes 311 can be provided on the first connecting part 31. The arrangement direction of the multiple second through holes 311 is the same as the arrangement direction of the multiple first through holes 12, and they are all arranged at intervals along the width direction Y. Preferably, the distance between two adjacent first through holes 12 is equal to the distance between two adjacent second through holes 311, so that each second through hole 311 on the first connecting part 31 is connected to a first through hole 12. When it is necessary to limit the sliding first plate 20, multiple second connecting parts 32 can be inserted into the corresponding first through holes 12 and second through holes 311. By providing multiple second connecting parts 32 to limit the first plate 20 at the same time, the limiting effect of the first plate 20 is improved.
[0056] Please see Figure 6 , Figure 7 and Figure 8 In conjunction with the above embodiments, in some embodiments, the frame 10 has two openings 15 communicating with the receiving cavity 11.
[0057] The electrical cabinet structure also includes two second plates 40, which are arranged at intervals along the length direction X and respectively cover two openings 15. Each second plate 40 includes a base plate portion 41 and a rotating portion 42. The base plate portion 41 is connected to the frame 10, and the rotating portion 42 is disposed on one side of the base plate portion 41 along the width direction Y and is detachably connected to the base plate portion 41. The side of the rotating portion 42 facing away from the base plate portion 41 is rotatably connected to the frame 10.
[0058] It is understood that two openings 15 can be provided on both sides of the frame 10 along the length direction X (i.e., the frame 10 has openings 15 on both the left and right sides), and both openings 15 are connected to the receiving cavity 11 (e.g., Figure 6The two openings 15 are covered by the second plate 40, thus protecting the left and right sides of the frame 10 (i.e., the second plate 40 is the left and right side panel of the electrical cabinet). The base plate 41 on the second plate 40 is a fixed plate, fixedly connected to the frame 10, and will not move. The rotating part 42 on the second plate 40 is a movable plate, which can be rotatably connected to the frame 10 (e.g., through a pivot, hinge, etc.). The rotating part 42 is detachably connected to the base plate 41 on one side in the width direction Y, and rotatably connected to the frame 10 on the other side in the width direction Y. Specifically, the rotating part 42 is rotatably connected to the part of the frame 10 near the cabinet door, so that one rotating part 42 can rotate clockwise to the cabinet door position, and the other rotating part 42 can rotate counterclockwise to the cabinet door position. This facilitates the maintenance of the electrical components installed on the rotating part 42 from the outside of the frame 10, making operation easier and reducing the difficulty of maintenance (e.g., Figure 10 At the same time, after the maintenance is completed, the corresponding rotating part 42 can be rotated to return it to its original position. The rotating part 42 after returning to its original position is connected to the corresponding base plate part 41 through connecting structures such as screws and buckles, thereby preventing the rotating part 42 from rotating easily.
[0059] The dimension of the rotating part 42 in the width direction Y is generally about half the dimension of the frame 10 in the width direction Y. This arrangement can reduce the probability of the rotating part 42 interfering with the electrical components installed on the first plate 20 when it rotates, and also reduce the probability of the rotating part 42 interfering with the electrical components installed on the opposite rotating part 42 when it rotates.
[0060] Please see Figure 8 In conjunction with the above embodiments, in some embodiments, the rotating part 42 includes a plurality of mounting plates 421 arranged along the height direction Z, each mounting plate 421 being detachably connected to the base plate part 41, and the side of each mounting plate 421 facing away from the base plate part 41 being rotatably connected to the frame 10.
[0061] It is understood that the rotating part 42 may include multiple mounting plates 421. Each mounting plate 421 is detachably connected to the base plate part 41 on one side in the width direction Y, and rotatably connected to the frame 10 on the other side in the width direction Y. Specifically, each mounting plate 421 is individually detachably connected to the base plate part 41 (e.g., detachably connected via screws, clips, or other structures), and each mounting plate 421 is also rotatably connected to the portion of the frame 10 near the cabinet door (e.g., rotatably connected via a pivot, hinge, or other structures). Electrical components can be installed on each mounting plate 421. When it is necessary to inspect one of the electrical components, the corresponding mounting plate 421 can be rotated clockwise or counterclockwise to rotate the mounting plate 421 to the position of the cabinet door for inspection of the electrical component installed on it.
[0062] Please see Figure 9 In conjunction with the above embodiments, in some embodiments, the rotating part 42 further includes a plurality of reinforcing plates 422, each reinforcing plate 422 being disposed on one side of a mounting plate 421 and connected to the mounting plate 421.
[0063] Understandably, multiple reinforcing plates 422 are also provided on the rotating part 42. The reinforcing plates 422 are made of metal and have high strength. Each reinforcing plate 422 is connected to one side of a mounting plate 421. Specifically, the large surface area of the reinforcing plate 422 is approximately the same as that of the other reinforcing plate 421. The reinforcing plate 422 is connected to the side of the mounting plate 421 away from the electrical components, so it will not affect the installation of the electrical components. It can also improve the strength of the mounting plate 421 and prevent it from being easily deformed by impact or during the installation of electrical components.
[0064] Please see Figure 8 and Figure 9 In conjunction with the above embodiments, in some embodiments, the second plate 40 further includes a pulling part 43, which is disposed on one side of the rotating part 42 along the length direction X and connected to the rotating part 42.
[0065] Understandably, to facilitate the rotation of the rotating part 42, a pulling part 43 is provided on one side of the rotating part 42 along the length direction X. The pulling part 43 can be a handle structure, a pull rod, or a pull block. It is generally located on the rotating part 42 near the connection between the rotating part 42 and the base plate part 41, and will not affect the installation of electrical components on the rotating part 42. When it is necessary to rotate the rotating part 42, a force can be applied to the rotating part 42 through the pulling part 43 to make the rotating part 42 rotate, making it easy for the rotating part 42 to rotate to the position of the cabinet door.
[0066] In the above embodiments, the descriptions of each embodiment have different focuses. For parts not described in detail in a certain embodiment, please refer to the relevant descriptions in other embodiments.
[0067] The electrical cabinet structure provided in the embodiments of this application has been described in detail above, and specific examples have been used to illustrate the principles and implementation methods of this application. The description of the above embodiments is only for the purpose of helping to understand the technical solutions and core ideas of this application. Those skilled in the art should understand that they can still modify the technical solutions described in the foregoing embodiments, or make equivalent substitutions for some of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.
Claims
1. An electrical cabinet structure, characterized by The utility model relates to a kind of electric cabinet structure, including: Frame (10), the frame (10) has accommodating cavity (11), and multiple first through holes (12) are arranged along width direction (Y) at intervals; First plate (20) is arranged in the accommodating cavity (11), and is slidably connected with the frame (10); Adjusting piece (30), including first connecting part (31) and second connecting part (32), the first connecting part (31) is connected to the first plate (20), the first connecting part (31) has second through hole (311), the second connecting part (32) is threaded in the second through hole (311) and one first through hole (12).
2. The electrical cabinet structure according to claim 1, characterized in that, The frame (10) includes: Body (13), the body (13) has the accommodating cavity (11); Bearing portion (14) is arranged in the accommodating cavity (11), and is connected with the body (13), the bearing portion (14) is arranged on at least one side of the first plate (20) along height direction (Z), and is slidably connected with the first plate (20), the bearing portion (14) has multiple first through holes (12).
3. The electrical cabinet structure of claim 2, wherein, The bearing portion (14) has sliding groove (141) extending along the width direction (Y); The first plate (20) includes body portion (21) and sliding portion (22), the sliding portion (22) is arranged on at least one side of the body portion (21) along the height direction (Z), and the sliding portion (22) is arranged in the sliding groove (141).
4. The electrical cabinet structure of claim 2, wherein, The bearing portion (14) is arranged on both sides along length direction (X) and is arranged in close contact with the first connecting part (31).
5. The electrical cabinet structure of claim 4, wherein, The first connecting part (31) includes: Fixed plate (312) is connected to at least one side of the first plate (20) along the height direction (Z); Guide plate (313) is connected to the side of the fixed plate (312) away from the first plate (20), and is arranged in close contact with one side of the bearing portion (14) along length direction (X), and the guide plate (313) has the second through hole (311).
6. The electrical cabinet structure of claim 1, wherein, The first connecting part (31) has multiple second through holes (311), and multiple second through holes (311) are arranged at intervals along the width direction (Y), and each second through hole (311) is arranged correspondingly with one first through hole (12).
7. The electrical cabinet structure of claim 1, wherein The frame (10) has two openings (15) communicated with the accommodating cavity (11); The electric cabinet structure further includes: Two second plates (40), two second plates (40) are arranged at intervals along length direction (X), and two openings (15) are respectively sealed, the second plate (40) includes base plate portion (41) and rotating portion (42), the base plate portion (41) is connected with the frame (10), the rotating portion (42) is arranged on one side of the base plate portion (41) along the width direction (Y), and is detachably connected with the base plate portion (41), and the side of the rotating portion (42) away from the base plate portion (41) is rotatably connected with the frame (10).
8. The electrical cabinet structure of claim 7, wherein, The rotating part (42) comprises a plurality of mounting plates (421) arranged along the height direction (Z), each of the mounting plates (421) is detachably connected with the base plate part (41), and each side of each of the mounting plates (421) away from the base plate part (41) is rotationally connected with the frame (10).
9. The electrical cabinet structure of claim 8, wherein, The rotating part (42) further comprises a plurality of reinforcing plates (422), each of the reinforcing plates (422) is arranged on one side of one of the mounting plates (421) and connected with the mounting plate (421).
10. The electrical cabinet structure of claim 7, wherein, The second plate member (40) further comprises a pulling part (43), the pulling part (43) is arranged on one side of the rotating part (42) along the length direction (X) and connected with the rotating part (42).