Lifting installation structure of integrated power distribution cabinet

Through the integrated lifting and installation structure, the combined design of the top plate, side plate and guard plate is used to achieve stable lifting of the distribution cabinet, avoid deformation and scratches, and improve installation safety and efficiency.

CN223124422UActive Publication Date: 2025-07-18QINGDAO HENGHUA COMPUTER-ROOM EQUIP & PROJECT CO LTD
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Patent Information

Application Number
CN202422310710.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-23
Publication Date
2025-07-18
Estimated Expiration
2034-09-23

AI Technical Summary

Technical Problem

The existing distribution cabinets are prone to deformation and scratches during the lifting process, and the traditional installation method is laborious and unstable, which poses safety risks.

Method used

The integrated lifting and installation structure is adopted, including the top plate, side plate, bottom plate and guard plate. It is connected by the hoisting lugs and latches to ensure that the distribution cabinet is supported by the guard plate during the hoisting process, avoiding panel contact, and is connected with the steel bracket foundation with interval support to achieve stable lifting.

Benefits of technology

It solves the deformation and scratch problems during the lifting process of distribution cabinets, improves installation stability and safety, is convenient to operate, and reduces manpower consumption.

✦ Generated by Eureka AI based on patent content.

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Abstract

According to the lifting installation structure of the integrated power distribution cabinet, a lifting assembly comprises a top plate, side plates, a bottom plate and a protection plate, and a lifting lug is installed in the middle of the top plate; the tops of the two side plates are respectively connected with the left and right sides of the top plate; one end of the bottom plate is hinged to the bottom end of one side plate, and the other end of the bottom plate is connected with the bottom end of the other side plate through a bolt. Two ends of the protective plate are respectively connected with the two side plates. According to the embodiment of the utility model, the power distribution cabinet is placed in the placing space and falls on the bottom plate, and the front and rear sides of the power distribution cabinet are supported by the protective plates, so that the stability of the power distribution cabinet in the hoisting process can be ensured; in the hoisting process, the load of the power distribution cabinet mainly acts on the bottom plate, the panel located on the top face of the power distribution cabinet does not make contact with any structure, only the panels located on the front side and the rear side make contact with the protection plate, the face contact with the protection plate is large in contact area, the load rarely acts on the protection plate, and therefore the protection plate is prevented from being scratched or deformed.
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Description

Technical Field

[0001] The utility model belongs to the technical field of hoisting devices, and particularly relates to a hoisting and installing structure for an integrated power distribution cabinet. Background Technique

[0002] In the construction of data centers and supporting mechanical and electrical installation projects, the installation of power distribution cabinets is one of the key links. The power distribution cabinet is not only heavy but also contains precision electrical components, and has high requirements for the stability and protection of the installation process. In the existing installation process, first, the steel support foundation is installed, and then the power distribution cabinet is installed on the steel support foundation and fixed by bolts. However, since the steel support foundation is generally located at a high position, about 10 to 50 centimeters away from the ground plane, and the height of the power distribution cabinet can reach two meters and it is heavy after being equipped with various electrical components, there are obvious problems with traditional installation methods such as using a lever or a pry bar to lift the power distribution cabinet onto the steel support foundation.

[0003] These problems include: laborious operation, poor installation stability, and prone to tipping accidents, resulting in personal injuries and equipment damage. In addition, when using a crowbar for fine adjustment, it is easy to cause deformation of the cabinet panel of the power distribution cabinet, affecting the appearance and function of the equipment. Therefore, although hoisting is considered a labor-saving and efficient installation method, since the panel material of the power distribution cabinet is usually thin and painted, directly setting lifting lugs on the power distribution cabinet for hoisting may cause deformation of the cabinet body. During the hoisting process, the steel wire rope pressing on the cabinet panel will also produce a large number of scratches, serious deformation, and even damage to the internal electrical components. Content of the Utility Model

[0004] In view of the deficiencies in the related technologies, the utility model provides a hoisting and installing structure for an integrated power distribution cabinet to solve the problems of easy deformation and scratching during the hoisting of the current power distribution cabinet.

[0005] The utility model provides a hoisting and installing structure for an integrated power distribution cabinet, including a hoisting assembly, and the hoisting assembly includes:

[0006] A top plate, with a lifting lug installed in the middle thereof;

[0007] Side plates, there are two side plates, and the tops of the two side plates are respectively connected to the left and right sides of the top plate to form a placement space for accommodating the power distribution cabinet between the two side plates;

[0008] A bottom plate, one end of which is hinged to the bottom end of one side plate, and the other end is connected to the bottom end of the other side plate through a bolt;

[0009] Guard plates, the two ends of which are respectively connected to the two side plates, and a plurality of guard plates are installed from bottom to top on both the front side and the rear side of the placement space, and the two guard plates at the bottommost positions on the front and rear sides are both spaced from the bottom plate.

[0010] In some of these embodiments, a connecting screw rod is fixedly arranged at the top end of the side plate. The connecting screw rod is arranged vertically and penetrates upward through the top plate. Two fixing nuts are threadedly connected to the connecting screw rod, and the two fixing nuts clamp the top plate.

[0011] In some of these embodiments, the side plate is divided into a first side plate body and a second side plate body arranged in sequence from top to bottom. Adjusting seats are arranged at the bottom end of the first side plate body and the top end of the second side plate body. An adjusting screw rod is fixedly arranged on one adjusting seat. The adjusting screw rod is arranged vertically and is threadedly connected with two adjusting nuts. The adjusting screw rod penetrates through the other adjusting seat, and the two adjusting nuts clamp this adjusting seat.

[0012] In some of these embodiments, the protection plate includes a first protection plate and a second protection plate, and the first protection plate and the second protection plate are respectively located at the front side and the rear side of the placement space;

[0013] The first protection plate and the second protection plate are arranged in pairs correspondingly. Pulling bolts are horizontally penetrated through the side plates. Two ends of each pulling bolt respectively penetrate through the end of the first protection plate and the end of the second protection plate, and pulling nuts are threadedly connected to both ends of each pulling bolt, so as to clamp and fix the power distribution cabinet placed in the placement space by the first protection plate and the second protection plate in a pulling manner.

[0014] In some of these embodiments, the protection plate is divided into a first protection plate body and two second protection plate bodies vertically connected to both ends of the first protection plate body, so that the protection plate has a U-shaped structure protruding forward or backward.

[0015] In some of these embodiments, limiting and fixing components are installed on the protection plates at the topmost front side and the topmost rear side;

[0016] The limiting and fixing component includes a limiting seat and a limiting plate. The bottom end of the limiting seat is fixedly connected to the protection plate. One end of the limiting plate is slidably installed in a limiting groove vertically opened in the limiting seat. A limiting screw rod vertically installed in the limiting groove penetrates through the limiting plate and is threadedly connected with a limiting nut, and the limiting nut is located above the limiting plate.

[0017] In some of these embodiments, the top plate includes a first top plate body and two second top plate bodies connected to both ends of the first top plate body. The two second top plate bodies are symmetrically arranged and have a C-shaped structure, so that the openings formed by them are both located on the side away from the first top plate body. A lifting lug is fixedly installed on the first top plate body.

[0018] In some of these embodiments, a plurality of hoisting components are arranged in the left-right direction and are connected in series through a connecting rod arranged in the left-right direction. A plurality of connecting rods are arranged in parallel;

[0019] The connecting rods are all threadedly connected in the first top plate body of the corresponding hoisting component and extend out through the openings of the second top plate bodies.

[0020] Based on the above technical solution, in the embodiment of the present utility model, the distribution cabinet is placed in the placement space and rests on the bottom plate. The front and rear sides of the distribution cabinet are supported by the guard plates, which can ensure the stability of the distribution cabinet during the hoisting process. During the hoisting process, the load of the distribution cabinet mainly acts on the bottom plate, and the panel on the top surface of the distribution cabinet does not contact any structure. Only the panels on the front and rear sides contact the guard plates. The contact between the two is not only a surface contact with a large contact area, but also the load rarely acts on the guard plates, thus avoiding scratches or deformation of the guard plates. A gap is provided between the bottom plate and the front and rear guard plates, enabling the steel support foundation to extend upward through the front and rear gaps and contact the bottom of the distribution cabinet, facilitating the connection between the distribution cabinet and the steel support foundation. After the connection is completed, the bottom plate can be opened by removing the pin, and the hoisting component can be withdrawn to complete the hoisting of the distribution cabinet. The operation is convenient, solving the problems of easy deformation and scratching during the current hoisting of the distribution cabinet. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] The drawings described herein are used to provide a further understanding of the present utility model and form a part of this application. The schematic embodiments of the present utility model and their descriptions are used to explain the present utility model and do not constitute an improper limitation of the present utility model. In the drawings:

[0022] Figure 1 is a schematic structural diagram of the hoisting component in the hoisting and installation structure of the integrated distribution cabinet of the present utility model;

[0023] Figure 2 is Figure 1 a partial enlarged view of;

[0024] Figure 3 is a schematic structural diagram of the hoisting and installation structure of the integrated distribution cabinet of the present utility model.

[0025] In the figure:

[0026] A, hoisting component;

[0027] 1, top plate; 11, first top plate body; 12, second top plate body;

[0028] 2, side plate; 21, first side plate body; 22, second side plate body; 23, adjusting seat; 24, adjusting screw; 25, adjusting nut; 26, connecting screw; 27, fixing nut; 28, connecting seat; 29, connecting groove;

[0029] 3, bottom plate; 31, connecting end; 32, detachable end;

[0030] 4, guard plate; 41, first guard plate; 42, second guard plate; 43, tie rod; 44, tie nut; 45, first guard plate body; 46, second guard plate body;

[0031] 5. Lifting lug; 6. Installation space; 7. Pin;

[0032] 8. Limit fixing component; 81. Limit seat; 82. Limit plate; 83. Limit groove; 84. Limit screw; 85. Limit nut;

[0033] 9. Connecting rod. Detailed implementation manner

[0034] Next, the technical solutions in the embodiments will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative work shall fall within the protection scope of the present invention.

[0035] In the description of the present invention, it should be understood that the terms "center", "horizontal", "longitudinal", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation of the present invention.

[0036] The terms "first", "second", "third" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first", "second", "third" may explicitly or implicitly include one or more of such features.

[0037] In the description of the present invention, it should be noted that unless otherwise clearly specified and limited, the terms "installation", "connection", "connection" should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or an integral connection; it may be a direct connection or an indirect connection through an intermediate medium, and it may be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations.

[0038] As Figure 1 shown, in a schematic embodiment of the lifting and installation structure of the integrated power distribution cabinet of the present invention, the lifting and installation structure of the integrated power distribution cabinet includes a lifting component A, and the lifting component A includes a top plate 1, a side plate 2, a bottom plate 3, and a guard plate 4.

[0039] A lifting lug 5 is installed in the middle of the top plate 1. There are two side plates 2. The tops of the two side plates 2 are respectively connected to the left and right sides of the top plate 1, so that the two side plates 2 are arranged at intervals left and right, and a placement space 6 for accommodating the power distribution cabinet is formed between them. One end of the bottom plate 3 is hinged to the bottom end of one side plate 2, and the other end is connected to the bottom end of the other side plate 2 through a bolt 7. Both ends of the guard plate 4 are respectively connected to the two side plates 2. A plurality of guard plates 4 are installed from bottom to top on both the front side and the rear side of the placement space 6, and the two guard plates 4 at the bottom end on both the front and rear sides are arranged at intervals from the bottom plate 3.

[0040] Both ends of the bottom plate 3 are respectively a connection end 31 and a detachable end 32. The connection end 31 is hinged to the corresponding side plate 2, and the detachable end 32 is connected to the side plate 2 through a bolt 7. Pull out the bolt 7, and the connection between the detachable end 32 and the corresponding side plate 2 can be disconnected, so that the bottom plate 3 is turned downwards to the vertical direction, and the bottom of the lifting assembly A is opened. Lower the lifting assembly A onto the power distribution cabinet, so that the power distribution cabinet enters the placement space 6 through the opened bottom.

[0041] Since the power distribution cabinet is placed on two support structures arranged at intervals front and back, the support structures raise the power distribution cabinet, so that the bottom plate 3 can be turned over in the space between the two support structures. Thus, after the power distribution cabinet is placed in the placement space 6, turn up the bottom plate 3, reconnect its detachable end 32 to the side plate 2 through the bolt 7, close the bottom of the lifting assembly A, and at this time the bottom plate 3 is attached to the bottom surface of the power distribution cabinet, and the front and rear guard plates 4 are both attached to the side walls of the power distribution cabinet, so that the lifting assembly A stably supports the power distribution cabinet.

[0042] The lifting equipment lifts the lifting assembly A through the lifting lug 5, so that the power distribution cabinet is lifted accordingly, and it is transported above the corresponding steel support foundation. The lifting equipment lowers the lifting assembly A, and the power distribution cabinet descends accordingly. The convex parts on the front side and the rear side of the steel support foundation extend into the lifting assembly A through the intervals between the bottom plate 3 and the front and rear guard plates 4, so that the front side and the rear side of the bottom of the power distribution cabinet respectively fall on the two convex parts in front of and behind the steel support foundation. At this time, the convex parts can be fixedly connected to the power distribution cabinet, and the power distribution cabinet is fixedly installed on the steel support foundation.

[0043] Remove the bolt 7 again, turn down the bottom plate 3 through the space between the two convex parts to the vertical direction, open the bottom of the lifting assembly A. At this time, lift the lifting assembly A, and the power distribution cabinet can be taken out of the placement space 6, completing the separation of the lifting assembly A from the power distribution cabinet, so as to facilitate the accommodation and lifting of the next power distribution cabinet.

[0044] In order to achieve the detachable connection between the bolt 7 for the bottom plate 3 and the side plate 2, a connection seat 28 is provided at the bottom of the side plate 2. The connection seat is horizontally provided with a first pin hole, and the detachable end 32 is horizontally provided with a second pin hole. When the bottom plate 3 is horizontal, the first pin hole and the second pin hole are aligned, and the bolt 7 passes through the first pin hole and the second pin hole at the same time, that is, the bottom plate 3 is limited and fixed by the bolt 7. Pull out the bolt 7, and the limit fixation can be eliminated, so that the bottom plate 3 can be turned downward from the horizontal position. In order to improve the stability of the bottom plate 3, the connection seat 28 is provided with a connection groove 29. When the bottom plate 3 is horizontal, the detachable end 32 is located in the connection groove. The second pin hole is divided into two sections, which are respectively located on both sides of the connection groove. When the bolt 7 passes through the first pin hole and the second pin hole at the same time, both ends of the bolt 7 can be supported by the connection seat, improving the stability of the bolt 7, and further improving the stability of the bottom plate 3, so that it can stably support the power distribution cabinet. In order to prevent the bolt 7 from falling off during the lifting process, the bolt can adopt a bolt structure with a head at one end, and a nut is installed at the other end, and it is limited in the pin hole by the head and the nut.

[0045] In the above-mentioned illustrative embodiment, the lifting assembly A has a placement space 6. When the power distribution cabinet is placed in the placement space 6, it lands on the bottom plate 3, and the front and rear sides are supported by the guard plates 4, which can ensure the stability of the power distribution cabinet during the lifting process; during the lifting process, the load of the power distribution cabinet mainly acts on the bottom plate 3, and the panel on the top surface of the power distribution cabinet does not contact any structure, only the panels on the front and rear sides contact the guard plates 4. The contact between the two is not only surface contact with a large contact area, but also the load rarely acts on the guard plates 4, thus avoiding scratches or deformation of the guard plates 4; a gap is provided between the bottom plate 3 and the front and rear guard plates 4, so that the steel support foundation can extend upward through the front and rear gaps and contact the bottom of the power distribution cabinet, facilitating the connection between the power distribution cabinet and the steel support foundation. After the connection is completed, the bottom plate 3 can be opened by removing the bolt 7, the lifting assembly A can be withdrawn, and the lifting of the power distribution cabinet is completed. The operation is convenient, and the problems of easy deformation and scratching during the current lifting of the power distribution cabinet are solved.

[0046] In some embodiments, a connection screw 26 is fixedly provided at the top end of the side plate 2. The connection screw 26 is vertically arranged and passes through the top plate 1 upward. Two fixing nuts 27 are threadedly connected to the connection screw 26, and the two fixing nuts 27 clamp the top plate 1, thereby positioning and fixing the connection screw 26 and the top plate 1.

[0047] Rotate the two fixing nuts 27 to adjust their positions in the length direction of the connection screw 26, and the length of the connection screw 26 extending upward relative to the top surface of the top plate 1 can be adjusted, so that the side plate 2 can be lifted and lowered, thereby adjusting the distance between the bottom plate 3 and the top plate 1, changing the height range of the power distribution cabinet that the lifting assembly A can accommodate, and enhancing the applicable range of the power distribution cabinet lifting.

[0048] In some embodiments, the side plate 2 is divided into a first side plate body 21 and a second side plate body 22 arranged in sequence from top to bottom. Adjusting seats 23 are provided at the bottom end of the first side plate body 21 and the top end of the second side plate body 22. An adjusting screw rod 24 is fixedly provided on one adjusting seat 23. The adjusting screw rod 24 is arranged vertically and is threadedly connected with two adjusting nuts 25. The adjusting screw rod 24 passes through the other adjusting seat 23, and the two adjusting nuts 25 clamp the adjusting seat 23, thereby positioning and fixing the adjusting screw rod 24.

[0049] The side plate 2 is divided into two ends and connected by the adjusting screw rod 24 and the adjusting nuts 25. Thus, when the two adjusting nuts 25 are rotated, their positions in the length direction of the adjusting screw rod 24 can be adjusted, and the length of the adjusting screw rod 24 extending upward or downward relative to the corresponding adjusting seat 23 can be adjusted, changing the distance between the first side plate body 21 and the second side plate body 22, thereby changing the overall length of the side plate 2, and further realizing the adjustment of the distance between the bottom plate 3 and the top plate 1, changing the height range of the distribution cabinet that the lifting assembly A can accommodate, and enhancing the applicable range of the distribution cabinet lifting.

[0050] The side plate 2 is provided with a connecting screw rod 26, and the side plate 2 can be adjusted in length, so that the lengths of the connecting screw rod 26 and the adjusting screw rod 24 do not need to be too long, which can ensure that the distance between the bottom plate 3 and the top plate 1 can be adjusted within a sufficient range, improve the applicability of the distribution cabinet, and avoid the problem of easy radial deformation caused by the too long length of the screw rod component.

[0051] In some embodiments, the protection plate 4 includes a first protection plate 41 and a second protection plate 42, and the first protection plate 41 and the second protection plate 42 are respectively located at the front side and the rear side of the placement space 6.

[0052] The first protection plate 41 and the second protection plate 42 are arranged in pairs. Pulling screw rods 43 are horizontally penetrated through the side plates 2. The two ends of the pulling screw rods 43 respectively penetrate through the ends of the first protection plate 41 and the ends of the second protection plate 42, and are both threadedly connected with pulling nuts 44. The two pulling nuts 44 are respectively attached to the front side surface of the first protection plate 4 and the rear side surface of the second protection plate 4. By rotating the two pulling nuts 44 on the same pulling screw rod 43 and reducing the distance between them, the first protection plate 4 and the second protection plate 4 can be connected by pulling and clamp and fix the distribution cabinet placed in the placement space 6, thereby improving the stability of the distribution cabinet during the lifting process.

[0053] Rotating the two tension nuts 44 on the same tension screw 43 can adjust the distance between them, thereby changing the distance between the first guard plate 41 and the second guard plate 42, matching the different sizes of various distribution cabinets in the front-back direction, and further improving the applicable range. In addition, by increasing the distance between the two tension nuts 44, the distance between the first guard plate 41 and the second guard plate 42 is further increased. When the distribution cabinet is moved into or out of the placement space 6, it can prevent the guard plate 4 from sliding on the front and back surfaces of the distribution cabinet, thus preventing the surface of the distribution cabinet from being worn due to this.

[0054] In some embodiments, the guard plate 4 is divided into a first guard plate body 45 and two second guard plate bodies 46 vertically connected to both ends of the first guard plate body 45, so that the guard plate 4 forms a U-shaped structure protruding forward or backward.

[0055] The guard plate 4 has a U-shaped structure, protruding forward or backward, increasing the length of the placement space 6 in the front-back direction, enhancing the accommodation space of the distribution cabinet, and facilitating the placement and fixation of the distribution cabinet.

[0056] In some embodiments, as Figures 1 to 2 shown, the guard plates 4 at the topmost front side and the topmost rear side are both provided with limit fixing components 8.

[0057] The limit fixing component 8 includes a limit seat 81 and a limit plate 82. The bottom end of the limit seat 81 is fixedly connected to the guard plate 4. One end of the limit plate 82 is slidably installed in a limit groove 83 vertically opened in the limit seat 81. A limit screw 84 vertically installed in the limit groove 83 passes through the limit plate 82 and is threadedly connected with a limit nut 85. The limit nut 85 is located above the limit plate 82.

[0058] A plurality of limit fixing components 8 are installed in the left-right direction. After the distribution cabinet is placed in the placement space 6, its bottom rests on the bottom plate 3, and it is clamped and fixed by the guard plates 4 on the front and rear sides. The limit plates 82 of each limit fixing component 8 rest on the top surface of the distribution cabinet. Rotating the limit nut 85 to press the corresponding limit plate 82 downward, so that the limit plate 82 presses downward on the top surface of the distribution cabinet, performing limit fixation on the distribution cabinet in the up-down direction, preventing the distribution cabinet from moving up and down during the lifting process, improving the stability during the lifting process, and avoiding wear caused by the up-and-down movement and sliding of its surface on the surface of the guard plate 4.

[0059] In some embodiments, the top plate 1 includes a first top plate body 11 and two second top plate bodies 12 connected to both ends of the first top plate body 11. The two second top plate bodies 12 are symmetrically arranged and have a C-shaped structure, so that the openings formed by them are all located on the side away from the first top plate body 11. The lifting lugs 5 are fixedly installed on the first top plate body 11.

[0060] The two sides of the top plate 1 are in a C-shaped structure, making the structures on both sides hollow. While ensuring its own structural strength, the weight of the component is reduced, and the load on the lifting equipment is decreased.

[0061] In some embodiments, such as Figure 3 shown, a plurality of hoisting assemblies A are arranged in the left-right direction and are connected in series by a connecting rod 9 arranged in the left-right direction, and a plurality of connecting rods 9 are arranged in parallel.

[0062] The connecting rods 9 are all threadedly connected to the first top plate body 11 of the corresponding hoisting assembly A and extend out through the opening of the second top plate body 12. The C-shaped shape of the second top plate 1 body ensures the extension of the connecting rods 9.

[0063] By connecting a plurality of hoisting assemblies A through the connecting rods 9, the positional relationship between adjacent hoisting assemblies A can be fixed, so that a plurality of distribution cabinets can be respectively placed and fixed in the placement space 6 of the corresponding hoisting assembly A. During the hoisting and installation process, the positional relationship between the distribution cabinets is fixed, and they can fall onto each steel bracket foundation synchronously, realizing synchronous positioning and installation, and improving the operation efficiency.

[0064] Finally, it should be noted that the various embodiments in this specification are described in a progressive manner. Each embodiment focuses on the differences from other embodiments. The same or similar parts among the various embodiments can be referred to each other.

[0065] The above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit it; although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that: still, the specific implementation manners of the present invention can be modified or some technical features can be equivalently replaced; without departing from the spirit of the technical solutions of the present invention, they should all be covered within the scope of the technical solutions claimed by the present invention.

Claims

1. A hoisting and installation structure for an integrated power distribution cabinet, characterized in that, It includes a hoisting assembly, and the hoisting assembly includes: a top plate with a lifting lug installed in the middle thereof; side plates, there are two side plates, the tops of the two side plates are respectively connected to the left and right sides of the top plate to form a placement space for accommodating a power distribution cabinet between the two side plates; a bottom plate, one end of which is hinged to the bottom end of one of the side plates, and the other end is connected to the bottom end of the other side plate through a bolt; guard plates, both ends of which are respectively connected to the two side plates, a plurality of guard plates are installed from bottom to top on both the front side and the rear side of the placement space, and the two guard plates at the bottom end on the front and rear sides are both spaced from the bottom plate.

2. The hanging and installation structure of the integrated power distribution cabinet according to claim 1, wherein A connecting screw rod is fixedly arranged at the top end of the side plate, the connecting screw rod is arranged vertically and penetrates through the top plate upwards, and two fixing nuts are threadedly connected to the connecting screw rod, and the two fixing nuts clamp the top plate.

3. The hanging and installation structure of the integrated power distribution cabinet according to claim 1 or 2, characterized in that, The side plate is divided into a first side plate body and a second side plate body arranged in sequence from top to bottom, adjusting seats are arranged at the bottom end of the first side plate body and the top end of the second side plate body, an adjusting screw rod is fixedly arranged on one of the adjusting seats, the adjusting screw rod is arranged vertically and is threadedly connected with two adjusting nuts, the adjusting screw rod penetrates through the other adjusting seat, and the two adjusting nuts clamp the adjusting seat.

4. The hanging and installation structure of the integrated power distribution cabinet according to claim 1, wherein The guard plate includes a first guard plate and a second guard plate, and the first guard plate and the second guard plate are respectively located on the front side and the rear side of the placement space; The first guard plate and the second guard plate are arranged in pairs, a tension rod is horizontally penetrated through the side plate, both ends of the tension rod respectively penetrate through the end of the first guard plate and the end of the second guard plate, and tension nuts are threadedly connected thereto to clamp and fix the power distribution cabinet placed in the placement space by the first guard plate and the second guard plate in a tensioning manner.

5. The hanging and installation structure of the integrated power distribution cabinet according to claim 1, characterized in that, The guard plate is divided into a first guard plate body and two second guard plate bodies vertically connected to both ends of the first guard plate body to make the guard plate in a U-shaped structure protruding forward or backward.

6. The hanging and installation structure of the integrated power distribution cabinet according to claim 1, characterized in that, Limit fixing components are installed on the guard plates at the topmost front side and the topmost rear side; The limit fixing component includes a limit seat and a limit plate, the bottom end of the limit seat is fixedly connected to the guard plate, one end of the limit plate is slidably installed in a limit groove vertically opened in the limit seat, a limit screw rod vertically installed in the limit groove penetrates through the limit plate and is threadedly connected with a limit nut, and the limit nut is located above the limit plate.

7. The hanging and installation structure of the integrated power distribution cabinet according to claim 1, characterized in that, The top plate includes a first top plate body and two second top plate bodies connected to both ends of the first top plate body, the two second top plate bodies are symmetrically arranged and in a C-shaped structure, so that the openings formed by them are both located on the side away from the first top plate body, and the lifting lug is fixedly installed on the first top plate body.

8. The hanging and installation structure of the integrated power distribution cabinet according to claim 7, characterized in that, A plurality of the hoisting assemblies are arranged in the left-right direction and are connected in series through a connecting rod arranged in the left-right direction, and a plurality of the connecting rods are arranged in parallel; The connecting rods are all threadedly connected in the first top plate body of the corresponding hoisting assembly and extend out through the openings of the second top plate body.