Power distribution cabinet with detachable side plate structure
By designing a combined structure of curved plates, drawstrings, slide chutes and clamps in the distribution cabinet, the rapid fixing and disassembly of the side panels of the distribution cabinet is solved, and the problem of the non-detachable side panels of the traditional distribution cabinets is improved, and maintenance efficiency and safety performance are improved.
Patent Information
- Application Number
- CN202422060807.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-24
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-08-24
AI Technical Summary
The side panels of traditional power distribution cabinets are not removable, which requires overall removal during equipment failure or maintenance, which is time-consuming and labor-intensive and increases risks. The existing removable side panel structure is cumbersome to operate and cannot be quickly disassembled.
A distribution cabinet with a detachable side panel structure is designed, and the side panels are quickly fixed and disassembled through the combination of curved plates, drawstrings, slide chutes and clamps. The arc plate is screwed into the strip groove and bent the draw rope. The skateboard movement drives the card block into the connection plate to achieve the fixing of the side plate; when opening the door plate, the arc plate is separated from the draw rope, and the skateboard movement separates the card block from the connection plate, eliminating the restrictions on the side plate, making it easy to disassemble quickly.
The rapid disassembly and fixation of the side panels of the distribution cabinet is realized, which improves the maintenance efficiency and safety performance of the equipment and reduces the probability of accidents.
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Figure CN222953575U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the field of power distribution cabinets, and in particular relates to a power distribution cabinet with a detachable side plate structure. Background Art
[0002] A distribution cabinet is a device used to control and distribute electricity. Its main function is to receive, distribute and control the supply of electricity to various electrical equipment. Distribution cabinets play a vital role in electrical engineering and industrial automation and can be divided into many types.
[0003] In the traditional design of distribution cabinets, although the non-detachable side panel structure ensures the stability and safety of the cabinet to a certain extent, it also has obvious limitations. When a fault occurs inside the equipment or regular maintenance is required, if the side panel is non-detachable, the entire distribution cabinet or related components need to be removed or moved as a whole. This process is not only time-consuming and labor-intensive, but may also introduce additional risks due to complex operations, thereby affecting the normal operation and maintenance efficiency of the equipment. In addition, the existing detachable side panel structure of the distribution cabinet is cumbersome to operate, and the side panel cannot be quickly disassembled.
[0004] Therefore, a new structure is needed to solve the above problems. Utility Model Content
[0005] In view of the deficiencies in the prior art, the utility model aims to provide a power distribution cabinet with a detachable side panel structure to solve the problems raised in the above-mentioned background technology.
[0006] The utility model is realized by the following technical scheme: a power distribution cabinet with a detachable side panel structure, comprising: a bottom panel, a top panel, a support panel and side panels, two groups of support panels are symmetrically installed on the front side between the top panel and the bottom panel, a back panel is provided on the rear side of the bottom of the top panel, an anti-slip assembly is connected between the support panel and the back panel, the support panel is hinged with a door panel through a hinge, an arc panel is fixed on the rear surface of the door panel, and a clamping groove is provided on one end of the arc panel away from the door panel;
[0007] The anti-slip assembly includes a horizontal plate and a strip groove, a strip groove and a slide groove 1 are formed on the front side of the left surface of the horizontal plate, a slide groove 2 is formed on the rear side of the left surface of the horizontal plate, a spring and a slide plate 1 are arranged inside the slide groove 1, the front surface of the slide plate 1 is connected to the inside of the strip groove by a pull rope 1, and a block is arranged on the right side of the front surface of the slide plate 1;
[0008] A slide plate 2 is provided inside the second slide groove, and the slide plate 2 is connected to the rear surface of the pull rope 1 through the second pull rope. A side plate is inserted between the support plate and the back plate, and a connecting plate is installed on the inner surface of the side plate. The connecting plate penetrates the front and rear surfaces to form a square groove.
[0009] As a preferred embodiment, a strip groove and a slide groove 1 are formed on the front side of the left surface of the horizontal plate to the right, and the slide groove 1 is opened behind the strip groove, and the inner wall of the rear side of the strip groove penetrates into the slide groove 1 to form a circular hole 1. The left side of the front surface of the slide plate 1 is connected to the inner wall of the front side of the slide groove 1 through a spring 1, and the left side of the front surface of the slide plate 1 is connected to the inner wall of the front side of the strip groove 1 through a pull rope 1. The spring 1 is installed on the outside of the pull rope 1, and through the strip groove, the arc plate can penetrate the horizontal plate when it rotates, thereby squeezing the pull rope 1. The opening of the circular hole 1 can facilitate the pull rope 1 to move back and forth inside the horizontal plate, and at the same time achieve the traction of the slide plate 1.
[0010] As a preferred embodiment, the inner wall of the rear side of the slide groove one penetrates into the interior of the slide groove two to form a circular hole two, the left side of the front surface of the skateboard two is connected to the inner wall of the front side of the slide groove two through a spring two, the spring two is mounted on the outside of the pull rope two, and the left side of the front surface of the skateboard two is connected to the left side of the rear surface of the skateboard one through the pull rope two. The opening of the circular hole two can facilitate the pull rope two to move back and forth inside the horizontal board, and at the same time facilitate the pulling of skateboard one by skateboard two.
[0011] As a preferred embodiment, grooves are formed on the top and bottom of slide groove one and on the top and bottom of slide groove two, and protrusions are installed on the upper and lower surfaces of slide plate one and on the upper and lower surfaces of slide plate two, and the protrusions are correspondingly assembled inside the grooves, and a clamping block is connected to the right side of the front surface of slide plate one and slide plate two, and the setting of the groove and the protrusion can enable slide plate one and slide plate two to move horizontally in slide groove one and slide groove two respectively.
[0012] As a preferred embodiment, four groups of anti-slip components are provided, and the four groups of anti-slip components are symmetrically installed on the upper and lower sides between the back plate and the two groups of support plates, so as to improve the fixing effect of the side plates.
[0013] As a preferred embodiment, arc-shaped plates are provided on both upper and lower sides of the rear surface of the door panel adjacent to the support plate, and the door panel is divided into two groups correspondingly connected to the two groups of support plates.
[0014] As a preferred embodiment, the inner surfaces of the side panels are connected to sealing plates, and the side panels are divided into two groups and symmetrically inserted between the back panel and the two groups of support plates. U-shaped handles are also provided on the outside of the side panels. Four groups of connecting plates flush with the corresponding card blocks are fixed to the inner surfaces of the two groups of side panels, and the eight groups of connecting plates penetrate the front and rear surfaces to form square grooves.
[0015] After adopting the above technical scheme, the beneficial effects of the utility model are as follows: the setting of the arc plate, when the horizontal plate and the side plate are respectively assembled between the support plate and the back plate by fixing and inserting, the arc plate is screwed into the strip groove to bend the pull rope 1, and the slide plate 1 and the slide plate 2 are pulled to move by the pull rope 1, and the card blocks connected to the surfaces of the slide plate 1 and the slide plate 2 can be inserted into the inside of the connecting plate on the surface of the side plate, so as to fix the side plate, and can prevent non-staff from pulling out the side plate when the door plate is closed, thereby improving its safety performance and reducing the probability of accidents. At the same time, when the door plate is opened, the arc plate is separated from the pull rope 1, and the slide plate 1 and the slide plate 2 are pushed to move by the spring 1 and the spring 2, so that the card blocks are separated from the corresponding connecting plates, so that the restriction on the side plate can be cancelled when the door plate is opened, which is convenient for the staff to quickly pull out the side plate, realize the inspection and maintenance of the internal electrical equipment, and improve the maintenance efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative labor.
[0017] Figure 1 The utility model is a schematic diagram of the overall structure of a power distribution cabinet with a detachable side panel structure.
[0018] Figure 2 The utility model is a plan view of a power distribution cabinet with a detachable side panel structure.
[0019] Figure 3 The utility model is a schematic structural diagram of an anti-dropping component in a power distribution cabinet with a detachable side panel structure.
[0020] Figure 4 The utility model is a structural schematic diagram of an arc plate in a power distribution cabinet with a detachable side plate structure.
[0021] In the figure, 100-bottom plate, 110-top plate, 200-back plate, 300-support plate;
[0022] 400-anti-slip assembly, 401-horizontal plate, 410-strip groove, 420-pull rope 1, 430-slide groove 1, 440-spring 1, 450-slide plate 1, 451-block, 460-pull rope 2, 470-spring 2, 480-slide groove 2, 490-slide plate 2;
[0023] 500-door panel, 510-curved panel, 520-clip groove;
[0024] 600-side plate, 610-sealing plate, 620-connecting plate, 621-square groove, etc. DETAILED DESCRIPTION
[0025] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0026] See also Figures 1 to 4 The utility model provides a technical solution: a power distribution cabinet with a detachable side panel structure, comprising: a bottom plate 100, a top plate 110, a support plate 300 and a side plate 600, two groups of support plates 300 are symmetrically installed on the front side between the top plate 110 and the bottom plate 100, a back plate 200 is provided on the rear side of the bottom of the top plate 110, an anti-slip assembly 400 is connected between the support plate 300 and the back plate 200, the support plate 300 is hinged with a door plate 500 through a hinge, an arc plate 510 is fixed on the rear surface of the door plate 500, and a clamping groove 520 is provided at one end of the arc plate 510 away from the door plate 500;
[0027] The anti-slip assembly 400 includes a horizontal plate 401 and a strip groove 410. The strip groove 410 and a slide groove 1 430 are formed on the front side of the left surface of the horizontal plate 401. A slide groove 2 480 is formed on the rear side of the left surface of the horizontal plate 401. A spring and a slide plate 1 450 are arranged inside the slide groove 1 430. The front surface of the slide plate 1 450 is connected to the inside of the strip groove 410 through a pull rope 1 420. A block 451 is arranged on the right side of the front surface of the slide plate 1 450.
[0028] A slide plate 490 is provided inside the slide groove 480, and the slide plate 490 is connected to the rear surface of the pull rope 420 through the pull rope 460. A side plate 600 is inserted between the support plate 300 and the back plate 200, and a connecting plate 620 is installed on the inner surface of the side plate 600. The connecting plate 620 passes through the front and rear surfaces to form a square groove 621.
[0029] A strip groove 410 and a slide groove 430 are formed on the front side of the left surface of the horizontal plate 401 to the right, and the slide groove 430 is opened at the rear of the strip groove 410. The inner wall of the rear side of the strip groove 410 penetrates into the slide groove 430 to form a round hole 1. The left side of the front surface of the slide plate 450 is connected to the inner wall of the front side of the slide groove 430 through a spring 440. The left side of the front surface of the slide plate 450 is connected to the inner wall of the front side of the strip groove 410 through a pull rope 420. The spring 440 is mounted on the outside of the pull rope 420. Through the strip groove 410, the arc plate 510 can penetrate the horizontal plate 401 when rotating, so as to squeeze the pull rope 420. The opening of the round hole 1 can facilitate the pull rope 420 to move back and forth inside the horizontal plate 401, and at the same time, the slide plate 450 can be pulled.
[0030] The inner wall at the rear side of the slide groove 430 penetrates through the interior of the slide groove 480 to form a circular hole 2. The left side of the front surface of the slide plate 490 is connected to the inner wall at the front side of the slide groove 480 through a spring 470. The spring 470 is mounted on the outside of the pull rope 460. The left side of the front surface of the slide plate 490 is connected to the left side of the rear surface of the slide plate 1 450 through the pull rope 460. The opening of the circular hole 2 can facilitate the pull rope 460 to move back and forth inside the horizontal plate 401, and at the same time facilitate the slide plate 1 450 to pull the slide plate 2 490.
[0031] Grooves are formed on the top and bottom of slide groove 1 430 and the top and bottom of slide groove 2 480. Bumps are installed on the upper and lower surfaces of slide plate 1 450 and the upper and lower surfaces of slide plate 2 490. The bumps are correspondingly assembled in the grooves. Blocks 451 are connected to the right sides of the front surfaces of slide plates 1 450 and slide plate 2 490. The setting of the grooves and the bumps enables slide plate 1 450 and slide plate 2 490 to move horizontally in slide groove 1 430 and slide groove 2 480 respectively.
[0032] Four groups of anti-slip components 400 are provided, and the four groups of anti-slip components 400 are symmetrically installed on the upper and lower sides between the back plate 200 and the two groups of support plates 300, so as to improve the fixing effect of the side plates 600.
[0033] Arc plates 510 are provided on both upper and lower sides of the rear surface of the door panel 500 adjacent to the support plate 300 . The door panel 500 is divided into two groups and connected to the two groups of support plates 300 .
[0034] The inner surfaces of the side panels 600 are connected to sealing plates 610. The side panels 600 are divided into two groups and symmetrically inserted between the back panel 200 and the two groups of support panels 300. A U-shaped handle is also provided on the outside of the side panels 600. Four groups of connecting plates 620 flush with the corresponding blocks 451 are fixed to the inner surfaces of the two groups of side panels 600. The eight groups of connecting plates 620 penetrate the front and rear surfaces to form square grooves 621.
[0035] Embodiment 1: In actual use, when the door panel 500 is in a closed state and the side panel 600 is inserted between the support panel 300 and the back panel 200, the curved plate 510 on the surface of the door panel 500 squeezes the pull rope 420 into the clamping groove 520 and pushes it to bend toward one side of the side panel 600. The clamping groove 520 can prevent the pull rope 420 from sliding off. During the bending process of the pull rope 420, the slide plate 450 is pulled forward in the slide groove 430. During the moving process, the slide plate 450 When the pull rope 460 is pulled, the slide plate 490 moves forward in the slide groove 480, and the slide plates 1 450 and 490 move forward and stick to the corresponding connecting plates 620 respectively. At this time, the block 451 connected to the surface of the slide plates 1 450 and 490 is inserted into the corresponding square groove 621 to fix the side panel 600. This can prevent non-staff from pulling out the side panel 600 when the door panel 500 is closed, thereby improving its safety performance and reducing the probability of accidents.
[0036] Embodiment 2: When a fault occurs inside the equipment or regular maintenance is required, the staff first pulls the door panel 500 outward, and the door panel 500 rotates around the support plate 300 through the hinge. The door panel 500 drives the arc plate 510 to rotate synchronously during the rotation process. At this time, the arc plate 510 gradually escapes from the strip groove 410, thereby canceling the squeezing of the pull rope 1 420, and then the spring 1 440 and the spring 2 470 are restored from the compressed state, respectively pushing the slide plate 1 450 and the slide plate 2 490 to move backward, and the slide plate 510 is moved backward. When plate 1 450 and slide plate 2 490 move backward, they respectively drive the surface blocks 451 thereof to separate from the corresponding square grooves 621, and then the side panel 600 can be pulled outward through the U-shaped handle on the right side thereof, so as to separate the side panel 600 from the support panel 300 and the back panel 200. The setting of the arc-shaped panel 510 can remove the restriction on the side panel 600 when the door panel 500 is opened, so that the staff can quickly pull out the side panel 600, realize the inspection and maintenance of the internal electrical equipment, and improve the maintenance efficiency.
[0037] The above are only preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.
Claims
1. A power distribution cabinet with a detachable side panel structure, comprising: A bottom plate (100), a top plate (110), a support plate (300) and a side plate (600), wherein two groups of support plates (300) are symmetrically installed on the front side between the top plate (110) and the bottom plate (100), and a back plate (200) is provided on the rear side of the bottom of the top plate (110), characterized in that an anti-slip assembly (400) is connected between the support plate (300) and the back plate (200), the support plate (300) is hingedly connected to a door plate (500) via a hinge, an arc plate (510) is fixed on the rear surface of the door plate (500), and a clamping groove (520) is provided at one end of the arc plate (510) away from the door plate (500); The anti-slip assembly (400) comprises a horizontal plate (401) and a strip groove (410), the horizontal plate (401) has a strip groove (410) and a slide groove 1 (430) formed on the front side of the left surface, the horizontal plate (401) has a slide groove 2 (480) formed on the rear side of the left surface, the slide groove 1 (430) is provided with a spring and a slide plate 1 (450) inside, the front surface of the slide plate 1 (450) is connected to the inside of the strip groove (410) via a pull rope 1 (420), and a clamping block (451) is provided on the right side of the front surface of the slide plate 1 (450); A second slide plate (490) is provided inside the second slide groove (480), and the second slide plate (490) is connected to the rear surface of the first pull rope (420) through the second pull rope (460). A side plate (600) is inserted between the support plate (300) and the back plate (200), and a connecting plate (620) is installed on the inner surface of the side plate (600), and the connecting plate (620) penetrates the front and rear surfaces to form a square groove (621).
2. A power distribution cabinet with a detachable side panel structure as claimed in claim 1, characterized in that: The front side of the left surface of the horizontal plate (401) is penetrated to the right to form a strip groove (410) and a slide groove 1 (430), the opening position of the slide groove 1 (430) is located behind the strip groove (410), and the rear inner wall of the strip groove (410) penetrates to the inside of the slide groove 1 (430) to form a round hole 1, the left side of the front surface of the slide plate 1 (450) is connected to the front inner wall of the slide groove 1 (430) through a spring 1 (440), and the left side of the front surface of the slide plate 1 (450) is connected to the front inner wall of the strip groove (410) through a pull rope 1 (420), and the spring 1 (440) is sleeved on the outside of the pull rope 1 (420).
3. A power distribution cabinet with a detachable side panel structure as claimed in claim 2, characterized in that: The rear inner wall of the slide groove one (430) penetrates into the interior of the slide groove two (480) to form a circular hole two, the left side of the front surface of the slide plate two (490) is connected to the front inner wall of the slide groove two (480) through the spring two (470), the spring two (470) is mounted on the outside of the pull rope two (460), and the left side of the front surface of the slide plate two (490) is connected to the left side of the rear surface of the slide plate one (450) through the pull rope two (460).
4. A power distribution cabinet with a detachable side panel structure as claimed in claim 3, characterized in that: The top and bottom of the slide groove 1 (430) and the top and bottom of the slide groove 2 (480) are formed with grooves, and the upper and lower surfaces of the slide plate 1 (450) and the upper and lower surfaces of the slide plate 2 (490) are installed with protrusions, which are correspondingly assembled inside the grooves, and the right sides of the front surfaces of the slide plate 1 (450) and the slide plate 2 (490) are connected with a clamping block (451).
5. A power distribution cabinet with a detachable side panel structure as claimed in claim 1 or 4, characterized in that: Four groups of the anti-slip components (400) are provided, and the four groups of the anti-slip components (400) are symmetrically installed on the upper and lower sides between the back plate (200) and the two groups of support plates (300).
6. A power distribution cabinet with a detachable side panel structure as claimed in claim 5, characterized in that: Arc-shaped plates (510) are provided on both upper and lower sides of the rear surface of the door panel (500) adjacent to the support plate (300), and the door panel (500) is divided into two groups and connected to the two groups of support plates (300) accordingly.
7. A power distribution cabinet with a detachable side panel structure as claimed in claim 6, characterized in that: The inner surfaces of the side panels (600) are connected to sealing plates (610). The side panels (600) are divided into two groups and symmetrically inserted between the back panel (200) and the two groups of support panels (300). The outer sides of the side panels (600) are also provided with U-shaped handles. Four groups of connecting plates (620) flush with the corresponding clamping blocks (451) are fixed to the inner surfaces of the two groups of side panels (600). The eight groups of connecting plates (620) penetrate the front and rear surfaces to form square grooves (621).
Citation Information
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