High-protection power distribution cabinet

The high-protection power distribution cabinet that blocks the exhaust holes of the drainage mechanism, drainage mechanism discharges rainwater and cleanses the cooling mechanism, solves the problem of rainwater in heavy rain weather, and achieves efficient protection and stable operation of the distribution cabinet.

CN120581968AInactive Publication Date: 2025-09-02HUAIAN HONGZHEN INTELLIGENT EQUIP CO LTD
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Patent Information

Application Number
CN202510708321.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-29
Publication Date
2025-09-02
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing power distribution cabinets are prone to affect the protective effect due to rainwater penetration in heavy rainy weather. The existing sealing device cannot effectively seal the exhaust holes, resulting in damage to the inside of the cabinet.

Method used

A high-protection power distribution cabinet is designed, including a lifting mechanism, a drainage mechanism and a cleaning mechanism. The exhaust hole is blocked through the lifting mechanism, the drainage mechanism discharges rainwater, the cleaning mechanism cools down, and the combined structure of the exhaust part and the filter net prevents rainwater from penetration, and keeps the interior dry and stable through the condensing component and the scraping component.

Benefits of technology

Effectively prevent rainwater from penetration, improve cabinet protection efficiency, maintain internal dryness and stability, and ensure the normal operation of the distribution device in heavy rainy weather.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of power distribution cabinets, and discloses a high-protection power distribution cabinet which comprises a power distribution mechanism, a lifting mechanism and a drainage mechanism, a power distribution space is arranged in the power distribution mechanism and used for loading a power distributor, and the lifting mechanism is located in the power distribution mechanism and used for blocking circulating gas. The drainage mechanism is mounted in the power distribution mechanism and is used for draining rainwater; the cleaning mechanism is installed at the top of the drainage mechanism and used for cooling the power distributor and closing the cabinet door, the power distributor in the cabinet body can be cooled through the arrangement of the exhaust hole and the filter screen, air is made to circulate, and in the rainstorm weather, rainwater can enter the protection shell through the arrangement of the exhaust hole, so that the power distributor is prevented from being damaged. And the exhaust holes and the filter screen are not in the same plane, so that rainwater cannot permeate into the cabinet body after entering the protection shell, and the protection effect on the cabinet body in rainstorm weather is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of power distribution cabinets, in particular to a high-protection power distribution cabinet. Background Art

[0002] Distribution cabinets, which include power distribution cabinets, lighting distribution cabinets, and metering cabinets, are the final stage of the power distribution system. Distribution cabinets are a general term for motor control centers. Distribution cabinets are used in applications with dispersed loads and a small number of circuits, while motor control centers are used in applications with concentrated loads and a large number of circuits. They distribute power from a circuit in the upper-level distribution equipment to the nearest load. This level of equipment should provide protection, monitoring, and control for the loads.

[0003] When the distribution cabinet is set up outdoors, rainwater can easily penetrate into the interior of the cabinet during heavy rain. The existing technology usually uses the accumulation of rainwater to operate the sealing device to seal the exhaust holes, thereby preventing rainwater from penetrating into the interior of the cabinet. However, during the accumulation of rainwater, the sealing device cannot seal the exhaust holes, thereby affecting the protection effect of the distribution cabinet. Summary of the Invention

[0004] The object of the present invention is to provide a high-protection power distribution cabinet to solve the problems raised in the above background technology.

[0005] To solve the above technical problems, the present invention is achieved through the following technical solutions:

[0006] The present invention is a high-protection power distribution cabinet, comprising a power distribution mechanism, wherein a power distribution space is provided inside the power distribution mechanism, and the power distribution space is used to load the power distribution device;

[0007] A lifting mechanism is located inside the power distribution mechanism and is used to block the circulating gas;

[0008] A drainage mechanism, which is installed inside the power distribution mechanism and is used to drain rainwater; and

[0009] The cleaning mechanism is installed on the top of the drainage mechanism and is used to cool the distributor;

[0010] Among them, the distribution mechanism is used to carry the distributor through the distribution space, block the circulating gas through the lifting of the lifting mechanism, and discharge rainwater through the operation of the drainage mechanism; the cleaning mechanism cools the distributor through the rise of the drainage mechanism.

[0011] Furthermore, the power distribution mechanism includes a cabinet, and the power distribution mechanism includes;

[0012] The bearing member is rotatably arranged with the cabinet body;

[0013] An exhaust member is fixedly arranged on the outside of the cabinet and is used to flow the air;

[0014] The bearing member includes a cabinet door fixedly connected to the bottom of the inner wall of the cabinet, and a water storage shell is fixedly connected to the top of the cabinet;

[0015] The air flow is achieved by setting the exhaust component.

[0016] Furthermore, the lifting mechanism includes:

[0017] A lifting member, wherein the lifting member and the bearing member are slidingly arranged;

[0018] A blocking member is rotatably arranged at the bottom of the lifting member to block rainwater;

[0019] The lifting member includes a lifting plate slidably connected to the inner wall of the water storage shell, and the two ends of the bottom of the lifting plate are respectively fixedly connected to the first spring, and the bottom of the first spring is fixedly connected to the bottom of the inner wall of the water storage shell;

[0020] Among them, the blocking of rainwater is achieved by setting the blocking piece.

[0021] Further, the drainage mechanism includes a bent rod, and the drainage mechanism includes;

[0022] A water storage component, the water storage component is connected to the bearing component;

[0023] A drainage component is fixedly arranged at the bottom of the water storage component and is used to drain rainwater;

[0024] The water storage part includes four elbows connected to the inner wall of the water storage shell on both sides. The side wall of the cabinet is provided with a buoyancy ring, and the top of the buoyancy ring is fixedly connected with a fixing plate.

[0025] Among them, the drainage of rainwater is achieved by setting up drainage parts.

[0026] Further, the cleanup agencies include;

[0027] Condensation assembly, condensation assembly and drainage piece are fixedly arranged;

[0028] A scraping assembly is rotatably arranged on the side wall of the condensing assembly to scrape rainwater;

[0029] Wherein, the scraping component is provided to achieve scraping of rainwater.

[0030] Furthermore, the exhaust component includes a protective shell fixedly connected to both sides of the outer wall of the cabinet, three exhaust holes are opened on one side of the outer wall of the protective shell, two square holes are opened on both sides of the outer wall of the cabinet, and a filter is fixedly connected to the inner wall of the square hole.

[0031] Furthermore, the sealing member includes a rotating plate rotatably connected to both sides of the bottom of the lifting plate, the bottom end of the rotating plate is rotatably connected to a block, a square groove is opened at the bottom of the inner wall of the water storage shell near the first spring, the outer wall of the bottom end of the block is slidably connected to the inner wall of the square groove, and one side of the outer wall of the block is fixedly connected to a sealing frame plate, and one end of the sealing frame plate passes through the water storage shell and extends to the outside of the water storage shell.

[0032] Furthermore, the drainage component includes a circular shell fixedly connected to the bottom center of the fixed plate, one end of the circular shell passes through the protective shell and extends to the outside of the protective shell, the inner wall of the circular shell is slidably connected with a conical sliding rod, the top of the fixed plate is fixedly connected with a bent rod, one end of the bent pipe passes through the protective shell and extends to the inside of the protective shell, and the outer wall of the buoyancy ring is slidably connected to the inner wall of the protective shell.

[0033] Furthermore, the condensation assembly includes a condensation shell fixedly connected to the top of the bent rod, the bottom of the inner wall of the condensation shell is fixedly connected to the condenser, and second springs are fixedly connected on both sides of the bottom of the inner wall of the condensation shell close to the condenser.

[0034] Furthermore, a foam board is fixedly connected to the top of the second spring, and the outer wall of the bottom end of the foam board is slidably connected to the inner wall of the condensation shell. Telescopic tubes are respectively connected to both sides of the bottom of the condensation shell, and one end of the telescopic tubes is connected to the inner wall of the cabinet.

[0035] Furthermore, the scraping assembly includes a rotating bar rotatably connected to both ends of one side of the outer wall of the condensation shell, and the end of the rotating bar away from the condensation shell is rotatably connected to a slider, a sliding groove is provided at the top of the inner wall of the protective shell, and the top outer wall of the slider is slidably connected to the inner wall of the sliding groove, and an arc-shaped scraper is fixedly connected to one side of the outer wall of the slider, and one side of the outer wall of the arc-shaped scraper contacts the side wall of the filter.

[0036] The present invention has the following beneficial effects:

[0037] (1) The present invention, when the cabinet door is closed, is provided with the exhaust holes and the filter screen, which can dissipate heat from the electrical distributor inside the cabinet and allow air to circulate. When encountering heavy rain, rainwater will enter the interior of the protective shell through the exhaust holes. Because the exhaust holes and the filter screen are not in the same plane, the rainwater will not penetrate into the interior of the cabinet after entering the protective shell, thereby improving the protection effect of the cabinet in heavy rain. Due to the setting of the water storage shell, rainwater will gradually accumulate inside the water storage shell, causing the lifting plate inside the water storage shell to slide down, and the lifting plate drives the rotating plate to descend. Due to the setting of the square groove, the rotating plate drives the block to slide along the inner wall of the square groove, and the block drives the blocking frame to move, and the two blocking frames approach each other, thereby blocking the exhaust holes, preventing rainwater from penetrating, and improving the protection efficiency of the cabinet.

[0038] (2) In the present invention, when the lifting plate descends to the inner middle end of the water storage shell, due to the setting of the bent pipe, rainwater will enter the interior of the protective shell and impact and clean the impurities attached to the inner wall of the protective shell. The rainwater gradually accumulates inside the protective shell, causing the buoyancy ring to float up. The buoyancy ring drives the scraper assembly to move upward. Due to the limitation of the slide groove, the rotating bar in the scraper assembly drives the slider to slide along the inner wall of the slide groove. The slider drives the arc scraper to move. Because hot air accumulates on the top of the cabinet, the cold air in the rainwater cannot enter the interior of the cabinet to cool down, so dew will be generated at the filter screen. During the movement of the arc scraper, the outer wall of the filter screen can be scraped to prevent excessive dew from accumulating and entering the interior of the cabinet, thereby improving the operating stability of the distributor inside the cabinet. Due to the arc setting of the arc scraper, the dew can be prevented from entering the filter holes of the filter screen when the arc scraper scrapes the dew.

[0039] (3) In the present invention, when the condensing shell continues to move upward, the airflow inside the condensing shell is converted into cold air due to the setting of the condenser. At this time, the condensing shell drives the foam plate to move upward. The foam plate is resisted by the protective shell and enters the interior of the condensing shell. The cold air enters the interior of the telescopic tube. The cold air enters the middle end of the cabinet through the telescopic tube to cool the distributor, thereby improving the working stability of the distributor. In the process of the fixed plate moving upward, the fixed plate drives the round shell to move upward. When the round shell is separated from the protective shell, the round shell no longer blocks the drainage hole of the protective shell, allowing rainwater to be discharged to prevent rainwater from overflowing. In addition, the condensing component and the scraping component can move back and forth, thereby cooling the distributor during the continuous heavy rain.

[0040] Of course, any product implementing the present invention does not necessarily need to achieve all of the advantages described above at the same time. BRIEF DESCRIPTION OF THE DRAWINGS

[0041] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.

[0042] Figure 1 It is a schematic diagram of the overall side structure of the present invention;

[0043] Figure 2 It is a schematic diagram of the overall cross-sectional structure of the present invention;

[0044] Figure 3 This is a schematic diagram of the cross-sectional structure of the elbow of the present invention;

[0045] Figure 4 This is a schematic diagram of the cross-sectional structure of the condensation shell of the present invention;

[0046] Figure 5 This is a schematic diagram of the side structure of the exhaust hole of the present invention;

[0047] Figure 6 This is a schematic diagram of the cross-sectional structure of the rotating bar of the present invention;

[0048] Figure 7 For the present invention Figure 2 A magnified view of middle A;

[0049] Figure 8 For the present invention Figure 2 Enlarged view of middle B;

[0050] Figure 9 For the present invention Figure 3 Enlarged view of middle C;

[0051] Figure 10 For the present invention Figure 5 Enlarged view of D in the middle.

[0052] In the accompanying drawings, the components represented by the reference numerals are as follows:

[0053] In the figure: 1. power distribution mechanism; 2. lifting mechanism; 3. drainage mechanism; 4. cleaning mechanism; 11. cabinet body; 12. cabinet door; 13. water storage shell; 14. protective shell; 15. exhaust hole; 16. filter screen; 21. lifting plate; 22. first spring; 23. square groove; 24. rotating plate; 25. block; 26. blocking frame; 31. bent pipe; 32. buoyancy ring; 33. fixed plate; 34. round shell; 35. conical slide rod; 36. bent rod; 41. condensation component; 42. scraping component; 411. condensation shell; 412. condenser; 413. second spring; 414. foam board; 415. telescopic tube; 421. rotating bar; 422. slider; 423. slide groove; 424. arc scraper. DETAILED DESCRIPTION

[0054] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0055] See also Figures 1-10 As shown, the present invention is a high-protection power distribution cabinet, comprising a power distribution mechanism 1, wherein a power distribution space is provided inside the power distribution mechanism 1, and the power distribution space is used to load the power distribution device;

[0056] Lifting mechanism 2, which is located inside the power distribution mechanism 1 and is used to block the circulating gas;

[0057] A drainage mechanism 3, which is installed inside the power distribution mechanism 1 and is used to drain rainwater; and

[0058] The cleaning mechanism 4 is installed on the top of the drainage mechanism 3 and is used to cool the distributor;

[0059] Among them, the distribution mechanism 1 is used to carry the distributor through the distribution space, block the circulating gas through the lifting and lowering of the lifting mechanism 2, and discharge rainwater through the operation of the drainage mechanism 3; the rising of the drainage mechanism 3 enables the cleaning mechanism 4 to cool the distributor.

[0060] The power distribution mechanism 1 includes a cabinet 11, and the power distribution mechanism 1 includes:

[0061] The bearing member is rotatably arranged with the cabinet body 11;

[0062] An exhaust member is fixedly arranged on the outside of the cabinet 11 and is used to flow the air;

[0063] The bearing member includes a cabinet door 12 fixedly connected to the bottom of the inner wall of the cabinet 11, and a water storage shell 13 is fixedly connected to the top of the cabinet 11;

[0064] The air flow is achieved by setting the exhaust component.

[0065] The lifting mechanism 2 includes:

[0066] A lifting member, wherein the lifting member and the bearing member are slidingly arranged;

[0067] A blocking member is rotatably arranged at the bottom of the lifting member to block rainwater;

[0068] The lifting member includes a lifting plate 21 slidably connected to the inner wall of the water storage shell 13, and the two ends of the bottom of the lifting plate 21 are fixedly connected to the first spring 22, and the bottom of the first spring 22 is fixedly connected to the bottom of the inner wall of the water storage shell 13;

[0069] Among them, the blocking of rainwater is achieved by setting the blocking piece.

[0070] The drainage mechanism 3 includes a bent rod 36, and the drainage mechanism 3 includes;

[0071] A water storage component, the water storage component is connected to the bearing component;

[0072] A drainage component is fixedly arranged at the bottom of the water storage component and is used to drain rainwater;

[0073] The water storage part includes four elbows 31 connected to both sides of the inner wall of the water storage shell 13. The side wall of the cabinet 11 is provided with a buoyancy ring 32, and the top of the buoyancy ring 32 is fixedly connected with a fixing plate 33.

[0074] Among them, the drainage of rainwater is achieved by setting up drainage parts.

[0075] The cleaning mechanism 4 includes:

[0076] Condensation component 41, condensation component 41 is fixedly arranged with the drainage component;

[0077] A scraping assembly 42 is rotatably disposed on the side wall of the condensing assembly 41 and is used to scrape rainwater;

[0078] The scraping component 42 is provided to scrape off rainwater.

[0079] The exhaust component includes a protective shell 14 fixedly connected to both sides of the outer wall of the cabinet 11. Three exhaust holes 15 are provided on one side of the outer wall of the protective shell 14. Two square holes are provided on both sides of the outer wall of the cabinet 11. The inner wall of the square hole is fixedly connected with a filter 16. Due to the setting of the exhaust holes 15 and the filter 16, the distributor inside the cabinet 11 can be cooled and the air can circulate. When encountering heavy rain, rainwater will enter the interior of the protective shell 14 through the setting of the exhaust holes 15. Because the exhaust holes 15 and the filter 16 are not in the same plane, the rainwater will not penetrate into the interior of the cabinet 11 after entering the protective shell 14, thereby improving the protection effect of the cabinet 11 in heavy rain.

[0080] The sealing member includes a rotating plate 24 rotatably connected to both sides of the bottom of the lifting plate 21, and the bottom end of the rotating plate 24 is rotatably connected to a block 25. A square groove 23 is provided at the bottom of the inner wall of the water storage shell 13 near the first spring 22. The outer wall of the bottom end of the block 25 is slidably connected to the inner wall of the square groove 23. A sealing frame 26 is fixedly connected to one side of the outer wall of the block 25. The two sealing frames 26 approach each other to block the exhaust hole 15 to prevent rainwater from penetrating, thereby improving the protection efficiency of the cabinet 11. One end of the sealing frame 26 passes through the water storage shell 13 and extends to the outside of the water storage shell 13.

[0081] The drainage component includes a circular shell 34 fixedly connected to the bottom center of the fixed plate 33. One end of the circular shell 34 passes through the protective shell 14 and extends to the outside of the protective shell 14. The inner wall of the circular shell 34 is slidably connected with a conical sliding rod 35. The top of the fixed plate 33 is fixedly connected with a bent rod 36. One end of the bent pipe 31 passes through the protective shell 14 and extends to the inside of the protective shell 14. The outer wall of the buoyancy ring 32 is slidably connected to the inner wall of the protective shell 14.

[0082] The condensation assembly 41 includes a condensation shell 411 fixedly connected to the top of the bent rod 36, the bottom of the inner wall of the condensation shell 411 is fixedly connected to the condenser 412, and second springs 413 are fixedly connected on both sides of the bottom of the inner wall of the condensation shell 411 near the condenser 412.

[0083] The top of the second spring 413 is fixedly connected to a foam plate 414, and the outer wall of the bottom end of the foam plate 414 is slidably connected to the inner wall of the condensation shell 411. The bottom two sides of the condensation shell 411 are respectively connected with telescopic tubes 415, and one end of the telescopic tube 415 is connected to the inner wall of the cabinet 11. The condensation shell 411 drives the foam plate 414 to move upward. The foam plate 414 is resisted by the protective shell 14 and enters the interior of the condensation shell 411. The cold air enters the interior of the telescopic tube 415. The cold air enters the middle end of the interior of the cabinet 11 through the telescopic tube 415, cools the distributor, and improves the working stability of the distributor.

[0084] The scraping assembly 42 includes a rotating bar 421 rotatably connected to both ends of one side of the outer wall of the condensing shell 411. The end of the rotating bar 421 away from the condensing shell 411 is rotatably connected to a slider 422. A slide groove 423 is provided on the top of the inner wall of the protective shell 14. The top outer wall of the slider 422 is slidably connected to the inner wall of the slide groove 423. An arc-shaped scraper 424 is fixedly connected to one side of the outer wall of the slider 422. Because the hot air accumulates on the top of the cabinet 11, the cold air in the rainwater cannot enter the inner wall of the cabinet 11. The interior of the cabinet 11 is cooled, so dew will be generated at the filter 16. The arc-shaped scraper 424 can scrape the outer wall of the filter 16 during its movement to prevent excessive dew accumulation from entering the interior of the cabinet 11, thereby improving the operating stability of the distributor inside the cabinet 11. The arc-shaped setting of the arc-shaped scraper 424 can prevent dew from entering the filter holes of the filter 16 when the arc-shaped scraper 424 scrapes the dew. One side of the outer wall of the arc-shaped scraper 424 contacts the side wall of the filter 16.

[0085] When in use, the cabinet door 12 is closed, and the exhaust holes 15 and the filter 16 are set to dissipate heat to the distributor inside the cabinet 11, allowing air to circulate. When encountering heavy rain, rainwater will enter the interior of the protective shell 14 through the exhaust holes 15. Because the exhaust holes 15 and the filter 16 are not in the same plane, the rainwater will not penetrate into the interior of the cabinet 11 after entering the protective shell 14, thereby improving the protection effect of the cabinet 11 in heavy rain. Due to the setting of the water storage shell 13, rainwater will gradually accumulate inside the water storage shell 13, causing the lifting plate 21 inside the water storage shell 13 to slide down, and the lifting plate 21 drives the rotating plate 24 to descend. Due to the setting of the square groove 23, the rotating plate 24 drives the block 25 to slide along the inner wall of the square groove 23, and the block 25 drives the blocking frame 26 to move. The two blocking frames 26 approach each other, thereby blocking the exhaust holes 15 to prevent rainwater from penetrating, thereby improving the protection efficiency of the cabinet 11.

[0086] When the lifting plate 21 descends to the inner middle end of the water storage shell 13, due to the setting of the bent pipe 31, rainwater will enter the interior of the protective shell 14, impacting and cleaning the impurities attached to the inner wall of the protective shell 14. The rainwater gradually accumulates inside the protective shell 14, causing the buoyancy ring 32 to float up. The buoyancy ring 32 drives the fixed plate 33 to rise, and the fixed plate 33 drives the bent rod 36 to move up. The bent rod 36 drives the condensation shell 411 to move up, and the condensation shell 411 drives the rotating bar 421 to move up. Limited by the slide groove 423, the rotating bar 421 drives the slider 422 along the slide groove 42 3 slides, and the slider 422 drives the curved scraper 424 to move. Because hot air accumulates on the top of the cabinet 11, the cold air in the rainwater cannot enter the interior of the cabinet 11 for cooling, so dew will be generated on the filter 16. The curved scraper 424 can scrape the outer wall of the filter 16 during its movement to prevent excessive dew from accumulating and entering the interior of the cabinet 11, thereby improving the operating stability of the distributor inside the cabinet 11. The curved setting of the curved scraper 424 can prevent dew from entering the filter holes of the filter 16 when the curved scraper 424 scrapes the dew.

[0087] When the condensation shell 411 continues to move upward, the setting of the condenser 412 converts the airflow inside the condensation shell 411 into cold air. At this time, the condensation shell 411 drives the foam plate 414 to move upward. The foam plate 414 is resisted by the protective shell 14 and enters the interior of the condensation shell 411. The cold air enters the interior of the telescopic tube 415. The cold air enters the middle end of the cabinet 11 through the telescopic tube 415, cooling the distributor and improving the working stability of the distributor. In the process of the fixed plate 33 moving upward, the fixed plate 33 drives the round shell 34 to move upward. When the round shell 34 is separated from the protective shell 14, the round shell 34 no longer blocks the drainage hole of the protective shell 14, allowing rainwater to be discharged to prevent overflowing of rainwater. The condensation component 41 and the scraping component 42 can be made to move back and forth, thereby cooling the distributor during the continuous heavy rain.

[0088] The preferred embodiments of the present invention disclosed above are intended only to help illustrate the present invention. These preferred embodiments do not exhaustively describe all details, nor do they limit the present invention to the specific embodiments described. Obviously, many modifications and variations are possible based on the content of this specification. These embodiments are selected and described in detail in this specification to better explain the principles and practical applications of the present invention, thereby enabling those skilled in the art to better understand and utilize the present invention. The present invention is limited only by the claims and their full scope and equivalents.

Claims

1. A high-protection power distribution cabinet, characterized by: It comprises a power distribution mechanism (1), wherein a power distribution space is provided inside the power distribution mechanism (1), and the power distribution space is used for loading the power distributor; A lifting mechanism (2), the lifting mechanism (2) being located inside the power distribution mechanism (1) and used for blocking the circulating gas; A drainage mechanism (3), the drainage mechanism (3) being installed inside the power distribution mechanism (1) and used for draining rainwater; and A cleaning mechanism (4), the cleaning mechanism (4) being installed on top of the drainage mechanism (3) and used for cooling the electrical distributor; The power distribution mechanism (1) is used to carry the power distribution device through the power distribution space, to block the circulating gas by the lifting and lowering of the lifting mechanism (2), and to drain rainwater by the operation of the drainage mechanism (3); and the cleaning mechanism (4) cools the power distribution device by the rising of the drainage mechanism (3).

2. A high-protection power distribution cabinet according to claim 1, characterized in that: The power distribution mechanism (1) comprises a cabinet (11), and the power distribution mechanism (1) comprises: A bearing member, the bearing member and the cabinet body (11) are rotatably arranged; An exhaust member, the exhaust member being fixedly arranged outside the cabinet (11) and used for flowing the air flow; The bearing member comprises a cabinet door (12) fixedly connected to the bottom of the inner wall of the cabinet (11), and a water storage shell (13) is fixedly connected to the top of the cabinet (11); The air flow is achieved by setting the exhaust component.

3. A high-protection power distribution cabinet according to claim 2, characterized in that: The lifting mechanism (2) comprises: A lifting member, wherein the lifting member and the bearing member are slidably arranged; A blocking member, rotatably disposed at the bottom of the lifting member, for blocking rainwater; The lifting member comprises a lifting plate (21) slidably connected to the inner wall of the water storage shell (13), the bottom ends of the lifting plate (21) are respectively fixedly connected to first springs (22), and the bottom of the first spring (22) is fixedly connected to the bottom of the inner wall of the water storage shell (13); Among them, the blocking of rainwater is achieved by setting the blocking piece.

4. A high-protection power distribution cabinet according to claim 3, characterized in that: The drainage mechanism (3) includes a bent rod (36), and the drainage mechanism (3) includes: A water storage member, the water storage member being connected to the bearing member; A drainage member, which is fixedly arranged at the bottom of the water storage member and is used to drain rainwater; The water storage component comprises four curved pipes (31) connected to both sides of the inner wall of the water storage shell (13); a buoyancy ring (32) is provided in contact with the side wall of the cabinet (11); and a fixing plate (33) is fixedly connected to the top of the buoyancy ring (32); Among them, the drainage of rainwater is achieved by setting up drainage parts.

5. The high-protection power distribution cabinet according to claim 4, characterized in that: The cleaning mechanism (4) comprises: A condensation component (41), wherein the condensation component (41) is fixedly arranged with the drainage member; A scraping assembly (42), the scraping assembly (42) is rotatably arranged on the side wall of the condensing assembly (41) and is used to scrape rainwater; Wherein, the scraping component (42) is provided to scrape off rainwater.

6. The high-protection power distribution cabinet according to claim 5, characterized in that: The exhaust component comprises a protective shell (14) fixedly connected to both sides of the outer wall of the cabinet (11); three exhaust holes (15) are provided on one side of the outer wall of the protective shell (14); two square holes are respectively provided on both sides of the outer wall of the cabinet (11); and a filter screen (16) is fixedly connected to the inner wall of the square hole.

7. The high-protection power distribution cabinet according to claim 6, characterized in that: The blocking member comprises a rotating plate (24) rotatably connected to both sides of the bottom of the lifting plate (21); the bottom end of the rotating plate (24) is rotatably connected to a block (25); a square groove (23) is provided at the bottom of the inner wall of the water storage shell (13) near the first spring (22); the outer wall of the bottom end of the block (25) is slidably connected to the inner wall of the square groove (23); a blocking frame (26) is fixedly connected to one side of the outer wall of the block (25); one end of the blocking frame (26) passes through the water storage shell (13) and extends to the outside of the water storage shell (13).

8. The high-protection power distribution cabinet according to claim 7, characterized in that: The drainage member comprises a circular shell (34) fixedly connected to the bottom center of the fixed plate (33), one end of the circular shell (34) passes through the protective shell (14) and extends to the outside of the protective shell (14), the inner wall of the circular shell (34) is slidably connected to a conical sliding rod (35), the top of the fixed plate (33) is fixedly connected to a bent rod (36), one end of the bent pipe (31) passes through the protective shell (14) and extends to the inside of the protective shell (14), and the outer wall of the buoyancy ring (32) is slidably connected to the inner wall of the protective shell (14).

9. The high-protection power distribution cabinet according to claim 8, characterized in that: The condensation assembly (41) includes a condensation shell (411) fixedly connected to the top of the bent rod (36), the bottom of the inner wall of the condensation shell (411) is fixedly connected to the condenser (412), and the second springs (413) are fixedly connected on both sides of the bottom of the inner wall of the condensation shell (411) close to the condenser (412).

10. The high-protection power distribution cabinet according to claim 9, characterized in that: The top of the second spring (413) is fixedly connected to a foam plate (414), and the outer wall of the bottom end of the foam plate (414) is slidably connected to the inner wall of the condensation shell (411). The two sides of the bottom of the condensation shell (411) are respectively connected to telescopic tubes (415), and one end of the telescopic tube (415) is connected to the inner wall of the cabinet (11).

11. The high-protection power distribution cabinet according to claim 10, characterized in that: The scraping assembly (42) includes a rotating bar (421) rotatably connected to both ends of one side of the outer wall of the condensation shell (411), and the end of the rotating bar (421) away from the condensation shell (411) is rotatably connected to a slider (422), and a slide groove (423) is provided at the top of the inner wall of the protective shell (14), and the top outer wall of the slider (422) is slidably connected to the inner wall of the slide groove (423), and an arc-shaped scraper (424) is fixedly connected to one side of the outer wall of the slider (422), and one side of the outer wall of the arc-shaped scraper (424) contacts the side wall of the filter (16).