Modularized box-type energy storage charging cabinet and work management method thereof
By designing an automatic cleaning dust filter system in the box-type energy storage charging cabinet, the problem of dust filters requiring manual cleaning during long-term use is solved, automatic cleaning is achieved, and the convenience of use and cleaning efficiency are improved.
Patent Information
- Application Number
- CN202510225470.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-27
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2045-02-27
AI Technical Summary
During long-term use of the existing box-type energy storage charging cabinet, the dustproof filter will adhere to dust and impurities, which requires manual cleaning, which consumes manual physical strength.
A modular box-type energy storage charging cabinet is designed, which uses the dustproof filter to fix the inner wall of the intake and exhaust troughs, and is equipped with cleaning components, including a rotating plate, a brush layer, a linkage unit and a drive unit. Through the cooperation of the drive unit and the linkage unit, the rotating plate is automatically driven to rotate with the brush layer to clean the outer surface of the dustproof filter.
Automatic cleaning of dustproof filters is realized, reducing the need for manual cleaning, and improving the convenience of use and cleaning efficiency.
Smart Images

Figure CN120074035A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of charging cabinets, and particularly to a modular box-type energy storage charging cabinet and its working management method. Background Art
[0002] A modular box-type energy storage charging cabinet is an energy storage system integrating energy storage units, power conversion equipment, a battery management system (BMS), an energy management system (EMS, if equipped), and other necessary components. These components are ingeniously assembled in a standardized box. The modular box-type energy storage charging cabinet adopts a modular design concept, enabling each component to be independently replaced or upgraded, facilitating maintenance and expansion. It is equipped with an advanced battery management system (BMS) that can monitor the battery status in real time, optimize the charge and discharge strategies, and extend the battery life.
[0003] Existing box-type energy storage charging cabinets usually use the cooperation of heat dissipation air windows, dust-proof filters, and heat dissipation fans for ventilation and heat dissipation. The dust-proof filters are arranged on the inner walls of each heat dissipation air window to prevent dust and other impurities from entering the interior of the energy storage charging cabinet. However, during long-term use, a certain amount of dust and impurities will adhere to the side of the dust-proof filter close to the outside air, and usually need to be manually cleaned regularly, consuming manual labor. Summary of the Invention
[0004] The purpose of the present invention is to solve the problems existing in the prior art:
[0005] During long-term use of existing box-type energy storage charging cabinets, a certain amount of dust and impurities will adhere to the side of the dust-proof filter close to the outside air, and usually need to be manually cleaned regularly, consuming manual labor.
[0006] And a modular box-type energy storage charging cabinet and its working management method are proposed.
[0007] To achieve the above object, the present invention adopts the following technical solutions:
[0008] A modular box-type energy storage charging cabinet includes a charging cabinet body. Intake through grooves and exhaust through grooves are respectively formed on both sides of the charging cabinet body. Dust-proof filters are fixed on the inner walls of the intake through grooves and the exhaust through grooves. Cleaning components for cooperating with the corresponding dust-proof filters are arranged on both sides of the charging cabinet body. Each cleaning component includes a left mounting seat and a right mounting seat. A plurality of rotating plates are rotatably arranged between the left mounting seat and the right mounting seat. A brush layer is fixed at one end of each rotating plate. A linkage unit for cooperating with the corresponding rotating plate to rotate is arranged in the right mounting seat, and a driving unit for cooperating with the corresponding rotating plate is arranged in the left mounting seat.
[0009] As a further technical solution of the present invention, each of the linkage units includes a right cavity opened in the right mounting seat. One end of each rotating plate close to the right mounting seat is fixed with a right rotating shaft, and the right rotating shaft rotates through to the inside of the right cavity. A belt drive group is arranged between adjacent two right rotating shafts.
[0010] As a further technical solution of the present invention, each of the driving units includes a left cavity opened in the left mounting seat. One side of each rotating plate close to the left mounting seat is fixed with a left rotating shaft, and the left rotating shaft rotates through to the inside of the left cavity. A stepping motor is fixed in the left cavity, and the driving shaft of the stepping motor is fixedly connected with one of the left rotating shafts.
[0011] As a further technical solution of the present invention, two pairs of T-shaped lifting grooves are opened on both sides of the charging cabinet body. A T-shaped lifting slider is fixed in each T-shaped lifting groove. Connecting blocks are fixed between the right mounting seat and the left mounting seat and the adjacent T-shaped lifting sliders. Lifting units for cooperating with the lifting of the right mounting seat and the left mounting seat are arranged on both sides of the charging cabinet body.
[0012] As a further technical solution of the present invention, each of the lifting units includes two electric push rods. Each electric push rod is fixed on the side wall of the charging cabinet body, and the end of the telescopic end of each electric push rod is fixedly connected with the lower end surface of the adjacent connecting block.
[0013] As a further technical solution of the present invention, U-shaped rain shields for cooperating with the dust-proof filter are fixed on both sides of the charging cabinet body, and the open end of the U-shaped rain shield faces downward.
[0014] As a further technical solution of the present invention, an internal groove is opened on one side of each rotating plate away from the brush layer. A telescopic plate is movably arranged in each internal groove, and an adsorption component is arranged between the internal groove and the telescopic plate.
[0015] As a further technical solution of the present invention, each of the adsorption components includes an electromagnet fixed on the top inside the internal groove. A metal plate for cooperating with the electromagnet is fixed on the upper end surface of the telescopic plate, and a plurality of guiding and limiting units are arranged between the metal plate and the internal groove.
[0016] As a further technical solution of the present invention, a plurality of limiting sliders are fixed on both sides of each metal plate, and a plurality of limiting chutes for cooperating with the limiting sliders are opened on both sides of the inner wall of the internal groove.
[0017] A working management method for a modular box-type energy storage charging cabinet. The specific operation steps of the method are as follows:
[0018] Step 1: In the initial state, the rotating plate is perpendicular to the dust-proof filter. When it is necessary to clean the outer surface of the dust-proof filter, at this time, under the cooperation of the driving unit and the linkage unit, each rotating plate is driven to rotate with the brush layer. During the rotation process, the brush layer will wipe and clean the outer surface of the dust-proof filter;
[0019] Step 2: After the rotating plate drives the brush layer to rotate at this position height for a period of time, under the action of the lifting unit, the two cooperating right mounting seats and left mounting seats are driven to move upward by a certain distance, thereby driving each rotating plate and the brush layer to move upward by a certain distance, so as to change the cleaning position of the brush layer on the dust-proof filter and clean the positions that were not cleaned just now;
[0020] Step 3: After the entire cleaning operation is completed, the lifting unit drives the two cooperating right mounting seats and left mounting seats to move downward to the initial height position. Under the cooperation of the driving unit and the linkage unit, the rotating plate is urged to rotate again to a state perpendicular to the dust-proof filter.
[0021] Advantages of the present invention:
[0022] 1. In the initial state, the rotating plate is perpendicular to the dust-proof filter, avoiding affecting the ventilation effect of the air intake slot and the exhaust slot. During the long-term use of the dust-proof filter, a certain amount of dust, etc. will adhere to the surface of the dust-proof filter close to the outside air. At this time, under the cooperation of the driving unit and the linkage unit, each rotating plate is driven to rotate with the brush layer. During the rotation process, the brush layer will wipe and clean the outer surface of the dust-proof filter, thereby cleaning the dust and impurities adhering to the outer surface of the dust-proof filter. It is convenient to use. After the cleaning operation is completed, under the cooperation of the driving unit and the linkage unit, the rotating plate is urged to rotate again to a state perpendicular to the dust-proof filter.
[0023] 2. After the rotating plate drives the brush layer to rotate at this position height for a period of time, under the action of the lifting unit, the two cooperating right mounting seats and left mounting seats can be driven to move upward by a certain distance, thereby driving each rotating plate and the brush layer to move upward by a certain distance, so as to change the cleaning position of the brush layer on the dust-proof filter and clean the positions that were not cleaned just now, with good cleaning effect.
[0024] 3. In the initial state, the telescopic plate is inside the built-in groove. When it rains, under the action of the driving unit and the linkage unit, each rotating plate is driven to rotate to an inclined state. At this time, the adsorption assembly releases the adsorption and fixation of the telescopic plate. Under the action of gravity, the telescopic plate slides along the built-in groove, so as to extend a partial area at the end of the rotating plate, thereby increasing the rain shielding effect and preventing rain from being splashed onto the surface of the dust-proof filter by the wind. Description of the Drawings
[0025] Figure 1 Schematic diagram of the overall structure of the present invention Figure One ;
[0026] Figure 2 Schematic diagram of the connection between the air intake through groove and the dust-proof filter in the present invention;
[0027] Figure 3 Schematic diagram of the connection between the exhaust through groove and the dust-proof filter in the present invention;
[0028] Figure 4 Schematic diagram of the connection between the charging cabinet body and the electric push rod in the present invention;
[0029] Figure 5 Schematic diagram of the internal structure of the right cavity in the present invention;
[0030] Figure 6 Schematic diagram of the internal structure of the left cavity in the present invention;
[0031] Figure 7 Schematic diagram of the connection between the right mounting seat and the connecting block in the present invention;
[0032] Figure 8 Schematic diagram of the overall structure of the present invention Figure Two ;
[0033] Figure 9 Schematic diagram of the internal structure of the built-in groove in the present invention;
[0034] Figure 10 Schematic diagram of the connection between the telescopic plate and the metal plate in the present invention.
[0035] In the figure: 1. Charging cabinet body; 2. Air intake through groove; 3. Exhaust through groove; 4. Dust-proof filter; 5. Left mounting seat; 6. Right mounting seat; 7. Rotating plate; 8. Brush layer; 9. Right cavity; 10. Right rotating shaft; 11. Belt drive group; 12. Left cavity; 13. Left rotating shaft; 14. Stepper motor; 15. T-shaped lifting groove; 16. T-shaped lifting slider; 17. Connecting block; 18. Electric push rod; 19. U-shaped rain shield; 20. Built-in groove; 21. Telescopic plate; 22. Electromagnet; 23. Metal plate; 24. Limit slider. Detailed implementation manners
[0036] To further elaborate on the technical means and effects adopted by the present invention to achieve the predetermined invention purpose, the following, in combination with the accompanying drawings and preferred embodiments, details the specific implementation manners, structures, features and their effects of the present invention as follows.
[0037] Refer to Figures 1 - 10, a modular box - type energy storage charging cabinet, including a charging cabinet body 1. The interior of the charging cabinet body 1 adopts a modular design. The charging cabinet body 1 is an existing technology. Air intake slots 2 and exhaust slots 3 are respectively opened on both sides of the charging cabinet body 1. A plurality of ventilation fan blade groups are arranged on the inner wall of the charging cabinet body 1. The ventilation fan blade groups are an existing technology and are used to accelerate the air flow speed inside the charging cabinet body 1, thereby enhancing the ventilation and heat dissipation effect inside the charging cabinet body 1.
[0038] Dust - proof filters 4 are fixedly installed on the inner walls of both the air intake slot 2 and the exhaust slot 3. Cleaning components for cooperating with the corresponding dust - proof filters 4 are arranged on both sides of the charging cabinet body 1. Each cleaning component includes a left mounting seat 5 and a right mounting seat 6. A plurality of rotating plates 7 are rotatably arranged between the left mounting seat 5 and the right mounting seat 6. A brush layer 8 is fixedly installed at one end of each rotating plate 7. A linkage unit for cooperating with the rotation of the corresponding rotating plate 7 is arranged inside the right mounting seat 6, and a driving unit for cooperating with the corresponding rotating plate 7 is arranged inside the left mounting seat 5.
[0039] In the initial state, the rotating plate 7 is perpendicular to the dust - proof filter 4 to avoid affecting the ventilation effect of the air intake slot 2 and the exhaust slot 3. During the long - term use of the dust - proof filter 4, a certain amount of dust, etc. will adhere to the surface of the dust - proof filter 4 close to the outside air. At this time, under the cooperation of the driving unit and the linkage unit, each rotating plate 7 is driven to rotate with the brush layer 8. During the rotation, the brush layer 8 will wipe and clean the outer surface of the dust - proof filter 4, thereby sweeping away the dust and impurities adhering to the outer surface of the dust - proof filter 4. It is convenient to use and does not require manual cleaning. After the cleaning operation is completed, under the cooperation of the driving unit and the linkage unit, the rotating plate 7 is made to rotate back to a state perpendicular to the dust - proof filter 4 again.
[0040] When the rotating plate 7 and the brush layer 8 clean the outer surface of the dust - proof filter 4, the ventilation fan blade group can pause working according to the actual situation.
[0041] Each linkage unit includes a right cavity 9 opened inside the right mounting seat 6. One end of each rotating plate 7 close to the right mounting seat 6 is fixedly installed with a right rotating shaft 10. The right rotating shaft 10 rotatably penetrates into the right cavity 9, and a belt drive group 11 is arranged between adjacent two right rotating shafts 10.
[0042] Through the arranged belt drive group 11, when one of the right rotating shafts 10 rotates, it will drive the other right rotating shafts 10 to rotate, thereby driving the corresponding rotating plates 7 to rotate.
[0043] Each driving unit includes a left cavity 12 formed in the left mounting base 5. On one side of each rotating plate 7 close to the left mounting base 5, a left rotating shaft 13 is fixedly installed. The left rotating shaft 13 rotates through to the inside of the left cavity 12. A stepping motor 14 is fixedly installed in the left cavity 12, and the driving shaft of the stepping motor 14 is fixedly connected to one of the left rotating shafts 13.
[0044] A brake device can be installed at the tail of the stepping motor 14 to achieve power-off self-locking of the stepping motor 14. This technology is the prior art.
[0045] When the stepping motor 14 is powered on and operates, it will drive the corresponding left rotating shaft 13 to rotate, thereby driving the corresponding rotating plate 7 and the right rotating shaft 10 to rotate. Under the action of each belt transmission group 11, it will drive other right rotating shafts 10 and rotating plates 7 to rotate.
[0046] On both sides of the charging cabinet body 1, two pairs of T-shaped lifting grooves 15 are formed. In each T-shaped lifting groove 15, a T-shaped lifting slider 16 is fixedly installed. A connecting block 17 is fixedly installed between the right mounting base 6 and the left mounting base 5 and the adjacent T-shaped lifting slider 16. Lifting units for cooperating with the lifting of the right mounting base 6 and the left mounting base 5 are arranged on both sides of the charging cabinet body 1.
[0047] When the rotating plate 7 drives the brush layer 8 to rotate at this position height for a period of time, under the action of the lifting unit, it can drive the two cooperating right mounting base 6 and left mounting base 5 to move upward by a certain distance, thereby driving each rotating plate 7 and the brush layer 8 to move upward by a certain distance, so as to change the cleaning position of the brush layer 8 on the dust filter screen 4 and clean the positions that were not cleaned just now, with good cleaning effect.
[0048] When the entire cleaning operation is completed, the lifting unit drives the two cooperating right mounting base 6 and left mounting base 5 to move downward to the initial height position.
[0049] Through the cooperation of the set T-shaped lifting grooves 15, T-shaped lifting sliders 16 and connecting blocks 17, on the one hand, the lifting movement of the right mounting base 6 and the left mounting base 5 is limited and guided, and on the other hand, in the initial state, the lower end surface of the T-shaped lifting slider 16 contacts the inner bottom of the T-shaped lifting groove 15, so as to bear the weights of the connecting block 17, the right mounting base 6, the left mounting base 5 and each rotating plate 7.
[0050] Each lifting unit includes two electric push rods 18. Each electric push rod 18 is fixedly installed on the side wall of the charging cabinet body 1, and the end of the telescopic end of each electric push rod 18 is fixedly connected to the lower end surface of the adjacent connecting block 17.
[0051] In the initial state, the telescopic end of the electric push rod 18 is in a contracted state. When it is necessary to raise and adjust the vertical height of the rotating plate 7, the telescopic end of the electric push rod 18 extends, thereby pushing the corresponding connecting block 17, the right mounting seat 6, the left mounting seat 5 and the rotating plate 7 to move upward.
[0052] As required, a dust-proof telescopic sleeve can be sleeved on the outer surface of the telescopic end of the electric push rod 18.
[0053] U-shaped rain shields 19 for cooperating with the dust-proof filter screen 4 are fixed on both sides of the charging cabinet body 1, and the open ends of the U-shaped rain shields 19 face downward.
[0054] Since the opening areas of the air intake through groove 2 and the exhaust through groove 3 are relatively large, by providing the U-shaped rain shield 19, it is possible to prevent rainwater from directly flowing onto the surface of the dust-proof filter screen 4 on rainy days.
[0055] An internal groove 20 is formed on the side of each rotating plate 7 away from the brush layer 8, and a telescopic plate 21 is movably arranged in each internal groove 20. An adsorption assembly is arranged between the internal groove 20 and the telescopic plate 21.
[0056] In the initial state, the telescopic plate 21 is inside the internal groove 20. When it rains, under the action of the driving unit and the linkage unit, each rotating plate 7 will be driven to rotate to an inclined state. At this time, the adsorption assembly releases the adsorption and fixation of the telescopic plate 21. Under the action of gravity, the telescopic plate 21 slides along the internal groove 20, so that a partial area extends at the end of the rotating plate 7, thereby increasing the rain shielding effect and preventing rainwater from being splashed onto the surface of the dust-proof filter screen 4 by the wind.
[0057] When it is necessary to retract the telescopic plate 21 into the internal groove 20 subsequently, the rotating plate 7 can be rotated to a vertical state (the brush layer 8 is located below the rotating plate 7, and the telescopic plate 21 is located above the rotating plate 7). At this time, under the action of gravity, the telescopic plate 21 falls into the internal groove 20, and then the adsorption assembly adsorbs and fixes the telescopic plate 21.
[0058] Each adsorption assembly includes an electromagnet 22 fixed to the inner top of the internal groove 20. A metal plate 23 for cooperating with the electromagnet 22 is fixed to the upper end surface of the telescopic plate 21. A plurality of guiding and limiting units are arranged between the metal plate 23 and the internal groove 20.
[0059] When the rotating plate 7 drives the brush layer 8 to rotate and clean the surface of the dust-proof filter screen 4, the electromagnet 22 is powered on to work and adsorbs the metal plate 23, thereby limiting and fixing the telescopic plate 21 in the internal groove 20.
[0060] In the initial state, when the rotating plate 7 is in a state perpendicular to the dust-proof filter screen 4, the electromagnet 22 may not be powered on at this time, and the telescopic plate 21 will not move along the internal groove 20 at this time.
[0061] A cavity three may be formed in the rotating plate 7, and a storage battery is installed in the cavity three. Solar photovoltaic panels are installed on both side surfaces of the rotating plate 7, and the solar photovoltaic panels are used to charge the storage battery, and the storage battery is used to supply power to the electromagnet 22.
[0062] A plurality of limiting sliders 24 are fixed on both sides of each metal plate 23, and a plurality of limiting chutes for cooperating with the limiting sliders 24 are formed on both sides of the inner wall of the built-in groove 20.
[0063] Through the cooperation of the provided limiting sliders 24 and the limiting chutes, it is avoided that the telescopic plate 21 falls off from the built-in groove 20 when moving in the built-in groove 20.
[0064] A working management method for a modular box-type energy storage charging cabinet, and the specific operation steps of the method are as follows:
[0065] Step 1, in the initial state, the rotating plate 7 is in a state perpendicular to the dust-proof filter screen 4. When it is necessary to clean the outer surface of the dust-proof filter screen 4, at this time, under the cooperation of the driving unit and the linkage unit, each rotating plate 7 is driven to rotate with the brush layer 8. During the rotation process of the brush layer 8, the outer surface of the dust-proof filter screen 4 will be wiped and cleaned.
[0066] Step 2, when the rotating plate 7 drives the brush layer 8 to rotate at this position height for a period of time, under the action of the lifting unit, the two cooperating right mounting seats 6 and left mounting seats 5 are driven to move upward by a certain distance, so as to drive each rotating plate 7 and the brush layer 8 to move upward by a certain distance, thereby changing the cleaning position of the brush layer 8 on the dust-proof filter screen 4 and cleaning the position that was not cleaned just now.
[0067] Step 3, when the entire cleaning operation is completed, the lifting unit drives the two cooperating right mounting seats 6 and left mounting seats 5 to move downward to the initial height position, and under the cooperation of the driving unit and the linkage unit, the rotating plate 7 is driven to rotate again to a state perpendicular to the dust-proof filter screen 4.
[0068] When the present invention is in use, in the initial state, the rotating plate 7 is in a state perpendicular to the dust-proof filter screen 4, so as to avoid affecting the ventilation effect of the air intake slot 2 and the exhaust slot 3. During the long-term use of the dust-proof filter screen 4, a certain amount of dust and the like will adhere to the surface of the dust-proof filter screen 4 close to the outside air. At this time, under the cooperation of the driving unit and the linkage unit, each rotating plate 7 is driven to rotate with the brush layer 8. During the rotation process of the brush layer 8, the outer surface of the dust-proof filter screen 4 will be wiped and cleaned, so as to clean the dust and impurities adhering to the outer surface of the dust-proof filter screen 4, which is convenient to use. When the cleaning operation is completed, under the cooperation of the driving unit and the linkage unit, the rotating plate 7 is driven to rotate again to a state perpendicular to the dust-proof filter screen 4.
[0069] After the rotating plate 7 drives the brush layer 8 to rotate at this position and height for a period of time, under the action of the lifting unit, the two cooperating right mounting seats 6 and left mounting seats 5 can be driven to move upward by a certain distance, thereby driving each rotating plate 7 and brush layer 8 to move upward by a certain distance, so as to change the cleaning position of the brush layer 8 on the dust-proof filter screen 4 and clean the positions that were not cleaned just now, with good cleaning effect;
[0070] In the initial state, the telescopic plate 21 is inside the built-in groove 20. When it rains, under the action of the driving unit and the linkage unit, each rotating plate 7 will be driven to rotate to an inclined state. At this time, the adsorption assembly releases the adsorption and fixation of the telescopic plate 21, and the telescopic plate 21 slides along the built-in groove 20 under the action of gravity, so as to extend a partial area at the end of the rotating plate 7, thereby increasing the rain shielding effect and preventing rainwater from being splashed onto the surface of the dust-proof filter screen 4 by the wind.
[0071] The above are only the preferred embodiments of the present invention, and do not impose any form of limitation on the present invention. Although the present invention has been disclosed above with the preferred embodiments, it is not intended to limit the present invention. Any person skilled in the art can make some changes or modifications to equivalent embodiments by using the disclosed technical content within the scope of the technical solution of the present invention. However, as long as it does not depart from the content of the technical solution of the present invention, any brief modifications, equivalent changes and modifications made to the above embodiments based on the technical essence of the present invention still fall within the scope of the technical solution of the present invention.
Claims
1. A modular box-type energy storage charging cabinet, comprising a charging cabinet body (1), characterized in that: The charging cabinet body (1) is provided with an air intake groove (2) and an air exhaust groove (3) on both sides, and dust filters (4) are fixed on the inner walls of the air intake groove (2) and the air exhaust groove (3). Cleaning components for use with the corresponding dust filters (4) are provided on both sides of the charging cabinet body (1), and each cleaning component includes a left mounting seat (5) and a right mounting seat (6). A plurality of rotating plates (7) are rotatably arranged between the left mounting seat (5) and the right mounting seat (6), and a brush layer (8) is fixed at one end of each rotating plate (7). A linkage unit for rotating in cooperation with the corresponding rotating plate (7) is provided in the right mounting seat (6), and a driving unit for use in cooperation with the corresponding rotating plate (7) is provided in the left mounting seat (5).
2. A modular box-type energy storage charging cabinet according to claim 1, characterized in that: Each linkage unit comprises a right cavity (9) opened in the right mounting seat (6); a right rotating shaft (10) is fixed to one end of each rotating plate (7) close to the right mounting seat (6); the right rotating shaft (10) rotates and passes through the right cavity (9); and a belt transmission group (11) is arranged between two adjacent right rotating shafts (10).
3. A modular box-type energy storage charging cabinet according to claim 2, characterized in that: Each of the driving units comprises a left cavity (12) opened in the left mounting seat (5); a left rotating shaft (13) is fixed on a side of each rotating plate (7) close to the left mounting seat (5); the left rotating shaft (13) rotates and passes through the left cavity (12); a stepping motor (14) is fixed in the left cavity (12); and a driving shaft of the stepping motor (14) is fixedly connected to one of the left rotating shafts (13).
4. A modular box-type energy storage charging cabinet according to claim 1, characterized in that: Two pairs of T-shaped lifting grooves (15) are provided on both sides of the charging cabinet body (1), a T-shaped lifting slider (16) is fixed in each T-shaped lifting groove (15), a connecting block (17) is fixed between the right mounting seat (6) and the left mounting seat (5) and the adjacent T-shaped lifting slider (16), and a lifting unit for cooperating with the right mounting seat (6) and the left mounting seat (5) for lifting is provided on both sides of the charging cabinet body (1).
5. A modular box-type energy storage charging cabinet according to claim 4, characterized in that: Each of the lifting units comprises two electric push rods (18), each of which is fixed on the side wall of the charging cabinet body (1), and the end of the telescopic end of each electric push rod (18) is fixedly connected to the lower end surface of the adjacent connecting block (17).
6. A modular box-type energy storage charging cabinet according to claim 1, characterized in that: U-shaped rain shields (19) used in conjunction with the dust filter (4) are fixed on both sides of the charging cabinet body (1), and the opening end of the U-shaped rain shield (19) faces downward.
7. A modular box-type energy storage charging cabinet according to claim 1, characterized in that: A built-in groove (20) is provided on a side of each rotating plate (7) away from the brush layer (8), a telescopic plate (21) is movably arranged in each built-in groove (20), and an adsorption component is arranged between the built-in groove (20) and the telescopic plate (21).
8. A modular box-type energy storage charging cabinet according to claim 7, characterized in that: Each of the adsorption components comprises an electromagnet (22) fixed to the top of the built-in groove (20); a metal plate (23) used in conjunction with the electromagnet (22) is fixed to the upper end surface of the telescopic plate (21); and a plurality of guide limit units are provided between the metal plate (23) and the built-in groove (20).
9. A modular box-type energy storage charging cabinet according to claim 8, characterized in that: A plurality of limit sliding blocks (24) are fixed on both sides of each metal plate (23), and a plurality of limit sliding grooves for use with the limit sliding blocks (24) are provided on both sides of the inner wall of the built-in groove (20).
10. A method for managing the operation of a modular box-type energy storage charging cabinet, characterized in that: The specific steps are as follows: Step 1: In the initial state, the rotating plate (7) is in a state perpendicular to the dust filter (4). When the outer surface of the dust filter (4) needs to be cleaned, the driving unit and the linkage unit cooperate to drive each rotating plate (7) to rotate with the brush layer (8). The brush layer (8) will wipe and clean the outer surface of the dust filter (4) during the rotation process. Step 2: After the rotating plate (7) drives the brush layer (8) to rotate at the height of the position for a period of time, the lifting unit drives the two right mounting seats (6) and left mounting seats (5) used in conjunction with each other to move upward for a certain distance, thereby driving each rotating plate (7) and the brush layer (8) to move upward for a certain distance, thereby changing the cleaning position of the brush layer (8) on the dust filter (4), and cleaning the position that was not cleaned just now; Step three, when the entire cleaning operation is completed, the lifting unit drives the two matching right mounting seats (6) and left mounting seats (5) to move downward to the initial height position, and with the cooperation of the driving unit and the linkage unit, the rotating plate (7) is prompted to rotate again to a state perpendicular to the dust filter (4).
Citation Information
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