Air-cooled energy storage cabinet with dehumidification mechanism assembly easy to replace
By designing an easily replaceable dehumidification mechanism in the outdoor air-cooled energy storage cabinet, using desiccant plates and activated carbon plates to absorb moisture from the air, the problem of moisture entering the cabinet is solved, and the replacement process of the perforated plate is simplified, ensuring normal operation and ease of use of the cabinet.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANGHAI TIANYANGRUI INTELLIGENT TECH CO LTD
- Filing Date
- 2024-12-24
- Publication Date
- 2026-05-12
AI Technical Summary
Existing outdoor air-cooled energy storage cabinets are prone to moisture in the air entering the cabinet through the air inlet slot during use, affecting normal operation. At the same time, the perforated plate at the air inlet slot is inconvenient to replace.
An easily replaceable dehumidification mechanism component was designed, including a desiccant plate and an activated carbon plate. The mesh plate can be easily installed and removed through a fixing mechanism and a frame structure. The desiccant plate and activated carbon plate absorb moisture in the air and prevent moisture from entering the cabinet.
It effectively absorbs moisture from the air, preventing damage to the cabinet, simplifies the replacement process of the perforated panel, and improves ease of use.
Smart Images

Figure CN224233146U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of energy storage cabinet technology, specifically to an air-cooled energy storage cabinet with easily replaceable dehumidification mechanism components. Background Technology
[0002] Energy storage cabinets are the basic unit of energy storage equipment. A single energy storage cabinet can store up to 5,500 kilowatt-hours of electricity per day, and outdoor air-cooled energy storage cabinets are currently widely used.
[0003] However, when using existing outdoor air-cooled energy storage cabinets, moisture in the air can easily enter the cabinet through the air inlet slot, which can affect the normal operation of the cabinet. In addition, the perforated plate at the air inlet slot of existing outdoor air-cooled energy storage cabinets is inconvenient to replace.
[0004] To address the aforementioned problems, the inventors proposed an air-cooled energy storage cabinet with easily replaceable dehumidification mechanism components. Utility Model Content
[0005] To address the problems of existing outdoor air-cooled energy storage cabinets where moisture from the air easily enters the cabinet through the air inlet slot and where the perforated plate at the air inlet slot is inconvenient to replace, the purpose of this utility model is to provide an air-cooled energy storage cabinet with easily replaceable dehumidification mechanism components.
[0006] To solve the above technical problems, the present invention adopts the following technical solution: an air-cooled energy storage cabinet with easily replaceable dehumidification mechanism components, including a cabinet body, an air inlet slot is provided through the lower end of one side of the cabinet body, and a perforated plate is detachably provided in the air inlet slot, a fixing mechanism is provided on the perforated plate for use, and a dehumidification mechanism for use with the perforated plate is provided in the inner cavity of the cabinet body.
[0007] The dehumidification mechanism includes a U-shaped frame, which is fixedly connected to the cabinet and communicates with the air inlet duct. A slotted frame can be slidably inserted into the end of the U-shaped frame away from the air inlet duct. The slotted frame has two slots, and a matching recessed groove is formed on the inner wall of one end of the slotted frame. An activated carbon plate can be slidably inserted into slot one, and a desiccant plate can be slidably inserted into slot two. A rotating block is integrally formed on one side of the top of the U-shaped frame, and a rotating rod is rotatably inserted into the rotating block. A rotating hole is formed through the middle of the rotating block, and the rotating rod is rotatably inserted into the rotating hole. A collar is fixedly fitted at one end of the rotating rod, and a torsion spring is fixedly installed on one side of the collar. The end of the torsion spring is fixedly connected to the rotating block. A rotating plate is fixedly fitted at the other end of the rotating rod, and the rotating plate can slide against the slotted frame. A push rod is rotatably inserted into one end of the rotating plate, and the outer wall of the push rod is covered with an anti-slip texture. A through hole is formed through the rotating plate, and the push rod is rotatably inserted into the through hole.
[0008] Preferably, the fixing mechanism includes a fixing plate, both ends of the perforated plate are provided with cooperating inner grooves and sliding holes, and the fixing plate is slidably inserted into the inner groove. Springs are fixedly installed on opposite sides of the fixing plate, and the ends of the springs are fixedly connected to the inner wall of the inner groove. Fixing rods are fixedly installed on opposite sides of the fixing plate, and the fixing rods are slidably inserted into the sliding holes. Symmetrically arranged insertion holes are provided on the inner wall of the air inlet slot, and the fixing rods can be slidably inserted into the insertion holes. A push block is fixedly connected to the fixing plate, and the push block is slidably inserted into the perforated plate. Both ends of the perforated plate are provided with push grooves that communicate with the inner groove, and the push block is slidably locked in the push grooves.
[0009] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0010] 1. The dehumidification mechanism effectively absorbs moisture from the air entering the cabinet through the desiccant plate and activated carbon plate, thus preventing moisture from entering the cabinet cavity and affecting its normal operation. It also facilitates the disassembly and assembly of the insert frame, and makes it easier to replace the desiccant plate and activated carbon plate, further enhancing the convenience of operation for users.
[0011] 2. The use of the fixing mechanism facilitates the easy pushing and resetting of the fixing rod, thereby facilitating the disassembly and assembly of the perforated plate and, consequently, the replacement of the perforated plate. Attached Figure Description
[0012] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0013] Figure 1 This is a schematic diagram of the structure of this utility model.
[0014] Figure 2 This is a schematic diagram of the installation of the dehumidification mechanism in this utility model.
[0015] Figure 3 This utility model Figure 2 Enlarged schematic diagram of the structure at point A in the middle.
[0016] Figure 4 This utility model Figure 2 Enlarged schematic diagram of the structure at point B.
[0017] Figure 5 This utility model Figure 2 Enlarged schematic diagram of the structure at point C.
[0018] In the diagram: 1. Cabinet; 11. Air inlet slot; 12. Insert hole; 2. Perforated plate; 21. Inner groove; 22. Sliding hole; 23. Push groove; 3. Fixing mechanism; 31. Fixing plate; 32. Spring; 33. Fixing rod; 34. Push block; 4. Dehumidification mechanism; 41. U-shaped frame; 42. Insert frame; 43. Slot 1; 44. Slot 2; 45. Activated carbon plate; 46. Desiccant plate; 47. Rotating block; 48. Rotating rod; 49. Collar; 410. Torsion spring; 411. Rotating plate; 412. Rotating hole; 413. Push rod; 414. Perforation; 415. Sinking groove. Detailed Implementation
[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0020] Example: Figures 1-5 As shown, this utility model provides an air-cooled energy storage cabinet with easily replaceable dehumidification mechanism components, including a cabinet body 1. An air inlet slot 11 is provided through the lower end of one side of the cabinet body 1, and a perforated plate 2 is detachably provided in the air inlet slot 11. A fixing mechanism 3 is provided on the perforated plate 2 for use in conjunction with it, and a dehumidification mechanism 4 for use in conjunction with the perforated plate 2 is provided in the inner cavity of the cabinet body 1.
[0021] The dehumidification mechanism 4 includes a U-shaped frame 41, which is fixedly connected to the cabinet 1 and communicates with the air inlet duct 11. A slot 42 can be slidably inserted into the end of the U-shaped frame 41 away from the air inlet duct 11. The slot 42 has a first slot 43 and a second slot 44. A matching recessed groove 415 is provided on the inner wall of one end of the slot 42, facilitating the disassembly of the slot 42. An activated carbon plate 45 can be slidably inserted into the first slot 43, and a desiccant plate 46 can be slidably inserted into the second slot 44. A rotating block 47 is integrally formed on one side of the top of the U-shaped frame 41, and a rotating rod 48 is rotatably inserted into the rotating block 47. A rotating hole 412 is provided through the middle of the rotating block 47, and the rotating rod... The rotating rod 48 is rotatably inserted into the rotating hole 412. The rotating hole 412 ensures the stable rotation of the rotating rod 48. One end of the rotating rod 48 is fixedly fitted with a collar 49, and a torsion spring 410 is fixedly installed on one side of the collar 49. The end of the torsion spring 410 is fixedly connected to the rotating block 47. The other end of the rotating rod 48 is fixedly fitted with a rotating plate 411, and the rotating plate 411 can slide and fit against the insertion frame 42. One end of the rotating plate 411 is rotatably inserted with a push rod 413, and the outer wall of the push rod 413 is covered with a layer of anti-slip texture. A through hole 414 is opened through the rotating plate 411, and the push rod 413 is rotatably inserted into the through hole 414. The cooperation between the through hole 414 and the push rod 413 facilitates the convenient rotation of the rotating plate 411.
[0022] By adopting the above technical solution, during use, the activated carbon plate 45 and the desiccant plate 46 need to be inserted into slot one 43 and slot two 44 in sequence. Then, the push rod 413 needs to be pushed to rotate, which will drive the rotating plate 411 to rotate, which in turn will drive the rotating rod 48 to rotate, which will further drive the collar 49 to rotate and twist the torsion spring 410. When the rotating plate 411 rotates ninety degrees, stop pushing the push rod 413 and insert the insertion frame 42 into the return frame 41. Then release the push rod 413. At this time, the torsion spring 410 will drive the rotating plate 411 to rotate. The plate 411 is reversed and reset, which allows the insert frame 42 to be conveniently limited and fixed, and the activated carbon plate 45 and desiccant plate 46 to be conveniently installed and fixed. Later, the insert frame 42 can be removed and the activated carbon plate 45 and desiccant plate 46 can be replaced according to the above steps. In addition, during the operation of the cabinet 1, the desiccant plate 46 and activated carbon plate 45 can effectively absorb the moisture in the air entering the cabinet 1, thereby preventing moisture from entering the inner cavity of the cabinet 1 and affecting the normal operation of the cabinet 1.
[0023] The fixing mechanism 3 includes a fixing plate 31. Both ends of the perforated plate 2 are provided with inner grooves 21 and sliding holes 22 for cooperation. The fixing plate 31 is slidably inserted into the inner groove 21. Springs 32 are fixedly installed on opposite sides of the fixing plate 31, and the ends of the springs 32 are fixedly connected to the inner wall of the inner groove 21. Fixing rods 33 are fixedly installed on opposite sides of the fixing plate 31, and the fixing rods 33 are slidably inserted into the sliding holes 22. The inner wall of the air inlet slot 11 is provided with symmetrically arranged insertion holes 12, and the fixing rods 33 can be slidably inserted into the insertion holes 12. A push block 34 is fixedly connected to the fixing plate 31, and the push block 34 is slidably inserted into the perforated plate 2. Both ends of the perforated plate 2 are provided with push grooves 23 that communicate with the inner groove 21, and the push block 34 is slidably locked in the push grooves 23. The cooperation between the push block 34 and the push grooves 23 provides convenience for the easy movement of the fixing plate 31.
[0024] By adopting the above technical solution, when in use, pushing the two push blocks 34 to move in opposite directions can drive the two fixed plates 31 to move in opposite directions, which in turn can drive the two fixed rods 33 to move in opposite directions and squeeze the corresponding springs 32. When the distance between the two push blocks 34 is moved to the minimum, the push blocks 34 are stopped and the mesh plate 2 is inserted into the air inlet slot 11. Then, the two push blocks 34 are released in sequence, and the springs 32 will drive the corresponding fixed plates 31 to reset, which can drive the corresponding fixed rods 33 to reset, and then the fixed rods 33 can be inserted into the corresponding insertion holes 12. This further enables the mesh plate 2 to be conveniently limited and fixed, and the mesh plate 2 can be disassembled and replaced according to the above steps during subsequent use.
[0025] Working principle: When in use, push the two push blocks 34 to move towards each other, which in turn drives the two fixed plates 31 to move towards each other, which in turn drives the two fixed rods 33 to move towards each other and squeeze the corresponding springs 32. When the distance between the two push blocks 34 is minimized, stop pushing the push blocks 34 and insert the mesh plate 2 into the air inlet slot 11. Then release the two push blocks 34 in sequence, and the springs 32 will drive the corresponding fixed plates 31 to reset, which in turn drives the corresponding fixed rods 33 to reset, allowing the fixed rods 33 to be inserted into the corresponding holes 12. This further allows the mesh plate 2 to be conveniently limited and fixed, and the mesh plate 2 can be disassembled and replaced according to the above steps during subsequent use.
[0026] Next, the activated carbon plate 45 and the desiccant plate 46 should be inserted into slot 1 43 and slot 2 44 in sequence. Then, push the push rod 413 to rotate, which will drive the rotating plate 411 to rotate, which will drive the rotating rod 48 to rotate, which will drive the collar 49 to rotate and twist the torsion spring 410. When the rotating plate 411 rotates 90 degrees, stop pushing the push rod 413 and insert the insertion frame 42 into the U-shaped frame 41. Then release the push rod 413. At this time, the torsion spring 410 will drive the rotating plate 411 to reverse and reset, which can conveniently limit and fix the insertion frame 42, and thus conveniently install and fix the activated carbon plate 45 and the desiccant plate 46. Later, the insertion frame 42 can be removed and the activated carbon plate 45 and the desiccant plate 46 can be replaced according to the above steps. In addition, during the operation of the cabinet 1, the desiccant plate 46 and the activated carbon plate 45 can effectively absorb the moisture in the air entering the cabinet 1, thereby preventing the moisture from entering the inner cavity of the cabinet 1 and affecting the normal operation of the cabinet 1.
[0027] Obviously, those skilled in the art can make various modifications and variations to this utility model without departing from its spirit and scope. Therefore, if these modifications and variations fall within the scope of the claims of this utility model and their equivalents, this utility model also intends to include these modifications and variations.
Claims
1. A wind-cooled energy storage cabinet with easily replaceable dehumidification mechanism components, comprising a cabinet body (1), characterized in that: An air inlet slot (11) is provided through the lower end of one side of the cabinet (1), and a perforated plate (2) is detachably provided inside the air inlet slot (11). A fixing mechanism (3) is provided on the perforated plate (2) for use in conjunction with it, and a dehumidification mechanism (4) is provided in the inner cavity of the cabinet (1) for use in conjunction with the perforated plate (2). The dehumidification mechanism (4) includes a U-shaped frame (41), which is fixedly connected to the cabinet (1) and connected to the air inlet slot (11). A slot frame (42) can be slidably inserted at one end of the U-shaped frame (41) away from the air inlet slot (11). A slot 1 (43) and a slot 2 (44) are provided on the slot frame (42). An activated carbon plate (45) can be slidably inserted in the slot 1 (43), and a desiccant plate (46) can be slidably inserted in the slot 2 (44). The top side of the U-shaped frame (41) is integrally formed with a rotating block (47), and a rotating rod (48) is rotatably inserted on the rotating block (47). One end of the rotating rod (48) is fixedly fitted with a collar (49), and a torsion spring (410) is fixedly installed on one side of the collar (49). The end of the torsion spring (410) is fixedly connected to the rotating block (47). The other end of the rotating rod (48) is fixedly fitted with a rotating plate (411), and the rotating plate (411) can slide and fit against the insert frame (42).
2. The air-cooled energy storage cabinet with easily replaceable dehumidification mechanism components as described in claim 1, characterized in that, The fixing mechanism (3) includes a fixing plate (31). Both ends of the perforated plate (2) are provided with an inner groove (21) and a sliding hole (22) for cooperation. The fixing plate (31) is slidably inserted into the inner groove (21). Springs (32) are fixedly installed on opposite sides of the fixing plate (31). The ends of the springs (32) are fixedly connected to the inner wall of the inner groove (21). Fixing rods (33) are fixedly installed on opposite sides of the fixing plate (31). The fixing rods (33) are slidably inserted into the sliding hole (22). The inner wall of the air inlet groove (11) is provided with symmetrically arranged insertion holes (12). The fixing rods (33) can be slidably inserted into the insertion holes (12).
3. The air-cooled energy storage cabinet with easily replaceable dehumidification mechanism components as described in claim 2, characterized in that, A push block (34) is fixedly connected to the fixed plate (31), and the push block (34) is slidably inserted into the mesh plate (2).
4. The air-cooled energy storage cabinet with easily replaceable dehumidification mechanism components as described in claim 3, characterized in that, Both ends of the perforated plate (2) are provided with push grooves (23) that communicate with the inner groove (21), and the push block (34) is slidably locked in the push groove (23).
5. The air-cooled energy storage cabinet with easily replaceable dehumidification mechanism components as described in claim 1, characterized in that, The rotating block (47) has a rotating hole (412) through the middle, and the rotating rod (48) is rotatably inserted into the rotating hole (412).
6. The air-cooled energy storage cabinet with easily replaceable dehumidification mechanism components as described in claim 1, characterized in that, One end of the rotating plate (411) is rotatably connected to a push rod (413), and the outer wall of the push rod (413) is covered with a layer of anti-slip texture.
7. The air-cooled energy storage cabinet with easily replaceable dehumidification mechanism components as described in claim 6, characterized in that, The rotating plate (411) has a through hole (414) and the push rod (413) is inserted into the through hole (414).
8. The air-cooled energy storage cabinet with easily replaceable dehumidification mechanism components as described in claim 1, characterized in that, The inner wall of one end of the insert frame (42) is provided with a matching groove (415).