Outdoor storage battery combined cabinet
By introducing adjustable support and control components into the outdoor battery cabinet, the problem of fixed platform height was solved, improving space utilization and protection, and achieving stable charging and effective heat dissipation.
Patent Information
- Application Number
- CN202520056773.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-10
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2035-01-10
AI Technical Summary
The existing outdoor battery cabinets have a fixed placement platform height, which cannot be adjusted according to the height of different batteries, resulting in low space utilization.
Design an outdoor battery cabinet that uses adjustable height support components and control components. The support plate is raised and lowered and fixed by positioning pins and U-shaped connecting plates. It is combined with a grille and cooling fan for ventilation, heat dissipation and waterproofing, and the rear guard plate provides limit protection.
It improves the space utilization within the cabinet, ensures stable installation and charging of batteries, prevents rainwater infiltration, and enhances the cabinet's protection and heat dissipation.
Smart Images

Figure CN223539800U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of electrical equipment technology, specifically to an outdoor battery combination cabinet. Background Technology
[0002] An outdoor battery cabinet is a device used to store and manage batteries. It is typically designed to withstand changes in the outdoor environment, such as temperature fluctuations, humidity, and wind. Its main function is to provide power storage and ensure the safe and long-term stable operation of the batteries. Battery cabinets are commonly used in communication base stations, power systems, solar power plants, and UPS power systems.
[0003] Currently, existing outdoor battery cabinets have multiple placement platforms installed inside. The height of the placement platforms is fixed, and the cabinet space cannot be adjusted according to the different battery heights to accommodate the installation of more batteries, which has certain drawbacks. Utility Model Content
[0004] To address the shortcomings of existing technologies, this utility model provides an outdoor battery combination cabinet with advantages such as adjustable placement platform height, improving space utilization within the cabinet. This solves the problem of fixed placement platform height in current battery cabinets, which cannot be adjusted according to battery height, resulting in poor space utilization within the cabinet.
[0005] To achieve the above objectives, this utility model provides the following technical solution: an outdoor battery combination cabinet, including a cabinet, a support component, and a control component. A cover plate is fixed on the cabinet, and a base is fixed at the bottom of the cabinet. A cabinet door is also installed on the front side of the cabinet. The cover plate is used to cover the top of the cabinet, reducing rainwater seepage into the cabinet from the welded seams at the top of the cabinet. At the same time, when the cabinet door is closed with the cabinet, it can provide protection for the internal components and batteries. A sealing strip is glued to the edge of the cabinet door. When the cabinet door is closed with the interface of the cabinet, the sealing strip blocks the gap at the closed joint, increasing the sealing performance at the interface.
[0006] Two sets of brackets are installed on opposite sides inside the cabinet. Each set of brackets consists of two vertically parallel sturdy support rods fixed to the front and rear ends of one side of the cabinet. Several positioning holes are opened on the side of the sturdy support rods along their length. The four sturdy support rods are located at the four directional corners of the support component, so that the support component can be raised and lowered smoothly on the sturdy support rods.
[0007] The cabinet contains multiple sets of support components for supporting batteries, stacked from bottom to top. Each support component consists of a support plate and side plates. Side plates are vertically fixed to both sides of the support plate. Adjustment components for adjusting the height of the support plate are installed on the side plates. The batteries are placed on the support plates, and the batteries are raised and lowered by the support plates, thus organizing the space inside the cabinet.
[0008] The control assembly includes a stabilizing side plate fixed to the side of the side plate. U-shaped connecting plates are installed at both ends of the stabilizing side plate. The U-shaped connecting plates are slidably connected to the side of the stabilizing support rod. At the same time, a positioning pin is inserted into the side of the U-shaped connecting plate. One end of the positioning pin is inserted into the corresponding positioning hole. The inner side of the U-shaped connecting plate is attached to the side of the stabilizing support rod. After the U-shaped connecting plate and one end of the stabilizing side plate are closed and connected, they can be stably sleeved on the side of the stabilizing support rod, so that the stabilizing side plate can drive the support plate to rise and fall smoothly, ensuring the stability of the battery height adjustment.
[0009] After the support plate drives the stabilizing side plate to move up and down to the appropriate height, the positioning pin is inserted into the corresponding positioning hole to fix the adjusted height.
[0010] When installing and adjusting the space of the outdoor battery cabinet, the batteries are charged by placing them on different layers of support plates and aligning the charging interface copper contacts with the power receiving copper contacts. Simultaneously, the cooling fans at the bottom of the support plates operate, drawing the heat generated by the batteries out through the ventilation holes and exhausting it to the outside of the cabinet through the through-holes in the grille. In addition, the gap between each layer of support components can be adjusted according to the height of the batteries. Specifically, this is done by pulling the positioning pins at both ends of the support plate to be adjusted, disengaging the front end of the positioning pin from the positioning hole, pushing or pulling the support plate up or down until it is moved to the appropriate height, and then pushing the positioning pin to insert the front end of the positioning pin into the corresponding positioning hole.
[0011] As a further improvement to the above solution, the side of the cabinet is equipped with a grille panel that communicates with the interior.
[0012] The above technical solution provides a grille with multiple through holes that are angled downwards, allowing for ventilation and heat dissipation within the cabinet while preventing rainwater from seeping inside.
[0013] As a further improvement to the above solution, ventilation holes are provided on the support plate, and a cooling fan is fixed at the bottom of the support plate, with the ventilation holes and the cooling fan communicating with each other.
[0014] With the above technical solution, when the cooling fan is in operation, it can absorb the heat generated by the battery placed on top of the support plate through the ventilation holes and output it to the outside through the grille plate.
[0015] Furthermore, the airflow generated can form a barrier, blowing rainwater falling towards the rack outwards, further preventing rainwater from seeping into the rack.
[0016] As a further improvement to the above solution, a rear guard plate is fixed to the rear side of the support plate, and a copper contact plate is fixed to the rear guard plate.
[0017] With the above technical solution, a rear guard plate is fixed vertically upward on the rear side of the support plate. The rear guard plate is used to limit the position of the battery on the support plate and prevent the battery from moving too far into the support plate, which could lead to the risk of the battery falling off.
[0018] The rear panel has a copper contact plate that connects to the battery charging interface. The rear of the copper contact plate is connected to the power supply equipment. When the battery is placed on the support plate and the charging interface is connected to the copper contact plate, the battery is charged.
[0019] As a further improvement to the above solution, connecting grooves are provided at both ends of the stabilizing side plate, and rotating gears are rotatably connected in the connecting grooves. At the same time, toothed patterns are provided on one side of the stabilizing support rod, and the rotating gears mesh with the toothed patterns.
[0020] With the above technical solution, when the stabilizing side plate and the U-shaped connecting plate are closed, the rotating gear is attached to the side of the stabilizing support rod, and the gear pattern on the side of the rotating gear meshes with the tooth profile pattern, which improves the smoothness of the adjustment component in raising and lowering the side of the stabilizing support rod and reduces frictional resistance.
[0021] As a further improvement to the above solution, a mounting groove is provided on the stabilizing side plate, and a mounting box is fixed in the mounting groove. Arc-shaped interfaces are provided at both ends of the mounting box, and a non-reverse tooth profile plate is movably connected in the arc-shaped interface. The non-reverse tooth profile plate meshes with the rotating gear.
[0022] Through the above technical solution, the arc-shaped interface and the connecting groove are interconnected, so that the side of the rotating gear fits into the arc-shaped interface. The shape of the anti-reverse tooth profile plate matches the shape of the arc-shaped interface. The tooth profile on the inner side of the anti-reverse tooth profile plate meshes with the tooth profile on the side of the rotating gear, so that when the rotating gear stops rotating, the tooth profile on the anti-reverse tooth profile plate can lock and limit the rotating gear.
[0023] As a further improvement to the above scheme, a tension spring is fixed inside the arc-shaped interface, and one end of the tension spring is fixed to the side of the anti-reverse tooth profile plate.
[0024] Through the above technical solution, the tension spring is used to push the anti-reverse tooth profile plate, so that the tooth profile on the anti-reverse tooth profile plate engages with the tooth profile on the side of the stationary rotating gear, thereby initially fixing the position of the support plate after adjustment.
[0025] As a further improvement to the above solution, a fixing rod is provided at the front end of the U-shaped connecting plate, and a fixing hole is provided on the stabilizing side plate, into which the fixing rod is inserted.
[0026] Through the above technical solution, the U-shaped connecting plate is inserted into the fixing hole at the corresponding end of the stable side plate through the set fixing rod, so as to realize the installation of the U-shaped connecting plate and the stable side plate. After the fixing rod is separated from the fixing hole, the support plate and the stable side plates and the stable support rod at both ends can be separated.
[0027] Compared with the prior art, this utility model provides an outdoor battery combination cabinet, which has the following beneficial effects:
[0028] 1. This outdoor battery cabinet features multiple support plates inside the cabinet, with adjustable components installed at both ends. By sliding these adjustable components onto corresponding sturdy support rods, the height of the support plates can be adjusted, thereby effectively improving the space utilization within the cabinet.
[0029] 2. This outdoor battery cabinet features U-shaped connecting plates installed at both ends of the stabilizing side panel. These plates are then inserted into corresponding positioning holes on the side of the stabilizing support rod via positioning pins, thus fixing the height of the support plate. By separating the U-shaped connecting plates from the stabilizing side panel, the control components connecting both ends of the support assembly can be removed from the stabilizing support rod. This allows for the addition or reduction of the number of support plates based on the available space within the cabinet, further improving the utilization rate of the cabinet's interior space. Attached Figure Description
[0030] Figure 1 This is a schematic diagram of the overall external structure of the device of this utility model;
[0031] Figure 2 This is a schematic diagram of the overall connection structure of the support component and the control component of this utility model;
[0032] Figure 3 This is a schematic diagram of the overall structure of the bottom of the support plate of this utility model;
[0033] Figure 4 This is a schematic diagram of the overall structure of the control component of this utility model;
[0034] Figure 5 This is a schematic diagram of the disassembled structure of the U-shaped connecting plate and the stabilizing side plate of this utility model;
[0035] Figure 6 This is a schematic diagram of the connection structure between the mounting box and the rotating gear of this utility model.
[0036] The attached diagram lists the components represented by each number as follows:
[0037] 1. Cabinet; 101. Cover plate; 102. Base; 103. Grille; 104. Cabinet door; 105. Bracket; 1051. Stabilizing support rod; 1052. Toothed pattern; 106. Positioning hole;
[0038] 2. Support components; 201. Support plate; 202. Ventilation hole; 203. Cooling fan; 204. Rear guard plate; 205. Power connection copper sheet; 206. Side plate;
[0039] 3. Adjustment components; 301. Stabilizing side plate; 3011. Mounting slot; 302. Connecting slot; 303. Rotating gear; 304. Mounting box; 3041. Arc-shaped interface; 3042. Tension spring; 305. Anti-reverse tooth profile plate; 306. U-shaped connecting plate; 307. Positioning pin; 308. Fixing rod; 309. Fixing hole. Detailed Implementation
[0040] 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. Example 1
[0041] Please see Figures 1-6 As shown, the outdoor battery cabinet proposed in this embodiment includes a cabinet 1, a support component 2, and a control component 3. A cover plate 101 is fixed on the cabinet 1, and a base 102 is fixed at the bottom of the cabinet 1. A cabinet door 104 is also installed on the front side of the cabinet 1. The cover plate 101 is used to cover the top of the cabinet 1 to reduce rainwater seepage into the cabinet from the welded seams at the top of the cabinet 1. At the same time, when the cabinet door 104 is closed with the cabinet 1, it can provide protection for the internal components and batteries. A sealing strip is glued to the edge of the cabinet door 104. When the cabinet door 104 is closed with the interface of the cabinet 1, the sealing strip blocks the gap at the closed interface, increasing the sealing performance at the interface.
[0042] Two sets of brackets 105 are arranged opposite each other on both sides inside the cabinet 1. Each set of brackets 105 consists of two vertically parallel and fixed sturdy support rods 1051 on the front and rear sides of one side inside the cabinet 1. Several positioning holes 106 are provided on the side of the sturdy support rods 1051 along their length. The four sturdy support rods 1051 are located at the four directional corners of the support component 2, so that the support component 2 can be raised and lowered smoothly on the sturdy support rods 1051.
[0043] Inside the cabinet 1, multiple sets of support components 2 for supporting batteries are stacked from bottom to top. Each support component 2 consists of a support plate 201 and a side plate 206. The side plates 206 are vertically fixed downwards on both sides of the support plate 201. Adjustment components 3 for adjusting the height of the support plate 201 are installed on the side plates 206. The batteries are placed on the support plates 201, and the support plates 201 drive the batteries to rise and fall, thereby organizing the space inside the cabinet 1.
[0044] The control component 3 includes a stabilizing side plate 301 fixed to the side of the side plate 206. U-shaped connecting plates 306 are installed at both ends of the stabilizing side plate 301. The U-shaped connecting plates 306 are slidably connected to the side of the stabilizing support rod 1051. At the same time, a positioning pin 307 is inserted into the side of the U-shaped connecting plate 306. One end of the positioning pin 307 is inserted into the corresponding positioning hole 106. The inner side of the U-shaped connecting plate 306 is attached to the side of the stabilizing support rod 1051. After the U-shaped connecting plate 306 and one end of the stabilizing side plate 301 are closed and connected, they can be stably sleeved on the side of the stabilizing support rod 1051, so that the stabilizing side plate 301 can drive the support plate 201 to rise and fall smoothly, ensuring the stability when adjusting the battery height.
[0045] After the support plate 201 drives the stabilizing side plate 301 to move up and down to an appropriate height, the positioning pin 307 is inserted into the corresponding positioning hole 106 to fix the adjusted height.
[0046] The working principle of the outdoor battery cabinet proposed in this embodiment is as follows: During use, the battery is charged by placing it on the support plates 201 of different layers and connecting the charging interface copper piece of the battery to the power receiving copper piece 205. At the same time, the heat dissipation fan 203 at the bottom of the support plate 201 operates to extract the heat generated by the battery from the ventilation hole 202 and discharge it to the outside of the cabinet 1 through the through hole of the grille plate 103. In addition, the gap between each layer of support components 2 can be adjusted according to the height of the battery. Specifically, by pulling the positioning pins 307 at both ends of the support plate 201 to be adjusted, the front end of the positioning pin 307 is disengaged from the positioning hole 106. By pushing or pulling the support plate 201 up or down until it is moved to the appropriate height, the positioning pin 307 is pushed to insert the front end of the positioning pin 307 into the corresponding positioning hole 106. Example 2
[0047] Please see Figures 1-6As shown, the outdoor battery cabinet proposed in this embodiment, based on embodiment one, further includes a grille plate 103 installed on the side of the cabinet 1, communicating with the interior; ventilation holes 202 are provided on the support plate 201; a cooling fan 203 is fixed at the bottom of the support plate 201, and the ventilation holes 202 communicate with the cooling fan 203; a rear guard plate 204 is fixed to the rear side of the support plate 201, and a copper contact plate 205 is fixed on the rear guard plate 204; connecting grooves 302 are provided at both ends of the stabilizing side plate 301, and rotating gears 303 are rotatably connected in the connecting grooves 302; and toothed patterns 1052 are provided on one side of the stabilizing support rod 1051. 03 meshes with the tooth profile 1052. The stabilizing side plate 301 has an installation groove 3011. An installation box 304 is fixed in the installation groove 3011. Arc-shaped interfaces 3041 are provided at both ends of the installation box 304. A backstop tooth profile plate 305 is movably connected in the arc-shaped interface 3041. The backstop tooth profile plate 305 meshes with the rotating gear 303. A tension spring 3042 is fixed in the arc-shaped interface 3041. One end of the tension spring 3042 is fixed to the side of the backstop tooth profile plate 305. A fixing rod 308 is provided at the front end of the U-shaped connecting plate 306. At the same time, a fixing hole 309 is provided on the stabilizing side plate 301. The fixing rod 308 is inserted into the fixing hole 309.
[0048] In this design, the grille 103 has multiple through holes, which are angled downwards to allow for ventilation and heat dissipation within the cabinet 1 while preventing rainwater from seeping into the cabinet. When the cooling fan 203 operates, it absorbs the heat generated by the battery placed on top of the support plate 201 through the ventilation holes 202 and outputs it to the outside through the grille 103. The resulting airflow forms a barrier, blowing rainwater falling towards the cabinet 1 outwards, further preventing rainwater from seeping into the cabinet 1. A rear protective plate 204 is vertically fixed to the rear side of the support plate 201. The protective plate 204 is used to limit the position of the battery placed on the support plate 201, preventing the battery from moving too far into the support plate 201 and causing the risk of the battery falling off. A copper contact plate 205 is provided on the rear protective plate 204 to connect with the battery charging interface. The rear side of the copper contact plate 205 is connected to the power supply equipment. When the battery is placed on the support plate 201 and the charging interface is connected to the copper contact plate 205, the battery is charged. When the stabilizing side plate 301 and the U-shaped connecting plate 306 are closed, the rotating gear 303 is engaged with the stabilizing support rod 10. The side of the rotating gear 303 is connected to the gear teeth 1052, which improves the smoothness of the adjustment component 3 in raising and lowering the side of the stable support rod 1051 and reduces frictional resistance. The arc-shaped interface 3041 is interconnected with the connecting groove 302, so that the side of the rotating gear 303 fits in the arc-shaped interface 3041. The anti-reverse tooth profile plate 305 matches the shape of the arc-shaped interface 3041. The tooth profile on the inner side of the anti-reverse tooth profile plate 305 meshes with the tooth profile on the side of the rotating gear 303, so that when the rotating gear 303 stops rotating, the tooth profile on the anti-reverse tooth profile plate 305 can engage with the rotating gear 303. 03. The tension spring 3042 is used to push the anti-reverse tooth profile plate 305, so that the tooth profile on the anti-reverse tooth profile plate 305 engages with the tooth profile on the side of the stationary rotating gear, thereby initially fixing the position of the support plate 201 after adjustment. The U-shaped connecting plate 306 is inserted into the fixing hole 309 at the corresponding end of the stabilizing side plate 301 through the fixed insertion rod 308, realizing the installation of the U-shaped connecting plate 306 and the stabilizing side plate 301. After the fixed insertion rod 308 is separated from the fixing hole 309, the support plate 201 and the stabilizing side plates 301 at both ends can be separated from the stabilizing support rod 1051.
[0049] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. An outdoor battery cabinet, comprising a cabinet (1), a support assembly (2), and a control assembly (3), wherein a cover plate (101) is fixed on the cabinet (1), a base (102) is fixed at the bottom of the cabinet (1), and a cabinet door (104) is installed on the front side of the cabinet (1), characterized in that... ; Two sets of brackets (105) are arranged opposite each other on both sides inside the cabinet (1). Each set of brackets (105) consists of two vertically parallel and fixed sturdy support rods (1051) on the front and rear sides of one side inside the cabinet (1). Several positioning holes (106) are opened on the side of the sturdy support rods (1051) along its length. The cabinet (1) is stacked from bottom to top with multiple sets of support components (2) for supporting the battery. The support components (2) consist of a support plate (201) and a side plate (206). The support plate (201) has a side plate (206) fixed vertically downward on both sides. An adjustment component (3) for adjusting the height of the support plate (201) is installed on the side plate (206). The control component (3) includes a stabilizing side plate (301) fixed to the side of the side plate (206). U-shaped connecting plates (306) are installed at both ends of the stabilizing side plate (301). The U-shaped connecting plates (306) are slidably connected to the side of the stabilizing support rod (1051). At the same time, a positioning pin (307) is inserted into the side of the U-shaped connecting plate (306). One end of the positioning pin (307) is inserted into the corresponding positioning hole (106).
2. The outdoor battery combination cabinet according to claim 1, characterized in that: The side of the cabinet (1) is equipped with a grid panel (103) that communicates with the interior.
3. An outdoor battery cabinet according to claim 1, characterized in that: The support plate (201) has ventilation holes (202), and a cooling fan (203) is fixed at the bottom of the support plate (201). The ventilation holes (202) and the cooling fan (203) are interconnected.
4. An outdoor battery combination cabinet according to claim 3, characterized in that: A rear guard plate (204) is fixed to the rear side of the support plate (201), and a copper contact plate (205) is fixed on the rear guard plate (204).
5. An outdoor battery cabinet according to claim 1, characterized in that: The two ends of the stabilizing side plate (301) are provided with connecting grooves (302), and a rotating gear (303) is rotatably connected in the connecting grooves (302). At the same time, a toothed pattern (1052) is provided on one side of the stabilizing support rod (1051), and the rotating gear (303) meshes with the toothed pattern (1052).
6. An outdoor battery combination cabinet according to claim 5, characterized in that: The stabilizing side plate (301) is provided with a mounting groove (3011), and a mounting box (304) is fixed in the mounting groove (3011). Arc-shaped interfaces (3041) are provided at both ends of the mounting box (304), and a non-reverse tooth profile plate (305) is movably connected in the arc-shaped interface (3041). The non-reverse tooth profile plate (305) meshes with the rotating gear (303).
7. An outdoor battery combination cabinet according to claim 6, characterized in that: A tension spring (3042) is fixed inside the arc-shaped interface (3041), and one end of the tension spring (3042) is fixed to the side of the anti-reverse tooth profile plate (305).
8. An outdoor battery cabinet according to claim 1, characterized in that: The front end of the U-shaped connecting plate (306) is provided with a fixing rod (308), and a fixing hole (309) is provided on the stabilizing side plate (301), and the fixing rod (308) is inserted into the fixing hole (309).